The trabecular structure of developing human mandible
Identifieur interne : 003A58 ( Istex/Checkpoint ); précédent : 003A57; suivant : 003A59The trabecular structure of developing human mandible
Auteurs : A. Wojtowicz [Pologne] ; S. Chaberek [Pologne] ; A. Pirino [Italie] ; A. Montella [Pologne] ; P. Bandiera [Pologne] ; A. Kinsner ; K. OstrowskiSource :
- Clinical Orthodontics and Research [ 1397-5927 ] ; 2001-08.
English descriptors
- KwdEn :
- 2clin orthod, Black background, Bone mineral density, Bone tissue, Bone trabeculae, Bres, Centroid, Clinical experience, Collagen, Collagen bundles, Different parts, Digitised, Digitised images, Discriminant, Discriminant analysis, Fourier, Fourier analysis, Fractal, Fractal analysis, Fractal dimension, Histological, Human mandible, Human mandibles, Incisal, Mahalanobis, Mahalanobis distance, Mahalanobis distances, Mahanalobis distances, Mandible, Mandible bone, Medical university, Molar, Molar region, Orthod, Ostrowski, Pathological changes, Polarised light, Polarising microscope, Quantitative approach, Radial distribution, Spatial distribution, Spatial frequency, Trabecula, Trabecular, Trabecular structure, Various parts, Wojtowicz.
- Teeft :
- 2clin orthod, Black background, Bone mineral density, Bone tissue, Bone trabeculae, Bres, Centroid, Clinical experience, Collagen, Collagen bundles, Different parts, Digitised, Digitised images, Discriminant, Discriminant analysis, Fourier, Fourier analysis, Fractal, Fractal analysis, Fractal dimension, Histological, Human mandible, Human mandibles, Incisal, Mahalanobis, Mahalanobis distance, Mahalanobis distances, Mahanalobis distances, Mandible, Mandible bone, Medical university, Molar, Molar region, Orthod, Ostrowski, Pathological changes, Polarised light, Polarising microscope, Quantitative approach, Radial distribution, Spatial distribution, Spatial frequency, Trabecula, Trabecular, Trabecular structure, Various parts, Wojtowicz.
Abstract
In this paper we tried to analyse in quantitative terms the differences in trabecular structure of human mandibles 8, 10 and 12 weeks old. The analysis was performed on decalcified Sirius‐red stained trabeculae, photographed in polarised light. The data obtained from Fourier transforms of scanned pictures were evaluated by discriminant analysis to show the differences between the analysed stages of development. Also, various parts of the mandible were compared because the clinical experience shows that the frequency of pathological changes is different in different parts of mandible bone. The complexity of trabecular structure of bone samples was measured by fractal dimension. It is concluded that this quantitative approach is reliable and, in the future, could be used for physiological and pathological analyses of bone biopsies.
Url:
DOI: 10.1034/j.1600-0544.2001.040306.x
Affiliations:
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<front><div type="abstract" xml:lang="en">In this paper we tried to analyse in quantitative terms the differences in trabecular structure of human mandibles 8, 10 and 12 weeks old. The analysis was performed on decalcified Sirius‐red stained trabeculae, photographed in polarised light. The data obtained from Fourier transforms of scanned pictures were evaluated by discriminant analysis to show the differences between the analysed stages of development. Also, various parts of the mandible were compared because the clinical experience shows that the frequency of pathological changes is different in different parts of mandible bone. The complexity of trabecular structure of bone samples was measured by fractal dimension. It is concluded that this quantitative approach is reliable and, in the future, could be used for physiological and pathological analyses of bone biopsies.</div>
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