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骨强度:整体大于其各部分之和。

Bone strength: the whole is greater than the sum of its parts.

作者信息

Davison K Shawn, Siminoski Kerry, Adachi J D, Hanley David A, Goltzman David, Hodsman Anthony B, Josse Robert, Kaiser Stephanie, Olszynski Wojciech P, Papaioannou Alexandra, Ste-Marie Louis-George, Kendler David L, Tenenhouse Alan, Brown Jacques P

机构信息

Clinical Research Scientist, Department of Medicine, Laval University, Sainte Foy, Quebec, Canada.

出版信息

Semin Arthritis Rheum. 2006 Aug;36(1):22-31. doi: 10.1016/j.semarthrit.2006.04.002. Epub 2006 Jul 3.

Abstract

OBJECTIVE

To summarize the current knowledge regarding the various determinants of bone strength.

METHODS

Relevant English-language articles acquired from Medline from 1966 up to January 2005 were reviewed. Searches included the keywords bone AND 1 of the following: strength, remodeling, microcrack, structur*, mineralization, collagen, organic, crystallinity, osteocyte, porosity, diameter, anisotropy, stress risers, or connectivity. Abstracts from applicable conference proceedings were also reviewed for pertinent information.

RESULTS

Bone strength is determined from both its material and its structural properties. Material properties such as its degree of mineralization, crystallinity, collagen characteristics, and osteocyte viability have substantial impacts on bone strength. Structural properties such as the diameter and thickness of the cortices, the porosity of the cortical shell, the connectivity and anisotropy of the trabecular network, the thickness of trabeculae, and the presence of trabecular stress risers and microcracks impact bone strength in diverse manners. Remodeling activity either directly or indirectly impacts all of these processes.

CONCLUSIONS

Bone strength is dependent on numerous, interrelated factors. Remodeling activity has a direct impact on almost all of the components of bone strength and requires further investigation as to its impact on these factors in isolation and in unison.

摘要

目的

总结目前有关骨强度各种决定因素的知识。

方法

回顾了从1966年至2005年1月从医学在线数据库(Medline)获取的相关英文文章。检索词包括“骨”以及以下词汇之一:强度、重塑、微裂纹、结构*、矿化、胶原蛋白、有机物、结晶度、骨细胞、孔隙率、直径、各向异性、应力集中或连通性。还查阅了适用会议论文集的摘要以获取相关信息。

结果

骨强度由其材料特性和结构特性共同决定。诸如矿化程度、结晶度、胶原蛋白特性和骨细胞活力等材料特性对骨强度有重大影响。诸如皮质骨的直径和厚度、皮质骨壳的孔隙率、小梁网络的连通性和各向异性、小梁的厚度以及小梁应力集中和微裂纹的存在等结构特性以多种方式影响骨强度。重塑活动直接或间接影响所有这些过程。

结论

骨强度取决于众多相互关联的因素。重塑活动几乎对骨强度的所有组成部分都有直接影响,需要进一步研究其对这些因素单独和共同的影响。

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