Title :
Contour-based surface modeling and analysis of microtomographic trabecular bone images
Author :
Fourati, W.A. ; Bouhlel, Mohamed Salim
Author_Institution :
Res. Unit: Sci. & Technol. of Image & Telecommun., Univ. of Sfax, Sfax, Tunisia
Abstract :
Bone quality is an important factor of bone strength. Osteoporosis is a disease characterized by longitudinal changes in 3-D trabecular bone structure, such as decreased trabecular thickness. With the purpose of identifying parameters indicate the quality of bone micro-architecture, a strategy are developed, using High Resolution Micro-Computed Tomography (μCT) images. The main idea is the use of the morphological operator and the watershed algorithm in order to separate at each slice the bone phase from the marrow phase. As well, we make use of basic morphological transforms for eliminating artifacts and aliasing from obtained contours. Three dimensional reconstructions of samples were created by stacking all the 2D obtained boundary top of each other. The zero iso-surface embedded in the computed volume in order to localize vertices from successive slices. A mesh that approximates the zero isosurface is then extracted from the resulting volume. Quantization transforms the trabecular bone structure in a set of numerical parameters that can directly gives a valid and reliable diagnosis histologist.
Keywords :
computerised tomography; feature extraction; image reconstruction; medical image processing; stereo image processing; 3D trabecular bone structure; bone micro-architecture; bone quality; bone strength; contour-based surface modeling; high resolution micro-computed tomography images; microtomographic trabecular bone images; numerical parameters; osteoporosis; quantization transforms; successive slices; three dimensional reconstructions; trabecular thickness; zero isosurface; Biomedical imaging; Bones; Computed tomography; Image reconstruction; Image segmentation; Osteoporosis; Transforms; 3-D microstructure; Iso-surfac; Morphological transforms; Osteoporosis; Reconstruction from contour; Segmentation; Trabecular bone;
Conference_Titel :
Sciences of Electronics, Technologies of Information and Telecommunications (SETIT), 2012 6th International Conference on
Conference_Location :
Sousse
Print_ISBN :
978-1-4673-1657-6
DOI :
10.1109/SETIT.2012.6481951