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MIKULKA, J. GESCHEIDTOVÁ, E. BARTUŠEK, K.
Original Title
Segmentation of NMR slices and 3D modeling of temporomandibular joint
Type
conference paper
Language
English
Original Abstract
The paper describes the pre-processing and subsequent segmentation of NMR images of the human head in the region of temporomandibular joint in several slices. Image obtained by means of the tomograph used are of very low resolution and contrast, and their processing may prove to be difficult. A suitable algorithm was found, which consists in pre-processing the image by a smoothing filter, sharpening, and the four-phase level set segmentation. This method segments the image on the basis of the intensity of regions and is thus suitable for processing the above-mentioned NMR images, in which there are no sharp edges. The method also has some filtering capability. It is described by partial differential equations that have been transformed into corresponding difference equations, which are solved numerically. In the next stage, segmented slices of temporomandibular joint will be used to create a multidimensional model. A spatial model gives a better idea of the situation, structure and properties of tissues in the scanned part of patient's body. Multidimensional modeling mainly represents a change in describing input NMR data. The segmented regions need to be transformed from discrete to vector description i. e. the outer geometry of objects needs to be described mathematically.
Keywords
level set segmentation, temporomandibular joint, 3D modeling
Authors
MIKULKA, J.; GESCHEIDTOVÁ, E.; BARTUŠEK, K.
RIV year
2009
Released
23. 3. 2009
Publisher
The Electromagnetic Academy
Location
Cambridge
ISBN
978-1-934142-08-0
Book
Progress in Electromagnetic Research Symposium
Pages from
165
Pages to
169
Pages count
5
URL
http://www.piers.org
BibTex
@inproceedings{BUT27277, author="Jan {Mikulka} and Eva {Gescheidtová} and Karel {Bartušek}", title="Segmentation of NMR slices and 3D modeling of temporomandibular joint", booktitle="Progress in Electromagnetic Research Symposium", year="2009", pages="165--169", publisher="The Electromagnetic Academy", address="Cambridge", isbn="978-1-934142-08-0", url="http://www.piers.org" }