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尽管黑熊每年都有一段不活动期(冬眠),但其股骨几何形状和皮质骨孔隙率并未受到衰老的不利影响。

Black bear femoral geometry and cortical porosity are not adversely affected by ageing despite annual periods of disuse (hibernation).

作者信息

McGee Meghan E, Miller Danielle L, Auger Janene, Black Hal L, Donahue Seth W

机构信息

Department of Biomedical Engineering, Michigan Technological University, Houghton, MI 49931,USA.

出版信息

J Anat. 2007 Feb;210(2):160-9. doi: 10.1111/j.1469-7580.2006.00681.x.

Abstract

Disuse (i.e. inactivity) causes bone loss, and a recovery period that is 2-3 times longer than the inactive period is usually required to recover lost bone. However, black bears experience annual disuse (hibernation) and remobilization periods that are approximately equal in length, yet bears maintain or increase cortical bone material properties and whole bone mechanical properties with age. In this study, we investigated the architectural properties of bear femurs to determine whether cortical structure is preserved with age in bears. We showed that cross-sectional geometric properties increase with age, but porosity and resorption cavity density do not change with age in skeletally immature male and female bears. These findings suggest that structural properties substantially contribute to increasing whole bone strength with age in bears, particularly during skeletal maturation. Porosity was not different between skeletally immature and mature bears, and showed minimal regional variations between anatomical quadrants and radial positions that were similar in pattern and magnitude between skeletally immature and mature bears. We also found gender dimorphisms in bear cortical bone properties: females have smaller, less porous bones than males. Our results provide further support for the idea that black bears possess a biological mechanism to prevent disuse osteoporosis.

摘要

废用(即不活动)会导致骨质流失,通常需要比不活动期长2至3倍的恢复期才能恢复流失的骨质。然而,黑熊每年都会经历长度大致相等的废用期(冬眠)和骨质再利用期,然而随着年龄增长,黑熊的皮质骨材料特性和全骨力学特性却得以维持或增强。在本研究中,我们调查了熊股骨的结构特性,以确定熊的皮质结构是否会随着年龄增长而得以保留。我们发现,骨骼未成熟的雄性和雌性熊的横截面几何特性会随着年龄增长而增加,但孔隙率和吸收腔密度不会随年龄变化。这些发现表明,结构特性在很大程度上有助于熊随着年龄增长而增强全骨强度,尤其是在骨骼成熟期间。骨骼未成熟和成熟的熊之间孔隙率并无差异,且在解剖象限和径向位置之间的区域差异极小,骨骼未成熟和成熟的熊在模式和程度上相似。我们还发现了熊皮质骨特性中的性别二态性:雌性的骨骼比雄性更小,孔隙更少。我们的结果为黑熊拥有预防废用性骨质疏松的生物学机制这一观点提供了进一步支持。

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