Literature DB >> 6995796

[The structure of the spongy bone in lumbar vertebrae and the neck of the femur. A comparative analysis of the age-dependent remodelling process (author's transl)].

F Henschke, H J Pesch.   

Abstract

In 114 autopsy cases of both sexes, aged between 31 and 97 years and without bone disease, the influence of mechanical forces on the age-dependent remodelling of the spongy bone was determined in the 3rd and 5th lumbar vertebrae and the neck of the femur. For this purpose contrasty X-ray images of 100 mu thick polished bone sections were analysed using the LEITZ texture analysis system. The volumetric density and the surface density are highest in the neck of the femur, lowest in the 3rd lumbar vertebra, and almost as low in the 5th lumbar vertebra. The volumetric density decreases with increasing age by about one-third in all three bones. Correspondingly, the surface density also decreases in the lumbar vertebrae by one-third, but only by 18% in the neck of the femur. The specific surface reveals no age differences in the lumbar vertebrae, but increases by 19% in the neck of the femur. The constancy of the specific surface in the lumbar vertebrae can be explained by the fact that compensatory hypertrophy of the remaining trabeculae takes place. This compensatory growth of bone does not occur in the neck of the femur. The age-dependent decrease in spongy bone manifests itself in a residual spongiosa structure that depends on compressive forces in the case of the lumbar vertebrae and bending forces in the neck of the femur.

Entities:  

Mesh:

Year:  1980        PMID: 6995796

Source DB:  PubMed          Journal:  Microsc Acta Suppl        ISSN: 0342-958X


  2 in total

1.  Automatic quantification of vertebral cancellous bone remodeling during aging.

Authors:  F Prêteux; C Bergot; A M Laval-Jeantet
Journal:  Anat Clin       Date:  1985

2.  Osteogenic activity of collagen peptide via ERK/MAPK pathway mediated boosting of collagen synthesis and its therapeutic efficacy in osteoporotic bone by back-scattered electron imaging and microarchitecture analysis.

Authors:  Hye Kyung Kim; Myung-Gyou Kim; Kang-Hyun Leem
Journal:  Molecules       Date:  2013-12-12       Impact factor: 4.411

  2 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.