2015
Barone, Sandro; Paoli, Alessandro; Razionale, ARMANDO VIVIANO
Multi-modal Imaging for Shape Modelling of Dental Anatomies Book Chapter
In: Biomedical Engineering Systems and Technologies, 7th International Joint Conference, BIOSTEC 2014, Angers, France, March 3-6, 2014, Revised Selected Papers, vol. 511, pp. 135–145, Springer International Publishing, 2015, ISBN: 978-3-319-26129-4.
Abstract | Links | BibTeX | Tags: Dental shape modelling, Discrete Radon Transform, Multi-modal imaging, PAN radiograph
@inbook{ 11568_765498.2,
title = {Multi-modal Imaging for Shape Modelling of Dental Anatomies},
author = {Sandro Barone and Alessandro Paoli and ARMANDO VIVIANO Razionale},
url = {http://www.springer.com/it/book/9783319261287},
doi = {10.1007/978-3-319-26129-4},
isbn = {978-3-319-26129-4},
year = {2015},
date = {2015-01-01},
booktitle = {Biomedical Engineering Systems and Technologies, 7th International Joint Conference, BIOSTEC 2014, Angers, France, March 3-6, 2014, Revised Selected Papers},
volume = {511},
pages = {135–145},
publisher = {Springer International Publishing},
abstract = {In dentistry, standard radiographic imaging is a minimally invasive approach for anatomic tissue
visualization and diagnostic assessment. However, this method does not provide 3D geometries of
complete dental shapes, including crowns and roots, which are usually obtained by Computerized
Tomography (CT) techniques. This paper describes a shape modelling process based on multi-modal
imaging methodologies. In particular, 2D panoramic radiographs and 3D digital plaster casts, obtained by
an optical scanner, are used to guide the creation of both shapes and orientations of complete teeth through
the geometrical manipulation of general dental templates. The proposed methodology is independent on
the tomographic device used to collect the panoramic radiograph.},
keywords = {Dental shape modelling, Discrete Radon Transform, Multi-modal imaging, PAN radiograph},
pubstate = {published},
tppubtype = {inbook}
}
In dentistry, standard radiographic imaging is a minimally invasive approach for anatomic tissue
visualization and diagnostic assessment. However, this method does not provide 3D geometries of
complete dental shapes, including crowns and roots, which are usually obtained by Computerized
Tomography (CT) techniques. This paper describes a shape modelling process based on multi-modal
imaging methodologies. In particular, 2D panoramic radiographs and 3D digital plaster casts, obtained by
an optical scanner, are used to guide the creation of both shapes and orientations of complete teeth through
the geometrical manipulation of general dental templates. The proposed methodology is independent on
the tomographic device used to collect the panoramic radiograph.
visualization and diagnostic assessment. However, this method does not provide 3D geometries of
complete dental shapes, including crowns and roots, which are usually obtained by Computerized
Tomography (CT) techniques. This paper describes a shape modelling process based on multi-modal
imaging methodologies. In particular, 2D panoramic radiographs and 3D digital plaster casts, obtained by
an optical scanner, are used to guide the creation of both shapes and orientations of complete teeth through
the geometrical manipulation of general dental templates. The proposed methodology is independent on
the tomographic device used to collect the panoramic radiograph.