{"id":190,"date":"2022-06-10T21:50:39","date_gmt":"2022-06-10T19:50:39","guid":{"rendered":"https:\/\/people.unipi.it\/armando_viviano_razionale\/?page_id=190"},"modified":"2025-01-29T12:14:26","modified_gmt":"2025-01-29T11:14:26","slug":"publications","status":"publish","type":"page","link":"https:\/\/people.unipi.it\/armando_viviano_razionale\/publications\/","title":{"rendered":"Publications"},"content":{"rendered":"\n<p class=\"wp-block-paragraph\"><strong><em>Recent publications<\/em><\/strong><\/p>\n\n\n\n<div class=\"teachpress_pub_list\"><form name=\"tppublistform\" method=\"get\"><a name=\"tppubs\" id=\"tppubs\"><\/a><\/form><div class=\"teachpress_publication_list\"><h3 class=\"tp_h3\" id=\"tp_h3_2024\">2024<\/h3><div class=\"tp_publication tp_publication_conference\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Marconcini, Francesco;  Manzolillo, Luciano C.;  Giammarinaro, Guido;  Guidi, Carla;  Saravia, Manuel M.;  Tamburrino, Francesco;  Razionale, Armando V.;  Becatti, Giulia;  Andreussi, Tommaso;  Paganucci, Fabrizio<\/p><p class=\"tp_pub_title\">Additive Manufacturing of Hall Thruster Magnetic Circuits <span class=\"tp_pub_type tp_  conference\">Conference<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_booktitle\">38th International Electric Propulsion Conference, <\/span><span class=\"tp_pub_additional_year\">2024<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_abstract_link\"><a id=\"tp_abstract_sh_482\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('482','tp_abstract')\" title=\"Show abstract\" style=\"cursor:pointer;\">Abstract<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_482\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('482','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_482\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@conference{<LineBreak>\t11568_1269087,<br \/>\r\ntitle = {Additive Manufacturing of Hall Thruster Magnetic Circuits},<br \/>\r\nauthor = {Francesco Marconcini and Luciano C. Manzolillo and Guido Giammarinaro and Carla Guidi and Manuel M. Saravia and Francesco Tamburrino and Armando V. Razionale and Giulia Becatti and Tommaso Andreussi and Fabrizio Paganucci},<br \/>\r\nyear  = {2024},<br \/>\r\ndate = {2024-01-01},<br \/>\r\nbooktitle = {38th International Electric Propulsion Conference},<br \/>\r\nabstract = {Hall thrusters are one of the most widely used electric propulsion systems, primarily due to their relatively high thrust-to-power ratio and simple architecture. Despite the high technology readiness level reached in recent years, there is still significant room for improvements in performance, structural design and thermal management. In this sense, a crucial role could be played by the additive manufacturing (AM) of magnetic circuits. This component plays a fundamental role in the functioning of the thruster, as the magnetic field topology and intensity are fundamental variables for controlling discharge stability, ion acceleration, and channel erosion phenomena. Additionally, the magnetic circuit serves as the support structure for the majority of the other thruster components. The freedom in design and the possibilities to reduce mass, consolidate components, and optimize thermal management offered by AM open the doors to the creation of more efficient and robust thrusters. Moreover, the rapid prototyping capability and reduced production costs allow for quick testing of new concepts, accelerating scientific progress in this field. This article aims to present the progress made in developing an additive manufacturing production procedure for creating magnetic circuits for Hall thrusters at the University of Pisa. The method developed is based on material extrusion additive manufacturing of polymeric filaments highly loaded with metal powders. This technique allows for the printing of soft ferromagnetic components using a conventional desktop printer, followed by debinding and sintering treatments to produce fully metallic parts. The article presents the results obtained with two soft iron filament feedstock: the first commercially available, and the second developed in collaboration with Nadir Srl as an upgrade of the former. The magnetic properties of the two materials subjected to different heat treatments are reported. The effectiveness of the technique is demonstrated through the realization of the magnetic circuit of a low-power thruster, whose design process is described in detail. The developed production procedure has shown the research group\u2019s},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {conference}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('482','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_abstract\" id=\"tp_abstract_482\" style=\"display:none;\"><div class=\"tp_abstract_entry\">Hall thrusters are one of the most widely used electric propulsion systems, primarily due to their relatively high thrust-to-power ratio and simple architecture. Despite the high technology readiness level reached in recent years, there is still significant room for improvements in performance, structural design and thermal management. In this sense, a crucial role could be played by the additive manufacturing (AM) of magnetic circuits. This component plays a fundamental role in the functioning of the thruster, as the magnetic field topology and intensity are fundamental variables for controlling discharge stability, ion acceleration, and channel erosion phenomena. Additionally, the magnetic circuit serves as the support structure for the majority of the other thruster components. The freedom in design and the possibilities to reduce mass, consolidate components, and optimize thermal management offered by AM open the doors to the creation of more efficient and robust thrusters. Moreover, the rapid prototyping capability and reduced production costs allow for quick testing of new concepts, accelerating scientific progress in this field. This article aims to present the progress made in developing an additive manufacturing production procedure for creating magnetic circuits for Hall thrusters at the University of Pisa. The method developed is based on material extrusion additive manufacturing of polymeric filaments highly loaded with metal powders. This technique allows for the printing of soft ferromagnetic components using a conventional desktop printer, followed by debinding and sintering treatments to produce fully metallic parts. The article presents the results obtained with two soft iron filament feedstock: the first commercially available, and the second developed in collaboration with Nadir Srl as an upgrade of the former. The magnetic properties of the two materials subjected to different heat treatments are reported. The effectiveness of the technique is demonstrated through the realization of the magnetic circuit of a low-power thruster, whose design process is described in detail. The developed production procedure has shown the research group\u2019s<\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('482','tp_abstract')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> D\u2019Ant\u00f2, Vincenzo;  Bocchino, Tecla;  Levat\u00e8, Carmine;  Buono, Raffaele;  Razionale, Armando;  Barone, Sandro;  Savignano, Roberto<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('483','tp_links')\" style=\"cursor:pointer;\">Biomechanical Effects of Different Auxiliary\u2013Aligner Designs on the Rotation of an Upper Canine: A Finite Element Analysis of a Specific Patient<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">APPLIED SCIENCES, <\/span><span class=\"tp_pub_additional_volume\">vol. 14, <\/span><span class=\"tp_pub_additional_number\">no 6, <\/span><span class=\"tp_pub_additional_year\">2024<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_483\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('483','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_483\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('483','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_483\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{<LineBreak>\t11568_1227667,<br \/>\r\ntitle = {Biomechanical Effects of Different Auxiliary\u2013Aligner Designs on the Rotation of an Upper Canine: A Finite Element Analysis of a Specific Patient},<br \/>\r\nauthor = {Vincenzo D\u2019Ant\u00f2 and Tecla Bocchino and Carmine Levat\u00e8 and Raffaele Buono and Armando Razionale and Sandro Barone and Roberto Savignano},<br \/>\r\ndoi = {10.3390\/app14062308},<br \/>\r\nyear  = {2024},<br \/>\r\ndate = {2024-01-01},<br \/>\r\njournal = {APPLIED SCIENCES},<br \/>\r\nvolume = {14},<br \/>\r\nnumber = {6},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('483','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_483\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.3390\/app14062308\" title=\"Follow DOI:10.3390\/app14062308\" target=\"_blank\">doi:10.3390\/app14062308<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('483','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_book\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Barone, S.;  Paoli, A.;  Razionale, A. V.;  Berretta, M.;  Neri, P.<\/p><p class=\"tp_pub_title\">Disegno Tecnico Industriale - Seconda Edizione <span class=\"tp_pub_type tp_  book\">Book<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_publisher\">Citt\u00e0 Studi Edizioni, <\/span><span class=\"tp_pub_additional_address\">Torino, <\/span><span class=\"tp_pub_additional_year\">2024<\/span>, <span class=\"tp_pub_additional_isbn\">ISBN: 9788825174663<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_484\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('484','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_484\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@book{<LineBreak>\t11568_1281288,<br \/>\r\ntitle = {Disegno Tecnico Industriale - Seconda Edizione},<br \/>\r\nauthor = {S. Barone and A. Paoli and A. V. Razionale and M. Berretta and P. Neri},<br \/>\r\nisbn = {9788825174663},<br \/>\r\nyear  = {2024},<br \/>\r\ndate = {2024-01-01},<br \/>\r\npages = {1\u2013448},<br \/>\r\npublisher = {Citt\u00e0 Studi Edizioni},<br \/>\r\naddress = {Torino},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {book}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('484','tp_bibtex')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Urquhart, Lewis;  Tamburrino, Francesco;  Neri, Paolo;  Wodehouse, Andrew;  Fingland, Craig;  Razionale, ARMANDO VIVIANO<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('485','tp_links')\" style=\"cursor:pointer;\">An examination of auxetic componentry for applications in human-centred biomedical product design settings<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">INTERNATIONAL JOURNAL ON INTERACTIVE DESIGN AND MANUFACTURING, <\/span><span class=\"tp_pub_additional_number\">no 8, <\/span><span class=\"tp_pub_additional_pages\">pp. 1\u201311, <\/span><span class=\"tp_pub_additional_year\">2024<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_abstract_link\"><a id=\"tp_abstract_sh_485\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('485','tp_abstract')\" title=\"Show abstract\" style=\"cursor:pointer;\">Abstract<\/a><\/span> | <span class=\"tp_resource_link\"><a id=\"tp_links_sh_485\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('485','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_485\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('485','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_485\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{<LineBreak>\t11568_1234400,<br \/>\r\ntitle = {An examination of auxetic componentry for applications in human-centred biomedical product design settings},<br \/>\r\nauthor = {Lewis Urquhart and Francesco Tamburrino and Paolo Neri and Andrew Wodehouse and Craig Fingland and ARMANDO VIVIANO Razionale},<br \/>\r\nurl = {https:\/\/link.springer.com\/article\/10.1007\/s12008-023-01682-1},<br \/>\r\ndoi = {10.1007\/s12008-023-01682-1},<br \/>\r\nyear  = {2024},<br \/>\r\ndate = {2024-01-01},<br \/>\r\njournal = {INTERNATIONAL JOURNAL ON INTERACTIVE DESIGN AND MANUFACTURING},<br \/>\r\nnumber = {8},<br \/>\r\npages = {1\u201311},<br \/>\r\nabstract = {This paper explores how the examination of additively manufactured auxetic componentry can be applied in human-centred design settings with particular focus on biomedical products. Firstly, the design applications of auxetics are detailed followed by a review of the key problems facing practical researchers in the field with the treatment of boundary conditions identified as a key issue. The testing setup that is then introduced utilises a novel method of part mounting and facilitates optical analysis and real-time force\u2013displacement measurements. A study is advanced that analyses three different auxetic structures (re-entrant, chiral, and semi-rigid), a set of samples of which were additively manufactured in flexible TPU material. A range of parameters were varied across the three designs including interior geometry and wall thicknesses in order to demonstrate the effectiveness of the setup for the examination of the different structures. The results from these examinations are subsequently discussed and a number of suggestions made regarding how this kind of analysis may be integrated into novel design development workflows for achieving human-centred biomedical devices which often require detailed consideration of ergonomic and usability factors.},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('485','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_abstract\" id=\"tp_abstract_485\" style=\"display:none;\"><div class=\"tp_abstract_entry\">This paper explores how the examination of additively manufactured auxetic componentry can be applied in human-centred design settings with particular focus on biomedical products. Firstly, the design applications of auxetics are detailed followed by a review of the key problems facing practical researchers in the field with the treatment of boundary conditions identified as a key issue. The testing setup that is then introduced utilises a novel method of part mounting and facilitates optical analysis and real-time force\u2013displacement measurements. A study is advanced that analyses three different auxetic structures (re-entrant, chiral, and semi-rigid), a set of samples of which were additively manufactured in flexible TPU material. A range of parameters were varied across the three designs including interior geometry and wall thicknesses in order to demonstrate the effectiveness of the setup for the examination of the different structures. The results from these examinations are subsequently discussed and a number of suggestions made regarding how this kind of analysis may be integrated into novel design development workflows for achieving human-centred biomedical devices which often require detailed consideration of ergonomic and usability factors.<\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('485','tp_abstract')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_485\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"fas fa-globe\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/link.springer.com\/article\/10.1007\/s12008-023-01682-1\" title=\"https:\/\/link.springer.com\/article\/10.1007\/s12008-023-01682-1\" target=\"_blank\">https:\/\/link.springer.com\/article\/10.1007\/s12008-023-01682-1<\/a><\/li><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1007\/s12008-023-01682-1\" title=\"Follow DOI:10.1007\/s12008-023-01682-1\" target=\"_blank\">doi:10.1007\/s12008-023-01682-1<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('485','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Neri, Paolo;  Paoli, Alessandro;  Aruanno, Beatrice;  Barone, Sandro;  Tamburrino, Francesco;  Razionale, Armando V.<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('486','tp_links')\" style=\"cursor:pointer;\">3D scanning of Upper Limb anatomy by a depth-camera-based system<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">INTERNATIONAL JOURNAL ON INTERACTIVE DESIGN AND MANUFACTURING, <\/span><span class=\"tp_pub_additional_number\">no 8, <\/span><span class=\"tp_pub_additional_pages\">pp. 1\u201312, <\/span><span class=\"tp_pub_additional_year\">2024<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_abstract_link\"><a id=\"tp_abstract_sh_486\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('486','tp_abstract')\" title=\"Show abstract\" style=\"cursor:pointer;\">Abstract<\/a><\/span> | <span class=\"tp_resource_link\"><a id=\"tp_links_sh_486\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('486','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_486\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('486','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_486\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{<LineBreak>\t11568_1179208b,<br \/>\r\ntitle = {3D scanning of Upper Limb anatomy by a depth-camera-based system},<br \/>\r\nauthor = {Paolo Neri and Alessandro Paoli and Beatrice Aruanno and Sandro Barone and Francesco Tamburrino and Armando V. Razionale},<br \/>\r\ndoi = {10.1007\/s12008-023-01248-1},<br \/>\r\nyear  = {2024},<br \/>\r\ndate = {2024-01-01},<br \/>\r\njournal = {INTERNATIONAL JOURNAL ON INTERACTIVE DESIGN AND MANUFACTURING},<br \/>\r\nnumber = {8},<br \/>\r\npages = {1\u201312},<br \/>\r\nabstract = {The 3D reconstruction of upper limb anatomy plays a significant role in many biomedical fields such as ergonomics, motion rehabilitation, and prosthesis design. In the last few years, the technical advancement of consumer-grade depth cameras has supported the development of portable and low-cost optical 3D body scanners for healthcare applications. The real-time scanning of human body parts, however, still represents a complex task due to the non-stationary nature of the scanning target. This issue imposes that the scanning time must be reduced as much as possible to minimize scanning artifacts. In this regard, depth cameras can capture geometrical information at video frame rates, thus guaranteeing fast acquisition times. Furthermore, the simultaneous use of multiple sensors would minimize undercut geometries, which impair the 3D reconstruction\u2019s completeness. In this work, a portable 3D optical scanner has been developed by rigidly assembling three Intel\u00ae RealSense\u2122 D415 depth cameras on a lightweight circular frame. The three sensors are mutually calibrated, by using a 3D printed calibration specimen, to simultaneously align acquisitions from the three different camera viewpoints for each scanner pose. The system\u2019s effectiveness has been assessed by acquiring the geometry of both a plaster hand and a human hand and comparing the results with those obtained by a high-end stationary structured light scanner. The developed system represents a low-cost handheld alternative to existing body scanners for collecting and storing 3D anatomical data, which can be used in the design process of bespoke medical devices.},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('486','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_abstract\" id=\"tp_abstract_486\" style=\"display:none;\"><div class=\"tp_abstract_entry\">The 3D reconstruction of upper limb anatomy plays a significant role in many biomedical fields such as ergonomics, motion rehabilitation, and prosthesis design. In the last few years, the technical advancement of consumer-grade depth cameras has supported the development of portable and low-cost optical 3D body scanners for healthcare applications. The real-time scanning of human body parts, however, still represents a complex task due to the non-stationary nature of the scanning target. This issue imposes that the scanning time must be reduced as much as possible to minimize scanning artifacts. In this regard, depth cameras can capture geometrical information at video frame rates, thus guaranteeing fast acquisition times. Furthermore, the simultaneous use of multiple sensors would minimize undercut geometries, which impair the 3D reconstruction\u2019s completeness. In this work, a portable 3D optical scanner has been developed by rigidly assembling three Intel\u00ae RealSense\u2122 D415 depth cameras on a lightweight circular frame. The three sensors are mutually calibrated, by using a 3D printed calibration specimen, to simultaneously align acquisitions from the three different camera viewpoints for each scanner pose. The system\u2019s effectiveness has been assessed by acquiring the geometry of both a plaster hand and a human hand and comparing the results with those obtained by a high-end stationary structured light scanner. The developed system represents a low-cost handheld alternative to existing body scanners for collecting and storing 3D anatomical data, which can be used in the design process of bespoke medical devices.<\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('486','tp_abstract')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_486\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1007\/s12008-023-01248-1\" title=\"Follow DOI:10.1007\/s12008-023-01248-1\" target=\"_blank\">doi:10.1007\/s12008-023-01248-1<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('486','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><h3 class=\"tp_h3\" id=\"tp_h3_2023\">2023<\/h3><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Aruanno, B.;  Tamburrino, F.;  Razionale, A. V.;  Barone, S.;  Bordegoni, M.<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('366','tp_links')\" style=\"cursor:pointer;\">Automatic Algorithm to Design Bespoke Teeth Whitening Trays<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">COMPUTER-AIDED DESIGN AND APPLICATIONS, <\/span><span class=\"tp_pub_additional_volume\">vol. 20, <\/span><span class=\"tp_pub_additional_number\">no 1, <\/span><span class=\"tp_pub_additional_pages\">pp. 82\u201391, <\/span><span class=\"tp_pub_additional_year\">2023<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_366\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('366','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_366\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('366','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_366\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{<LineBreak>\t11568_1154523,<br \/>\r\ntitle = {Automatic Algorithm to Design Bespoke Teeth Whitening Trays},<br \/>\r\nauthor = {B. Aruanno and F. Tamburrino and A. V. Razionale and S. Barone and M. Bordegoni},<br \/>\r\nurl = {https:\/\/www.cad-journal.net\/files\/vol_20\/Vol20No1.html},<br \/>\r\ndoi = {10.14733\/cadaps.2023.82-91},<br \/>\r\nyear  = {2023},<br \/>\r\ndate = {2023-01-01},<br \/>\r\njournal = {COMPUTER-AIDED DESIGN AND APPLICATIONS},<br \/>\r\nvolume = {20},<br \/>\r\nnumber = {1},<br \/>\r\npages = {82\u201391},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('366','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_366\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"fas fa-globe\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/www.cad-journal.net\/files\/vol_20\/Vol20No1.html\" title=\"https:\/\/www.cad-journal.net\/files\/vol_20\/Vol20No1.html\" target=\"_blank\">https:\/\/www.cad-journal.net\/files\/vol_20\/Vol20No1.html<\/a><\/li><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.14733\/cadaps.2023.82-91\" title=\"Follow DOI:10.14733\/cadaps.2023.82-91\" target=\"_blank\">doi:10.14733\/cadaps.2023.82-91<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('366','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Aruanno, B.;  Paoli, A.;  Razionale, A. V.;  Tamburrino, F.<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('367','tp_links')\" style=\"cursor:pointer;\">Effect of printing parameters on extrusion-based additive manufacturing using highly filled CuSn12 filament<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">INTERNATIONAL JOURNAL, ADVANCED MANUFACTURING TECHNOLOGY, <\/span><span class=\"tp_pub_additional_pages\">pp. 1\u201314, <\/span><span class=\"tp_pub_additional_year\">2023<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_367\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('367','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_367\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('367','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_367\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{<LineBreak>\t11568_1196247,<br \/>\r\ntitle = {Effect of printing parameters on extrusion-based additive manufacturing using highly filled CuSn12 filament},<br \/>\r\nauthor = {B. Aruanno and A. Paoli and A. V. Razionale and F. Tamburrino},<br \/>\r\nurl = {https:\/\/link.springer.com\/article\/10.1007\/s00170-023-11919-8},<br \/>\r\ndoi = {10.1007\/s00170-023-11919-8},<br \/>\r\nyear  = {2023},<br \/>\r\ndate = {2023-01-01},<br \/>\r\njournal = {INTERNATIONAL JOURNAL, ADVANCED MANUFACTURING TECHNOLOGY},<br \/>\r\npages = {1\u201314},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('367','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_367\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"fas fa-globe\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/link.springer.com\/article\/10.1007\/s00170-023-11919-8\" title=\"https:\/\/link.springer.com\/article\/10.1007\/s00170-023-11919-8\" target=\"_blank\">https:\/\/link.springer.com\/article\/10.1007\/s00170-023-11919-8<\/a><\/li><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1007\/s00170-023-11919-8\" title=\"Follow DOI:10.1007\/s00170-023-11919-8\" target=\"_blank\">doi:10.1007\/s00170-023-11919-8<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('367','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_conference\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Marconcini, Francesco;  Tamburrino, Francesco;  Giammarinaro, Guido;  Paganucci, Fabrizio;  Razionale, ARMANDO VIVIANO<\/p><p class=\"tp_pub_title\">Investigation of the Material Extrusion Additive Manufacturing of an Inconel-718 Filament <span class=\"tp_pub_type tp_  conference\">Conference<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_booktitle\">EPMA2023 Proceedings, <\/span><span class=\"tp_pub_additional_year\">2023<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_487\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('487','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_487\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@conference{<LineBreak>\t11568_1206718,<br \/>\r\ntitle = {Investigation of the Material Extrusion Additive Manufacturing of an Inconel-718 Filament},<br \/>\r\nauthor = {Francesco Marconcini and Francesco Tamburrino and Guido Giammarinaro and Fabrizio Paganucci and ARMANDO VIVIANO Razionale},<br \/>\r\nyear  = {2023},<br \/>\r\ndate = {2023-01-01},<br \/>\r\nbooktitle = {EPMA2023 Proceedings},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {conference}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('487','tp_bibtex')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Paoli, Alessandro;  Neri, Paolo;  Razionale, Armando V.;  Angelo, Luca Di;  Stefano, Paolo Di;  Guardiani, Emanuele<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('488','tp_links')\" style=\"cursor:pointer;\">Automatic Point Clouds Alignment for the Reconstruction of Upper Limb Anatomy<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">COMPUTER-AIDED DESIGN AND APPLICATIONS, <\/span><span class=\"tp_pub_additional_volume\">vol. 20, <\/span><span class=\"tp_pub_additional_number\">no S6, <\/span><span class=\"tp_pub_additional_pages\">pp. 158\u2013169, <\/span><span class=\"tp_pub_additional_year\">2023<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_abstract_link\"><a id=\"tp_abstract_sh_488\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('488','tp_abstract')\" title=\"Show abstract\" style=\"cursor:pointer;\">Abstract<\/a><\/span> | <span class=\"tp_resource_link\"><a id=\"tp_links_sh_488\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('488','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_488\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('488','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_488\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{<LineBreak>\t11568_1162040b,<br \/>\r\ntitle = {Automatic Point Clouds Alignment for the Reconstruction of Upper Limb Anatomy},<br \/>\r\nauthor = {Alessandro Paoli and Paolo Neri and Armando V. Razionale and Luca Di Angelo and Paolo Di Stefano and Emanuele Guardiani},<br \/>\r\ndoi = {10.14733\/cadaps.2023.S6.158-169},<br \/>\r\nyear  = {2023},<br \/>\r\ndate = {2023-01-01},<br \/>\r\njournal = {COMPUTER-AIDED DESIGN AND APPLICATIONS},<br \/>\r\nvolume = {20},<br \/>\r\nnumber = {S6},<br \/>\r\npages = {158\u2013169},<br \/>\r\nabstract = {In the field of optical 3D scanning for healthcare applications, low-cost depth cameras can be efficiently used to capture geometry at video frame rates. However, the complete reconstruction of anatomical geometries remains challenging since different scans, collected from multiple viewpoints, must be aligned into a common reference frame. This paper proposes a fully automatic procedure to align scans of the upper limb patient\u2019s anatomy. A 3D optical scanner, obtained by assembling three depth cameras, is used to collect upper limb acquisitions. A relevant dataset of key points on the hand and the forearm geometry is then determined and used to automatically obtain a rough 3D alignment of the different scans. Hand key points are identified through a neural network, which works on RGB images captured by the depth cameras; forearm key points are recognized by directly processing the point clouds through a specifically designed algorithm that evaluates the skeleton line of the forearm. The approach was tested on forearm acquisitions, and the results were compared to alternative alignment methodologies.},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('488','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_abstract\" id=\"tp_abstract_488\" style=\"display:none;\"><div class=\"tp_abstract_entry\">In the field of optical 3D scanning for healthcare applications, low-cost depth cameras can be efficiently used to capture geometry at video frame rates. However, the complete reconstruction of anatomical geometries remains challenging since different scans, collected from multiple viewpoints, must be aligned into a common reference frame. This paper proposes a fully automatic procedure to align scans of the upper limb patient\u2019s anatomy. A 3D optical scanner, obtained by assembling three depth cameras, is used to collect upper limb acquisitions. A relevant dataset of key points on the hand and the forearm geometry is then determined and used to automatically obtain a rough 3D alignment of the different scans. Hand key points are identified through a neural network, which works on RGB images captured by the depth cameras; forearm key points are recognized by directly processing the point clouds through a specifically designed algorithm that evaluates the skeleton line of the forearm. The approach was tested on forearm acquisitions, and the results were compared to alternative alignment methodologies.<\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('488','tp_abstract')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_488\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.14733\/cadaps.2023.S6.158-169\" title=\"Follow DOI:10.14733\/cadaps.2023.S6.158-169\" target=\"_blank\">doi:10.14733\/cadaps.2023.S6.158-169<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('488','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_conference\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Tamburrino, F.;  Aruanno, B.;  Paoli, A.;  Razionale, A. V.<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('489','tp_links')\" style=\"cursor:pointer;\">Effects of Printing Speed and Thermal Post-processing Treatments on the Mechanical Properties of PEEK Processed by Fused Deposition Modeling<\/a> <span class=\"tp_pub_type tp_  conference\">Conference<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_booktitle\">Lecture Notes in Mechanical Engineering, <\/span><span class=\"tp_pub_additional_publisher\">Springer Science and Business Media Deutschland GmbH, <\/span><span class=\"tp_pub_additional_year\">2023<\/span>, <span class=\"tp_pub_additional_isbn\">ISBN: 9783031520754<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_489\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('489','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_489\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('489','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_489\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@conference{<LineBreak>\t11568_1234398,<br \/>\r\ntitle = {Effects of Printing Speed and Thermal Post-processing Treatments on the Mechanical Properties of PEEK Processed by Fused Deposition Modeling},<br \/>\r\nauthor = {F. Tamburrino and B. Aruanno and A. Paoli and A. V. Razionale},<br \/>\r\ndoi = {10.1007\/978-3-031-52075-4_5},<br \/>\r\nisbn = {9783031520754},<br \/>\r\nyear  = {2023},<br \/>\r\ndate = {2023-01-01},<br \/>\r\nbooktitle = {Lecture Notes in Mechanical Engineering},<br \/>\r\npages = {41\u201349},<br \/>\r\npublisher = {Springer Science and Business Media Deutschland GmbH},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {conference}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('489','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_489\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1007\/978-3-031-52075-4_5\" title=\"Follow DOI:10.1007\/978-3-031-52075-4_5\" target=\"_blank\">doi:10.1007\/978-3-031-52075-4_5<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('489','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_conference\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Neri, P.;  Paoli, A.;  Razionale, A. V.;  Barone, S.<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('490','tp_links')\" style=\"cursor:pointer;\">Educational Test Bench for Full Field Vibration Measurements<\/a> <span class=\"tp_pub_type tp_  conference\">Conference<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_booktitle\">Lecture Notes in Mechanical Engineering, <\/span><span class=\"tp_pub_additional_publisher\">Springer Science and Business Media Deutschland GmbH, <\/span><span class=\"tp_pub_additional_year\">2023<\/span>, <span class=\"tp_pub_additional_isbn\">ISBN: 9783031520754<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_490\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('490','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_490\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('490','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_490\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@conference{<LineBreak>\t11568_1234395,<br \/>\r\ntitle = {Educational Test Bench for Full Field Vibration Measurements},<br \/>\r\nauthor = {P. Neri and A. Paoli and A. V. Razionale and S. Barone},<br \/>\r\ndoi = {10.1007\/978-3-031-52075-4_42},<br \/>\r\nisbn = {9783031520754},<br \/>\r\nyear  = {2023},<br \/>\r\ndate = {2023-01-01},<br \/>\r\nbooktitle = {Lecture Notes in Mechanical Engineering},<br \/>\r\npages = {373\u2013380},<br \/>\r\npublisher = {Springer Science and Business Media Deutschland GmbH},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {conference}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('490','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_490\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1007\/978-3-031-52075-4_42\" title=\"Follow DOI:10.1007\/978-3-031-52075-4_42\" target=\"_blank\">doi:10.1007\/978-3-031-52075-4_42<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('490','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Aruanno, B.;  Barone, S.;  Bordegoni, M.;  Razionale, A. V.;  Tamburrino, F.<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('493','tp_links')\" style=\"cursor:pointer;\">A Digital Workflow for the Design and Additive Manufacturing of Multi-thickness Dental Aligners<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">COMPUTER-AIDED DESIGN AND APPLICATIONS, <\/span><span class=\"tp_pub_additional_volume\">vol. 20, <\/span><span class=\"tp_pub_additional_pages\">pp. 111\u2013121, <\/span><span class=\"tp_pub_additional_year\">2023<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_493\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('493','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_493\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('493','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_493\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{<LineBreak>\t11568_1162048b,<br \/>\r\ntitle = {A Digital Workflow for the Design and Additive Manufacturing of Multi-thickness Dental Aligners},<br \/>\r\nauthor = {B. Aruanno and S. Barone and M. Bordegoni and A. V. Razionale and F. Tamburrino},<br \/>\r\ndoi = {10.14733\/cadaps.2023.S6.111-121},<br \/>\r\nyear  = {2023},<br \/>\r\ndate = {2023-01-01},<br \/>\r\njournal = {COMPUTER-AIDED DESIGN AND APPLICATIONS},<br \/>\r\nvolume = {20},<br \/>\r\npages = {111\u2013121},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('493','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_493\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.14733\/cadaps.2023.S6.111-121\" title=\"Follow DOI:10.14733\/cadaps.2023.S6.111-121\" target=\"_blank\">doi:10.14733\/cadaps.2023.S6.111-121<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('493','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><h3 class=\"tp_h3\" id=\"tp_h3_2022\">2022<\/h3><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Tamburrino, Francesco;  Aruanno, Beatrice;  Razionale, Armando V.;  Barone, Sandro;  Martini, Marco;  Bordegoni, Monica<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('368','tp_links')\" style=\"cursor:pointer;\">A Digital Process for Manufacturing Customized Trays for Dental-Whitening Treatments<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">PROCESSES, <\/span><span class=\"tp_pub_additional_volume\">vol. 10, <\/span><span class=\"tp_pub_additional_number\">no 7, <\/span><span class=\"tp_pub_additional_year\">2022<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_abstract_link\"><a id=\"tp_abstract_sh_368\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('368','tp_abstract')\" title=\"Show abstract\" style=\"cursor:pointer;\">Abstract<\/a><\/span> | <span class=\"tp_resource_link\"><a id=\"tp_links_sh_368\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('368','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_368\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('368','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_368\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{<LineBreak>\t11568_1147359,<br \/>\r\ntitle = {A Digital Process for Manufacturing Customized Trays for Dental-Whitening Treatments},<br \/>\r\nauthor = {Francesco Tamburrino and Beatrice Aruanno and Armando V. Razionale and Sandro Barone and Marco Martini and Monica Bordegoni},<br \/>\r\nurl = {https:\/\/www.mdpi.com\/2227-9717\/10\/7\/1232},<br \/>\r\ndoi = {10.3390\/pr10071232},<br \/>\r\nyear  = {2022},<br \/>\r\ndate = {2022-01-01},<br \/>\r\njournal = {PROCESSES},<br \/>\r\nvolume = {10},<br \/>\r\nnumber = {7},<br \/>\r\nabstract = {This study presents an alternative process for designing and manufacturing customized trays for dental-whitening treatments. The process is based on a digitized approach consisting of three main stages: design of a reference model, its manufacturing by AM, and thermoforming of the tray. The aim of the study was to develop a high-performance tray, able to guarantee comfort, safety, and efficacy for whitening treatments. To evaluate the patient\u2019s experience, some tests under real operating conditions were performed. Twenty people carried out a nighttime treatment of 14 days. Each patient was asked to assess the overall level of satisfaction and the comfort of the tray and its ability to retain the gel. Tooth whitening was also determined according to the VITAPAN scale. All patients involved in the study were satisfied and provided positive feedback about comfort and tightness of the tray. At the end of the treatment, 15 out of 20 patients achieved shade A1 on the VITAPAN scale. The mean improvement in color shades was about 7. These results confirmed the great potential of the proposed dental tray. Its use was proven to guarantee a high level of quality, flexibility, and customization of dental-whitening treatments, improving comfort, safety, and efficacy.},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('368','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_abstract\" id=\"tp_abstract_368\" style=\"display:none;\"><div class=\"tp_abstract_entry\">This study presents an alternative process for designing and manufacturing customized trays for dental-whitening treatments. The process is based on a digitized approach consisting of three main stages: design of a reference model, its manufacturing by AM, and thermoforming of the tray. The aim of the study was to develop a high-performance tray, able to guarantee comfort, safety, and efficacy for whitening treatments. To evaluate the patient\u2019s experience, some tests under real operating conditions were performed. Twenty people carried out a nighttime treatment of 14 days. Each patient was asked to assess the overall level of satisfaction and the comfort of the tray and its ability to retain the gel. Tooth whitening was also determined according to the VITAPAN scale. All patients involved in the study were satisfied and provided positive feedback about comfort and tightness of the tray. At the end of the treatment, 15 out of 20 patients achieved shade A1 on the VITAPAN scale. The mean improvement in color shades was about 7. These results confirmed the great potential of the proposed dental tray. Its use was proven to guarantee a high level of quality, flexibility, and customization of dental-whitening treatments, improving comfort, safety, and efficacy.<\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('368','tp_abstract')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_368\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"fas fa-globe\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/www.mdpi.com\/2227-9717\/10\/7\/1232\" title=\"https:\/\/www.mdpi.com\/2227-9717\/10\/7\/1232\" target=\"_blank\">https:\/\/www.mdpi.com\/2227-9717\/10\/7\/1232<\/a><\/li><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.3390\/pr10071232\" title=\"Follow DOI:10.3390\/pr10071232\" target=\"_blank\">doi:10.3390\/pr10071232<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('368','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_conference\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Tamburrino, Francesco;  Neri, Paolo;  Paoli, Alessandro;  Razionale, ARMANDO VIVIANO<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('371','tp_links')\" style=\"cursor:pointer;\">Effects of Coating Post-processing on Mechanical Properties of Strut-and-Node-Based SLA Lattice Structures<\/a> <span class=\"tp_pub_type tp_  conference\">Conference<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_booktitle\">Advances on Mechanics, Design Engineering and Manufacturing IV, <\/span><span class=\"tp_pub_additional_year\">2022<\/span>, <span class=\"tp_pub_additional_isbn\">ISBN: 978-3-031-15927-5<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_371\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('371','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_371\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('371','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_371\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@conference{<LineBreak>\t11568_1162734,<br \/>\r\ntitle = {Effects of Coating Post-processing on Mechanical Properties of Strut-and-Node-Based SLA Lattice Structures},<br \/>\r\nauthor = {Francesco Tamburrino and Paolo Neri and Alessandro Paoli and ARMANDO VIVIANO Razionale},<br \/>\r\ndoi = {10.1007\/978-3-031-15928-2_82},<br \/>\r\nisbn = {978-3-031-15927-5},<br \/>\r\nyear  = {2022},<br \/>\r\ndate = {2022-01-01},<br \/>\r\nbooktitle = {Advances on Mechanics, Design Engineering and Manufacturing IV},<br \/>\r\npages = {937\u2013945},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {conference}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('371','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_371\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1007\/978-3-031-15928-2_82\" title=\"Follow DOI:10.1007\/978-3-031-15928-2_82\" target=\"_blank\">doi:10.1007\/978-3-031-15928-2_82<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('371','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_conference\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Paganucci, F.;  Becatti, G.;  Saravia, M. M.;  Giammarinaro, G.;  Marconcini, F.;  Camarri, S.;  Razionale, A. V.<\/p><p class=\"tp_pub_title\">Electric Propulsion Activities at DICI-Unipi <span class=\"tp_pub_type tp_  conference\">Conference<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_booktitle\">8th SP Proceedings, <\/span><span class=\"tp_pub_additional_year\">2022<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_372\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('372','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_372\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@conference{<LineBreak>\t11568_1155423,<br \/>\r\ntitle = {Electric Propulsion Activities at DICI-Unipi},<br \/>\r\nauthor = {F. Paganucci and G. Becatti and M. M. Saravia and G. Giammarinaro and F. Marconcini and S. Camarri and A. V. Razionale},<br \/>\r\nyear  = {2022},<br \/>\r\ndate = {2022-01-01},<br \/>\r\nbooktitle = {8th SP Proceedings},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {conference}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('372','tp_bibtex')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Neri, P.;  Paoli, A.;  Razionale, A. V.;  Santus, C.<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('373','tp_links')\" style=\"cursor:pointer;\">Low-speed cameras system for 3D-DIC vibration measurements in the kHz range<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">MECHANICAL SYSTEMS AND SIGNAL PROCESSING, <\/span><span class=\"tp_pub_additional_volume\">vol. 162, <\/span><span class=\"tp_pub_additional_pages\">pp. 1\u201314, <\/span><span class=\"tp_pub_additional_year\">2022<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_373\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('373','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_373\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('373','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_373\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{<LineBreak>\t11568_1113891,<br \/>\r\ntitle = {Low-speed cameras system for 3D-DIC vibration measurements in the kHz range},<br \/>\r\nauthor = {P. Neri and A. Paoli and A. V. Razionale and C. Santus},<br \/>\r\ndoi = {10.1016\/j.ymssp.2021.108040},<br \/>\r\nyear  = {2022},<br \/>\r\ndate = {2022-01-01},<br \/>\r\njournal = {MECHANICAL SYSTEMS AND SIGNAL PROCESSING},<br \/>\r\nvolume = {162},<br \/>\r\npages = {1\u201314},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('373','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_373\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1016\/j.ymssp.2021.108040\" title=\"Follow DOI:10.1016\/j.ymssp.2021.108040\" target=\"_blank\">doi:10.1016\/j.ymssp.2021.108040<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('373','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_conference\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Neri, Paolo;  Aruanno, Beatrice;  Barone, Sandro;  Paoli, Alessandro;  Razionale, Armando V.<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('374','tp_links')\" style=\"cursor:pointer;\">Semi-automatic point clouds registration for upper limb anatomy<\/a> <span class=\"tp_pub_type tp_  conference\">Conference<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_booktitle\">Advances on Mechanics, Design Engineering and Manufacturing IV, <\/span><span class=\"tp_pub_additional_year\">2022<\/span>, <span class=\"tp_pub_additional_isbn\">ISBN: 978-3-031-15927-5<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_abstract_link\"><a id=\"tp_abstract_sh_374\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('374','tp_abstract')\" title=\"Show abstract\" style=\"cursor:pointer;\">Abstract<\/a><\/span> | <span class=\"tp_resource_link\"><a id=\"tp_links_sh_374\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('374','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_374\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('374','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_374\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@conference{<LineBreak>\t11568_1162043,<br \/>\r\ntitle = {Semi-automatic point clouds registration for upper limb anatomy},<br \/>\r\nauthor = {Paolo Neri and Beatrice Aruanno and Sandro Barone and Alessandro Paoli and Armando V. Razionale},<br \/>\r\ndoi = {10.1007\/978-3-031-15928-2_64},<br \/>\r\nisbn = {978-3-031-15927-5},<br \/>\r\nyear  = {2022},<br \/>\r\ndate = {2022-01-01},<br \/>\r\nbooktitle = {Advances on Mechanics, Design Engineering and Manufacturing IV},<br \/>\r\npages = {733\u2013742},<br \/>\r\nabstract = {In this paper, a semi-automatic procedure to perform point clouds reg-istration is presented. The method was developed for upper limb 3D scanning. During the acquisition, several frames are acquired from different points of view, to obtain a full 360\u00b0 acquisition of the arm. Each frame stores both the point clouds coordinates and the corresponding RGB image. During post-processing, the RGB image is elaborated through a neural network, to detect relevant key points of the hand, which are then projected to the point clouds. The correspond-ing key points detected from different acquisitions are then used to automatically obtain a rough 3D rotation that aligns the point clouds corresponding to different perspectives in a common reference frame. Finally, the registration is refined through an iterative closest point algorithm. The method was tested on actual arm acquisitions, and the registration results are compared with the conventional fully manual 3-2-1 registration procedure, showing promising results of the proposed method.},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {conference}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('374','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_abstract\" id=\"tp_abstract_374\" style=\"display:none;\"><div class=\"tp_abstract_entry\">In this paper, a semi-automatic procedure to perform point clouds reg-istration is presented. The method was developed for upper limb 3D scanning. During the acquisition, several frames are acquired from different points of view, to obtain a full 360\u00b0 acquisition of the arm. Each frame stores both the point clouds coordinates and the corresponding RGB image. During post-processing, the RGB image is elaborated through a neural network, to detect relevant key points of the hand, which are then projected to the point clouds. The correspond-ing key points detected from different acquisitions are then used to automatically obtain a rough 3D rotation that aligns the point clouds corresponding to different perspectives in a common reference frame. Finally, the registration is refined through an iterative closest point algorithm. The method was tested on actual arm acquisitions, and the registration results are compared with the conventional fully manual 3-2-1 registration procedure, showing promising results of the proposed method.<\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('374','tp_abstract')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_374\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1007\/978-3-031-15928-2_64\" title=\"Follow DOI:10.1007\/978-3-031-15928-2_64\" target=\"_blank\">doi:10.1007\/978-3-031-15928-2_64<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('374','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_conference\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Neri, Paolo;  Aruanno, Beatrice;  Barone, Sandro;  Paoli, Alessandro;  Razionale, Armando V.<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('495','tp_links')\" style=\"cursor:pointer;\">Semi-automatic point clouds registration for upper limb anatomy<\/a> <span class=\"tp_pub_type tp_  conference\">Conference<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_booktitle\">Advances on Mechanics, Design Engineering and Manufacturing IV, <\/span><span class=\"tp_pub_additional_year\">2022<\/span>, <span class=\"tp_pub_additional_isbn\">ISBN: 978-3-031-15927-5<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_abstract_link\"><a id=\"tp_abstract_sh_495\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('495','tp_abstract')\" title=\"Show abstract\" style=\"cursor:pointer;\">Abstract<\/a><\/span> | <span class=\"tp_resource_link\"><a id=\"tp_links_sh_495\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('495','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_495\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('495','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_495\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@conference{<LineBreak>\t11568_1162043b,<br \/>\r\ntitle = {Semi-automatic point clouds registration for upper limb anatomy},<br \/>\r\nauthor = {Paolo Neri and Beatrice Aruanno and Sandro Barone and Alessandro Paoli and Armando V. Razionale},<br \/>\r\ndoi = {10.1007\/978-3-031-15928-2_64},<br \/>\r\nisbn = {978-3-031-15927-5},<br \/>\r\nyear  = {2022},<br \/>\r\ndate = {2022-01-01},<br \/>\r\nbooktitle = {Advances on Mechanics, Design Engineering and Manufacturing IV},<br \/>\r\npages = {733\u2013742},<br \/>\r\nabstract = {In this paper, a semi-automatic procedure to perform point clouds reg-istration is presented. The method was developed for upper limb 3D scanning. During the acquisition, several frames are acquired from different points of view, to obtain a full 360\u00b0 acquisition of the arm. Each frame stores both the point clouds coordinates and the corresponding RGB image. During post-processing, the RGB image is elaborated through a neural network, to detect relevant key points of the hand, which are then projected to the point clouds. The correspond-ing key points detected from different acquisitions are then used to automatically obtain a rough 3D rotation that aligns the point clouds corresponding to different perspectives in a common reference frame. Finally, the registration is refined through an iterative closest point algorithm. The method was tested on actual arm acquisitions, and the registration results are compared with the conventional fully manual 3-2-1 registration procedure, showing promising results of the proposed method.},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {conference}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('495','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_abstract\" id=\"tp_abstract_495\" style=\"display:none;\"><div class=\"tp_abstract_entry\">In this paper, a semi-automatic procedure to perform point clouds reg-istration is presented. The method was developed for upper limb 3D scanning. During the acquisition, several frames are acquired from different points of view, to obtain a full 360\u00b0 acquisition of the arm. Each frame stores both the point clouds coordinates and the corresponding RGB image. During post-processing, the RGB image is elaborated through a neural network, to detect relevant key points of the hand, which are then projected to the point clouds. The correspond-ing key points detected from different acquisitions are then used to automatically obtain a rough 3D rotation that aligns the point clouds corresponding to different perspectives in a common reference frame. Finally, the registration is refined through an iterative closest point algorithm. The method was tested on actual arm acquisitions, and the registration results are compared with the conventional fully manual 3-2-1 registration procedure, showing promising results of the proposed method.<\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('495','tp_abstract')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_495\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1007\/978-3-031-15928-2_64\" title=\"Follow DOI:10.1007\/978-3-031-15928-2_64\" target=\"_blank\">doi:10.1007\/978-3-031-15928-2_64<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('495','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><h3 class=\"tp_h3\" id=\"tp_h3_2021\">2021<\/h3><div class=\"tp_publication tp_publication_inbook\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Neri, Paolo;  Barone, Sandro;  Paoli, Alessandro;  Razionale, Armando Viviano;  Tamburrino, Francesco<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('375','tp_links')\" style=\"cursor:pointer;\">A Depth-Camera Based System for the Real-Time Scanning of Upper Limb Anatomy<\/a> <span class=\"tp_pub_type tp_  inbook\">Book Chapter<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_booktitle\">Design Tools and Methods in Industrial Engineering II ADM 2021, <\/span><span class=\"tp_pub_additional_pages\">pp. 245\u2013255, <\/span><span class=\"tp_pub_additional_publisher\">Springer, Cham, <\/span><span class=\"tp_pub_additional_year\">2021<\/span>, <span class=\"tp_pub_additional_isbn\">ISBN: 978-3-030-91234-5<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_375\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('375','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_375\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('375','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_375\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@inbook{<LineBreak>\t11568_1113899,<br \/>\r\ntitle = {A Depth-Camera Based System for the Real-Time Scanning of Upper Limb Anatomy},<br \/>\r\nauthor = {Paolo Neri and Sandro Barone and Alessandro Paoli and Armando Viviano Razionale and Francesco Tamburrino},<br \/>\r\ndoi = {10.1007\/978-3-030-91234-5_25},<br \/>\r\nisbn = {978-3-030-91234-5},<br \/>\r\nyear  = {2021},<br \/>\r\ndate = {2021-01-01},<br \/>\r\nbooktitle = {Design Tools and Methods in Industrial Engineering II ADM 2021},<br \/>\r\npages = {245\u2013255},<br \/>\r\npublisher = {Springer, Cham},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {inbook}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('375','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_375\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1007\/978-3-030-91234-5_25\" title=\"Follow DOI:10.1007\/978-3-030-91234-5_25\" target=\"_blank\">doi:10.1007\/978-3-030-91234-5_25<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('375','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_inbook\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Barone, Sandro;  Neri, Paolo;  Paoli, Alessandro;  Razionale, Armando Viviano;  Tamburrino, Francesco<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('376','tp_links')\" style=\"cursor:pointer;\">Effects of Coating Post-processing on the Compressive Properties of Strut-and-Node-Based FDM Lattice Structures<\/a> <span class=\"tp_pub_type tp_  inbook\">Book Chapter<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_booktitle\">Design Tools and Methods in Industrial Engineering II ADM 2021, <\/span><span class=\"tp_pub_additional_pages\">pp. 442\u2013450, <\/span><span class=\"tp_pub_additional_publisher\">Springer, Cham, <\/span><span class=\"tp_pub_additional_year\">2021<\/span>, <span class=\"tp_pub_additional_isbn\">ISBN: 978-3-030-91234-5<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_376\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('376','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_376\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('376','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_376\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@inbook{<LineBreak>\t11568_1113895,<br \/>\r\ntitle = {Effects of Coating Post-processing on the Compressive Properties of Strut-and-Node-Based FDM Lattice Structures},<br \/>\r\nauthor = {Sandro Barone and Paolo Neri and Alessandro Paoli and Armando Viviano Razionale and Francesco Tamburrino},<br \/>\r\ndoi = {10.1007\/978-3-030-91234-5_45},<br \/>\r\nisbn = {978-3-030-91234-5},<br \/>\r\nyear  = {2021},<br \/>\r\ndate = {2021-01-01},<br \/>\r\nbooktitle = {Design Tools and Methods in Industrial Engineering II ADM 2021},<br \/>\r\npages = {442\u2013450},<br \/>\r\npublisher = {Springer, Cham},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {inbook}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('376','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_376\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1007\/978-3-030-91234-5_45\" title=\"Follow DOI:10.1007\/978-3-030-91234-5_45\" target=\"_blank\">doi:10.1007\/978-3-030-91234-5_45<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('376','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_conference\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Urquhart, L. W. R.;  Tamburrino, F.;  Wodehouse, A.;  Neri, P.;  Razionale, A. V.<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('377','tp_links')\" style=\"cursor:pointer;\">Examination of additively manufactured auxetic components using a novel testing setup<\/a> <span class=\"tp_pub_type tp_  conference\">Conference<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_booktitle\">2nd International Conference on Design Tools and Methods in Industrial Engineering, ADM 2021, <\/span><span class=\"tp_pub_additional_year\">2021<\/span>, <span class=\"tp_pub_additional_isbn\">ISBN: 978-3-030-91233-8<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_abstract_link\"><a id=\"tp_abstract_sh_377\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('377','tp_abstract')\" title=\"Show abstract\" style=\"cursor:pointer;\">Abstract<\/a><\/span> | <span class=\"tp_resource_link\"><a id=\"tp_links_sh_377\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('377','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_377\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('377','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_377\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@conference{<LineBreak>\t11568_1120030,<br \/>\r\ntitle = {Examination of additively manufactured auxetic components using a novel testing setup},<br \/>\r\nauthor = {L. W. R. Urquhart and F. Tamburrino and A. Wodehouse and P. Neri and A. V. Razionale},<br \/>\r\ndoi = {10.1007\/978-3-030-91234-5_46},<br \/>\r\nisbn = {978-3-030-91233-8},<br \/>\r\nyear  = {2021},<br \/>\r\ndate = {2021-01-01},<br \/>\r\nbooktitle = {2nd International Conference on Design Tools and Methods in Industrial Engineering, ADM 2021},<br \/>\r\npages = {1\u201311},<br \/>\r\nabstract = {This paper reports upon the results of an initial test cycle using a bespoke testing rig designed expressly to examine additively manufactured auxetic components. Firstly, the key problems facing practical researchers in the field of auxetics is explored with the treatment of the boundary condition identified as a key issue. The testing setup that is then introduced utilises a novel means of part mounting and facilitates optical analysis and real-time force measurements. The study anal-yses three different auxetic structures (re-entrant, chiral and semi-rigid), a set of samples of which were additively manufactured in TPU material. A range of pa-rameters were varied across the three designs including interior geometry and wall thicknesses in order to demonstrate the effectiveness of the setup for the ex-amination of different structures. Several key results were distilled from the tests that were then further analysed through numerical modelling and discussed with respect to future testing. Our investigation shows a close alignment between the physical testing results and the simulations, indicating that the testing configura-tion is rigorous and may be used to explore the mechanical behaviour of more complex auxetic componentry.},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {conference}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('377','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_abstract\" id=\"tp_abstract_377\" style=\"display:none;\"><div class=\"tp_abstract_entry\">This paper reports upon the results of an initial test cycle using a bespoke testing rig designed expressly to examine additively manufactured auxetic components. Firstly, the key problems facing practical researchers in the field of auxetics is explored with the treatment of the boundary condition identified as a key issue. The testing setup that is then introduced utilises a novel means of part mounting and facilitates optical analysis and real-time force measurements. The study anal-yses three different auxetic structures (re-entrant, chiral and semi-rigid), a set of samples of which were additively manufactured in TPU material. A range of pa-rameters were varied across the three designs including interior geometry and wall thicknesses in order to demonstrate the effectiveness of the setup for the ex-amination of different structures. Several key results were distilled from the tests that were then further analysed through numerical modelling and discussed with respect to future testing. Our investigation shows a close alignment between the physical testing results and the simulations, indicating that the testing configura-tion is rigorous and may be used to explore the mechanical behaviour of more complex auxetic componentry.<\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('377','tp_abstract')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_377\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1007\/978-3-030-91234-5_46\" title=\"Follow DOI:10.1007\/978-3-030-91234-5_46\" target=\"_blank\">doi:10.1007\/978-3-030-91234-5_46<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('377','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Tamburrino, F.;  Barone, S.;  Paoli, A.;  Razionale, A. V.<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('378','tp_links')\" style=\"cursor:pointer;\">Post-processing treatments to enhance additively manufactured polymeric parts: a review<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">VIRTUAL AND PHYSICAL PROTOTYPING, <\/span><span class=\"tp_pub_additional_volume\">vol. 16, <\/span><span class=\"tp_pub_additional_number\">no 2, <\/span><span class=\"tp_pub_additional_pages\">pp. 218\u2013251, <\/span><span class=\"tp_pub_additional_year\">2021<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_378\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('378','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_378\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('378','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_378\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{<LineBreak>\t11568_1102986,<br \/>\r\ntitle = {Post-processing treatments to enhance additively manufactured polymeric parts: a review},<br \/>\r\nauthor = {F. Tamburrino and S. Barone and A. Paoli and A. V. Razionale},<br \/>\r\ndoi = {10.1080\/17452759.2021.1917039},<br \/>\r\nyear  = {2021},<br \/>\r\ndate = {2021-01-01},<br \/>\r\njournal = {VIRTUAL AND PHYSICAL PROTOTYPING},<br \/>\r\nvolume = {16},<br \/>\r\nnumber = {2},<br \/>\r\npages = {218\u2013251},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('378','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_378\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1080\/17452759.2021.1917039\" title=\"Follow DOI:10.1080\/17452759.2021.1917039\" target=\"_blank\">doi:10.1080\/17452759.2021.1917039<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('378','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Martina, S.;  Martini, M.;  Bordegoni, M.;  Razionale, A. V.<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('379','tp_links')\" style=\"cursor:pointer;\">Predictability of Root Movements Using Virtual Root Setup in a Patient With Periodontal Disease Treated With Clear Aligners<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">THE OPEN DENTISTRY JOURNAL, <\/span><span class=\"tp_pub_additional_volume\">vol. 15, <\/span><span class=\"tp_pub_additional_number\">no 1, <\/span><span class=\"tp_pub_additional_pages\">pp. 605\u2013611, <\/span><span class=\"tp_pub_additional_year\">2021<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_379\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('379','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_379\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('379','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_379\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{<LineBreak>\t11568_1139188,<br \/>\r\ntitle = {Predictability of Root Movements Using Virtual Root Setup in a Patient With Periodontal Disease Treated With Clear Aligners},<br \/>\r\nauthor = {S. Martina and M. Martini and M. Bordegoni and A. V. Razionale},<br \/>\r\ndoi = {10.2174\/1874210602115010605},<br \/>\r\nyear  = {2021},<br \/>\r\ndate = {2021-01-01},<br \/>\r\njournal = {THE OPEN DENTISTRY JOURNAL},<br \/>\r\nvolume = {15},<br \/>\r\nnumber = {1},<br \/>\r\npages = {605\u2013611},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('379','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_379\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.2174\/1874210602115010605\" title=\"Follow DOI:10.2174\/1874210602115010605\" target=\"_blank\">doi:10.2174\/1874210602115010605<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('379','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_conference\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Neri, P.;  Paoli, A.;  Razionale, A. V.;  Santus, C.<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('380','tp_links')\" style=\"cursor:pointer;\">Time-domain image filtering for DIC vibration measurements<\/a> <span class=\"tp_pub_type tp_  conference\">Conference<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_volume\">vol. 2041, <\/span><span class=\"tp_pub_additional_number\">no 1, <\/span><span class=\"tp_pub_additional_year\">2021<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_380\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('380','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_380\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('380','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_380\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@conference{<LineBreak>\t11568_1113004,<br \/>\r\ntitle = {Time-domain image filtering for DIC vibration measurements},<br \/>\r\nauthor = {P. Neri and A. Paoli and A. V. Razionale and C. Santus},<br \/>\r\ndoi = {10.1088\/1742-6596\/2041\/1\/012008},<br \/>\r\nyear  = {2021},<br \/>\r\ndate = {2021-01-01},<br \/>\r\njournal = {JOURNAL OF PHYSICS. CONFERENCE SERIES},<br \/>\r\nvolume = {2041},<br \/>\r\nnumber = {1},<br \/>\r\npages = {1\u20139},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {conference}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('380','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_380\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1088\/1742-6596\/2041\/1\/012008\" title=\"Follow DOI:10.1088\/1742-6596\/2041\/1\/012008\" target=\"_blank\">doi:10.1088\/1742-6596\/2041\/1\/012008<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('380','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Martina, S.;  Martini, M.;  Bordegoni, M.;  Razionale, A. V.<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('498','tp_links')\" style=\"cursor:pointer;\">Predictability of Root Movements Using Virtual Root Setup in a Patient With Periodontal Disease Treated With Clear Aligners<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">THE OPEN DENTISTRY JOURNAL, <\/span><span class=\"tp_pub_additional_volume\">vol. 15, <\/span><span class=\"tp_pub_additional_number\">no 1, <\/span><span class=\"tp_pub_additional_pages\">pp. 605\u2013611, <\/span><span class=\"tp_pub_additional_year\">2021<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_498\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('498','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_498\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('498','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_498\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{<LineBreak>\t11568_1139188b,<br \/>\r\ntitle = {Predictability of Root Movements Using Virtual Root Setup in a Patient With Periodontal Disease Treated With Clear Aligners},<br \/>\r\nauthor = {S. Martina and M. Martini and M. Bordegoni and A. V. Razionale},<br \/>\r\ndoi = {10.2174\/1874210602115010605},<br \/>\r\nyear  = {2021},<br \/>\r\ndate = {2021-01-01},<br \/>\r\njournal = {THE OPEN DENTISTRY JOURNAL},<br \/>\r\nvolume = {15},<br \/>\r\nnumber = {1},<br \/>\r\npages = {605\u2013611},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('498','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_498\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.2174\/1874210602115010605\" title=\"Follow DOI:10.2174\/1874210602115010605\" target=\"_blank\">doi:10.2174\/1874210602115010605<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('498','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><h3 class=\"tp_h3\" id=\"tp_h3_2020\">2020<\/h3><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Barone, S.;  Neri, P.;  Paoli, A.;  Razionale, A. V.<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('381','tp_links')\" style=\"cursor:pointer;\">3D acquisition and stereo-camera calibration by active devices: A unique structured light encoding framework<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">OPTICS AND LASERS IN ENGINEERING, <\/span><span class=\"tp_pub_additional_volume\">vol. 127, <\/span><span class=\"tp_pub_additional_pages\">pp. 1\u201312, <\/span><span class=\"tp_pub_additional_year\">2020<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_381\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('381','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_381\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('381','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_381\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{<LineBreak>\t11568_1017881,<br \/>\r\ntitle = {3D acquisition and stereo-camera calibration by active devices: A unique structured light encoding framework},<br \/>\r\nauthor = {S. Barone and P. Neri and A. Paoli and A. V. Razionale},<br \/>\r\ndoi = {10.1016\/j.optlaseng.2019.105989},<br \/>\r\nyear  = {2020},<br \/>\r\ndate = {2020-01-01},<br \/>\r\njournal = {OPTICS AND LASERS IN ENGINEERING},<br \/>\r\nvolume = {127},<br \/>\r\npages = {1\u201312},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('381','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_381\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1016\/j.optlaseng.2019.105989\" title=\"Follow DOI:10.1016\/j.optlaseng.2019.105989\" target=\"_blank\">doi:10.1016\/j.optlaseng.2019.105989<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('381','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_book\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Barone, Sandro;  Paoli, Alessandro;  Razionale, ARMANDO VIVIANO;  Berretta, Maurizio<\/p><p class=\"tp_pub_title\">Disegno Tecnico Industriale <span class=\"tp_pub_type tp_  book\">Book<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_publisher\">Citt\u00e0 Studi Edizioni, <\/span><span class=\"tp_pub_additional_address\">Torino, <\/span><span class=\"tp_pub_additional_year\">2020<\/span>, <span class=\"tp_pub_additional_isbn\">ISBN: 9788825174328<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_abstract_link\"><a id=\"tp_abstract_sh_382\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('382','tp_abstract')\" title=\"Show abstract\" style=\"cursor:pointer;\">Abstract<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_382\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('382','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_382\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@book{<LineBreak>\t11568_1071898,<br \/>\r\ntitle = {Disegno Tecnico Industriale},<br \/>\r\nauthor = {Sandro Barone and Alessandro Paoli and ARMANDO VIVIANO Razionale and Maurizio Berretta},<br \/>\r\nisbn = {9788825174328},<br \/>\r\nyear  = {2020},<br \/>\r\ndate = {2020-01-01},<br \/>\r\npages = {1\u2013338},<br \/>\r\npublisher = {Citt\u00e0 Studi Edizioni},<br \/>\r\naddress = {Torino},<br \/>\r\nabstract = {Il Disegno tecnico (o Metodi di rappresentazione) fa parte del bagaglio di base di ogni ingegnere. Ogni progetto infatti deve essere messo su carta, in modo che possa poi diventare operativo. L\u2019ingegnere (meccanico, aerospaziale, energetico che sia) deve conoscere il linguaggio specifico e le normative che regolano il mondo della rappresentazione tecnica, per poter dialogare con tutti gli attori coinvolti in un qualsiasi processo produttivo. In questo volume sono raccolte e spiegate tutte le competenze di base che formano il patrimonio condiviso del Disegno tecnico. Con un occhio attento alla didattica e alle varie fasi del progetto (dall\u2019ideazione alle tipologie di lavorazione, fino alla scelta dei materiali) gli autori di quest\u2019opera riescono a restituire al futuro ingegnere una visione d\u2019insieme completa e organica, fondamentale per la sua futura professione.},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {book}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('382','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_abstract\" id=\"tp_abstract_382\" style=\"display:none;\"><div class=\"tp_abstract_entry\">Il Disegno tecnico (o Metodi di rappresentazione) fa parte del bagaglio di base di ogni ingegnere. Ogni progetto infatti deve essere messo su carta, in modo che possa poi diventare operativo. L\u2019ingegnere (meccanico, aerospaziale, energetico che sia) deve conoscere il linguaggio specifico e le normative che regolano il mondo della rappresentazione tecnica, per poter dialogare con tutti gli attori coinvolti in un qualsiasi processo produttivo. In questo volume sono raccolte e spiegate tutte le competenze di base che formano il patrimonio condiviso del Disegno tecnico. Con un occhio attento alla didattica e alle varie fasi del progetto (dall\u2019ideazione alle tipologie di lavorazione, fino alla scelta dei materiali) gli autori di quest\u2019opera riescono a restituire al futuro ingegnere una visione d\u2019insieme completa e organica, fondamentale per la sua futura professione.<\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('382','tp_abstract')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Tamburrino, F.;  D'Anto, V.;  Bucci, R.;  Alessandri-Bonetti, G.;  Barone, S.;  Razionale, A. V.<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('384','tp_links')\" style=\"cursor:pointer;\">Mechanical properties of thermoplastic polymers for aligner manufacturing: In vitro study<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">DENTISTRY JOURNAL, <\/span><span class=\"tp_pub_additional_volume\">vol. 8, <\/span><span class=\"tp_pub_additional_number\">no 2, <\/span><span class=\"tp_pub_additional_year\">2020<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_384\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('384','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_384\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('384','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_384\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{<LineBreak>\t11568_1056505,<br \/>\r\ntitle = {Mechanical properties of thermoplastic polymers for aligner manufacturing: In vitro study},<br \/>\r\nauthor = {F. Tamburrino and V. D'Anto and R. Bucci and G. Alessandri-Bonetti and S. Barone and A. V. Razionale},<br \/>\r\ndoi = {10.3390\/dj8020047},<br \/>\r\nyear  = {2020},<br \/>\r\ndate = {2020-01-01},<br \/>\r\njournal = {DENTISTRY JOURNAL},<br \/>\r\nvolume = {8},<br \/>\r\nnumber = {2},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('384','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_384\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.3390\/dj8020047\" title=\"Follow DOI:10.3390\/dj8020047\" target=\"_blank\">doi:10.3390\/dj8020047<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('384','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_inbook\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Barone, Sandro;  Neri, Paolo;  Paoli, Alessandro;  Razionale, Armando V.;  Bertini, Leonardo;  Santus, Ciro<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('385','tp_links')\" style=\"cursor:pointer;\">Optical Stereo-System for Full-Field High-Frequency 3D Vibration Measurements Based on Low-Frame-Rate Cameras<\/a> <span class=\"tp_pub_type tp_  inbook\">Book Chapter<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_booktitle\">ADM 2019: Design Tools and Methods in Industrial Engineering, <\/span><span class=\"tp_pub_additional_pages\">pp. 155\u2013164, <\/span><span class=\"tp_pub_additional_publisher\">Springer, <\/span><span class=\"tp_pub_additional_year\">2020<\/span>, <span class=\"tp_pub_additional_isbn\">ISBN: 978-3-030-31153-7<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_385\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('385','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_385\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('385','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_385\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@inbook{<LineBreak>\t11568_1017883,<br \/>\r\ntitle = {Optical Stereo-System for Full-Field High-Frequency 3D Vibration Measurements Based on Low-Frame-Rate Cameras},<br \/>\r\nauthor = {Sandro Barone and Paolo Neri and Alessandro Paoli and Armando V. Razionale and Leonardo Bertini and Ciro Santus},<br \/>\r\ndoi = {10.1007\/978-3-030-31154-4_14},<br \/>\r\nisbn = {978-3-030-31153-7},<br \/>\r\nyear  = {2020},<br \/>\r\ndate = {2020-01-01},<br \/>\r\nbooktitle = {ADM 2019: Design Tools and Methods in Industrial Engineering},<br \/>\r\npages = {155\u2013164},<br \/>\r\npublisher = {Springer},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {inbook}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('385','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_385\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1007\/978-3-030-31154-4_14\" title=\"Follow DOI:10.1007\/978-3-030-31154-4_14\" target=\"_blank\">doi:10.1007\/978-3-030-31154-4_14<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('385','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_inbook\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Barone, Sandro;  Neri, Paolo;  Orsi, Sara;  Paoli, Alessandro;  Razionale, Armando V.;  Tamburrino, Francesco<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('386','tp_links')\" style=\"cursor:pointer;\">Properties Enhancement of Carbon PA 3D-Printed Parts by Post-processing Coating-Based Treatments<\/a> <span class=\"tp_pub_type tp_  inbook\">Book Chapter<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_booktitle\">ADM 2019: Design Tools and Methods in Industrial Engineering, <\/span><span class=\"tp_pub_additional_pages\">pp. 837\u2013847, <\/span><span class=\"tp_pub_additional_publisher\">Springer, <\/span><span class=\"tp_pub_additional_year\">2020<\/span>, <span class=\"tp_pub_additional_isbn\">ISBN: 978-3-030-31153-7<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_386\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('386','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_386\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('386','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_386\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@inbook{<LineBreak>\t11568_1017885,<br \/>\r\ntitle = {Properties Enhancement of Carbon PA 3D-Printed Parts by Post-processing Coating-Based Treatments},<br \/>\r\nauthor = {Sandro Barone and Paolo Neri and Sara Orsi and Alessandro Paoli and Armando V. Razionale and Francesco Tamburrino},<br \/>\r\ndoi = {10.1007\/978-3-030-31154-4_71},<br \/>\r\nisbn = {978-3-030-31153-7},<br \/>\r\nyear  = {2020},<br \/>\r\ndate = {2020-01-01},<br \/>\r\nbooktitle = {ADM 2019: Design Tools and Methods in Industrial Engineering},<br \/>\r\npages = {837\u2013847},<br \/>\r\npublisher = {Springer},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {inbook}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('386','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_386\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1007\/978-3-030-31154-4_71\" title=\"Follow DOI:10.1007\/978-3-030-31154-4_71\" target=\"_blank\">doi:10.1007\/978-3-030-31154-4_71<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('386','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Paoli, A.;  Neri, P.;  Razionale, A. V.;  Tamburrino, F.;  Barone, S.<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('387','tp_links')\" style=\"cursor:pointer;\">Sensor architectures and technologies for upper limb 3d surface reconstruction: A review<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">SENSORS, <\/span><span class=\"tp_pub_additional_volume\">vol. 20, <\/span><span class=\"tp_pub_additional_number\">no 22, <\/span><span class=\"tp_pub_additional_pages\">pp. 1\u201333, <\/span><span class=\"tp_pub_additional_year\">2020<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_387\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('387','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_387\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('387','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_387\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{<LineBreak>\t11568_1064080,<br \/>\r\ntitle = {Sensor architectures and technologies for upper limb 3d surface reconstruction: A review},<br \/>\r\nauthor = {A. Paoli and P. Neri and A. V. Razionale and F. Tamburrino and S. Barone},<br \/>\r\nurl = {https:\/\/www.mdpi.com\/1424-8220\/20\/22\/6584},<br \/>\r\ndoi = {10.3390\/s20226584},<br \/>\r\nyear  = {2020},<br \/>\r\ndate = {2020-01-01},<br \/>\r\njournal = {SENSORS},<br \/>\r\nvolume = {20},<br \/>\r\nnumber = {22},<br \/>\r\npages = {1\u201333},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('387','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_387\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"fas fa-globe\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/www.mdpi.com\/1424-8220\/20\/22\/6584\" title=\"https:\/\/www.mdpi.com\/1424-8220\/20\/22\/6584\" target=\"_blank\">https:\/\/www.mdpi.com\/1424-8220\/20\/22\/6584<\/a><\/li><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.3390\/s20226584\" title=\"Follow DOI:10.3390\/s20226584\" target=\"_blank\">doi:10.3390\/s20226584<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('387','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Barone, S.;  Neri, P.;  Orsi, S.;  Paoli, A.;  Razionale, A. V.;  Tamburrino, F.<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('388','tp_links')\" style=\"cursor:pointer;\">Two coatings that enhance mechanical properties of fused filament-fabricated carbon-fiber reinforced composites<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">ADDITIVE MANUFACTURING, <\/span><span class=\"tp_pub_additional_volume\">vol. 32, <\/span><span class=\"tp_pub_additional_pages\">pp. 1\u20139, <\/span><span class=\"tp_pub_additional_year\">2020<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_388\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('388','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_388\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('388','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_388\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{<LineBreak>\t11568_1034837,<br \/>\r\ntitle = {Two coatings that enhance mechanical properties of fused filament-fabricated carbon-fiber reinforced composites},<br \/>\r\nauthor = {S. Barone and P. Neri and S. Orsi and A. Paoli and A. V. Razionale and F. Tamburrino},<br \/>\r\nurl = {https:\/\/www.sciencedirect.com\/science\/article\/pii\/S2214860419314848?via=ihub},<br \/>\r\ndoi = {10.1016\/j.addma.2020.101105},<br \/>\r\nyear  = {2020},<br \/>\r\ndate = {2020-01-01},<br \/>\r\njournal = {ADDITIVE MANUFACTURING},<br \/>\r\nvolume = {32},<br \/>\r\npages = {1\u20139},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('388','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_388\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"fas fa-globe\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S2214860419314848?via=ihub\" title=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S2214860419314848?via=ihub\" target=\"_blank\">https:\/\/www.sciencedirect.com\/science\/article\/pii\/S2214860419314848?via=ihub<\/a><\/li><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1016\/j.addma.2020.101105\" title=\"Follow DOI:10.1016\/j.addma.2020.101105\" target=\"_blank\">doi:10.1016\/j.addma.2020.101105<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('388','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> D'Alessandro, Angela Chiara;  D'Ant\u00f2, Vincenzo;  Razionale, Armando V.;  Allesandri-Bonetti, Giulio<\/p><p class=\"tp_pub_title\">Integrating CBCT and virtual models for root movement with clear aligners <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">JOURNAL OF CLINICAL ORTHODONTICS, <\/span><span class=\"tp_pub_additional_volume\">vol. 54, <\/span><span class=\"tp_pub_additional_number\">no 3, <\/span><span class=\"tp_pub_additional_pages\">pp. 159\u2013166, <\/span><span class=\"tp_pub_additional_year\">2020<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_504\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('504','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_504\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{<LineBreak>\t11568_1114301b,<br \/>\r\ntitle = {Integrating CBCT and virtual models for root movement with clear aligners},<br \/>\r\nauthor = {Angela Chiara D'Alessandro and Vincenzo D'Ant\u00f2 and Armando V. Razionale and Giulio Allesandri-Bonetti},<br \/>\r\nyear  = {2020},<br \/>\r\ndate = {2020-01-01},<br \/>\r\njournal = {JOURNAL OF CLINICAL ORTHODONTICS},<br \/>\r\nvolume = {54},<br \/>\r\nnumber = {3},<br \/>\r\npages = {159\u2013166},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('504','tp_bibtex')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Barone, S.;  Neri, P.;  Orsi, S.;  Paoli, A.;  Razionale, A. V.;  Tamburrino, F.<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('506','tp_links')\" style=\"cursor:pointer;\">Two coatings that enhance mechanical properties of fused filament-fabricated carbon-fiber reinforced composites<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">ADDITIVE MANUFACTURING, <\/span><span class=\"tp_pub_additional_volume\">vol. 32, <\/span><span class=\"tp_pub_additional_pages\">pp. 1\u20139, <\/span><span class=\"tp_pub_additional_year\">2020<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_506\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('506','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_506\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('506','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_506\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{<LineBreak>\t11568_1034837b,<br \/>\r\ntitle = {Two coatings that enhance mechanical properties of fused filament-fabricated carbon-fiber reinforced composites},<br \/>\r\nauthor = {S. Barone and P. Neri and S. Orsi and A. Paoli and A. V. Razionale and F. Tamburrino},<br \/>\r\nurl = {https:\/\/www.sciencedirect.com\/science\/article\/pii\/S2214860419314848?via=ihub},<br \/>\r\ndoi = {10.1016\/j.addma.2020.101105},<br \/>\r\nyear  = {2020},<br \/>\r\ndate = {2020-01-01},<br \/>\r\njournal = {ADDITIVE MANUFACTURING},<br \/>\r\nvolume = {32},<br \/>\r\npages = {1\u20139},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('506','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_506\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"fas fa-globe\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S2214860419314848?via=ihub\" title=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S2214860419314848?via=ihub\" target=\"_blank\">https:\/\/www.sciencedirect.com\/science\/article\/pii\/S2214860419314848?via=ihub<\/a><\/li><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1016\/j.addma.2020.101105\" title=\"Follow DOI:10.1016\/j.addma.2020.101105\" target=\"_blank\">doi:10.1016\/j.addma.2020.101105<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('506','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_inbook\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\"> Barone, Sandro;  Neri, Paolo;  Orsi, Sara;  Paoli, Alessandro;  Razionale, Armando V.;  Tamburrino, Francesco<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('508','tp_links')\" style=\"cursor:pointer;\">Properties Enhancement of Carbon PA 3D-Printed Parts by Post-processing Coating-Based Treatments<\/a> <span class=\"tp_pub_type tp_  inbook\">Book Chapter<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_booktitle\">ADM 2019: Design Tools and Methods in Industrial Engineering, <\/span><span class=\"tp_pub_additional_pages\">pp. 837\u2013847, <\/span><span class=\"tp_pub_additional_publisher\">Springer, <\/span><span class=\"tp_pub_additional_year\">2020<\/span>, <span class=\"tp_pub_additional_isbn\">ISBN: 978-3-030-31153-7<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_508\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('508','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_508\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('508','tp_bibtex')\" title=\"Visualizza BibTeX\" style=\"cursor:pointer;\">BibTeX<\/a><\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_508\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@inbook{<LineBreak>\t11568_1017885b,<br \/>\r\ntitle = {Properties Enhancement of Carbon PA 3D-Printed Parts by Post-processing Coating-Based Treatments},<br \/>\r\nauthor = {Sandro Barone and Paolo Neri and Sara Orsi and Alessandro Paoli and Armando V. Razionale and Francesco Tamburrino},<br \/>\r\ndoi = {10.1007\/978-3-030-31154-4_71},<br \/>\r\nisbn = {978-3-030-31153-7},<br \/>\r\nyear  = {2020},<br \/>\r\ndate = {2020-01-01},<br \/>\r\nbooktitle = {ADM 2019: Design Tools and Methods in Industrial Engineering},<br \/>\r\npages = {837\u2013847},<br \/>\r\npublisher = {Springer},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {inbook}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('508','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_508\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1007\/978-3-030-31154-4_71\" title=\"Follow DOI:10.1007\/978-3-030-31154-4_71\" target=\"_blank\">doi:10.1007\/978-3-030-31154-4_71<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('508','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><\/div><\/div>\n\n\n\n<p class=\"wp-block-paragraph\"><a href=\"https:\/\/people.unipi.it\/armando_viviano_razionale\/pubblication-list\/pubblications-full-list\/\" data-type=\"page\" data-id=\"236\">Publications&#8217; Full List<\/a><\/p>\n","protected":false},"excerpt":{"rendered":"<p>Recent publications Publications&#8217; Full List&hellip;<\/p>\n<p><a class=\"btn btn-dark btn-sm unipi-read-more-link\" href=\"https:\/\/people.unipi.it\/armando_viviano_razionale\/publications\/\">Leggi tutto&#8230;<\/a><\/p>\n","protected":false},"author":252,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_acf_changed":false,"footnotes":""},"class_list":["post-190","page","type-page","status-publish","hentry"],"acf":[],"featured_image_src":null,"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v28.3 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Publications - Armando V. 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