Literature DB >> 1389573

Trabecular bone pattern factor--a new parameter for simple quantification of bone microarchitecture.

M Hahn1, M Vogel, M Pompesius-Kempa, G Delling.   

Abstract

The stability of trabecular bone depends not only on the amount of bone tissue, but also on the three-dimensional orientation and connectedness of trabeculae, which is summarized as trabecular microarchitecture. In previous studies we could demonstrate that in three-dimensional bone tissue the relation of trabecular plates to rods is reflected in the ratio of concave to convex surfaces of the bone pattern in two-dimensional bone sections. For the quantification of the connectedness of these bone patterns we developed a new histomorphometric parameter called Trabecular Bone Pattern factor (TBPf). The basic idea is that the connectedness of structures can be described by the relation of convex to concave surfaces. A lot of concave surfaces represent a well connected spongy lattice, whereas a lot of convex surfaces indicate a badly connected trabecular lattice in two-dimensional sections. By means of an automatic image analysis system we measure trabecular bone area (A1) and perimeter (P1). A second measurement of these two parameters (now A2 and P2) is done after a simulated dilatation of trabeculae on the screen. This dilatation results in a characteristic change of bone area and perimeter depending on the relation of convex to concave surfaces. TBPf is defined as a quotient of the difference of the first and the second measurement: TBPf = (P1 - P2)/(A1 - A2). First measurements of TBPf in 192 iliac crest bone biopsies of autopsy cases show that there is not only age-related loss of bone volume, but also a decrease of trabecular connectedness. By means of TBPf we can demonstrate a significant difference in the age-related loss of trabecular connectivity between male and female individuals.

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Year:  1992        PMID: 1389573     DOI: 10.1016/8756-3282(92)90078-b

Source DB:  PubMed          Journal:  Bone        ISSN: 1873-2763            Impact factor:   4.398


  94 in total

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4.  Microcomputed tomography analysis of particular autogenous bone graft in sinus augmentation at 5 months: differences on bone mineral density and 3D trabecular structure.

Authors:  Heng-Li Huang; Jui-Ting Hsu; Michael Y C Chen; Cheng Liu; Ching-Han Chang; Yu-Fen Li; Kuan-Ting Chen
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5.  Texture analysis of X-ray radiographs of iliac bone is correlated with bone micro-CT.

Authors:  P Guggenbuhl; F Bodic; L Hamel; M F Baslé; D Chappard
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6.  Age-related changes in trabecular bone microstructures: global and local morphometry.

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Journal:  Osteoporos Int       Date:  2005-12-31       Impact factor: 4.507

7.  Abnormal subchondral bone microstructure following steroid administration is involved in the early pathogenesis of steroid-induced osteonecrosis.

Authors:  L Wang; L Zhang; H Pan; S Peng; X Zhao; W W Lu
Journal:  Osteoporos Int       Date:  2015-07-09       Impact factor: 4.507

8.  Interindividual and intraspecimen variability of 3-D bone microarchitectural parameters in iliac crest biopsies imaged by conventional micro-computed tomography.

Authors:  Christine Chappard; Arnaud Marchadier; Laurent Benhamou
Journal:  J Bone Miner Metab       Date:  2008-08-30       Impact factor: 2.626

9.  Implications of resolution and noise for in vivo micro-MRI of trabecular bone.

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Journal:  Med Phys       Date:  2008-12       Impact factor: 4.071

10.  Gender-dependence of bone structure and properties in adult osteogenesis imperfecta murine model.

Authors:  Xiaomei Yao; Stephanie M Carleton; Arin D Kettle; Jennifer Melander; Charlotte L Phillips; Yong Wang
Journal:  Ann Biomed Eng       Date:  2013-03-28       Impact factor: 3.934

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