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披着羊皮的狼:关节加载方向变化时的小梁骨适应性改变。

A Wolff in sheep's clothing: trabecular bone adaptation in response to changes in joint loading orientation.

机构信息

Department of Human Evolution, Max Planck Institute for Evolutionary Anthropology, Leipzig, 04103, Germany.

出版信息

Bone. 2011 Dec;49(6):1141-51. doi: 10.1016/j.bone.2011.08.020. Epub 2011 Aug 26.

Abstract

This study tests Wolff's law of trabecular bone adaptation by examining if induced changes in joint loading orientation cause corresponding adjustments in trabecular orientation. Two groups of sheep were exercised at a trot, 15 min/day for 34 days on an inclined (7°) or level (0°) treadmills. Incline trotting caused the sheep to extend their tarsal joints by 3-4.5° during peak loading (P<0.01) but has no effect on carpal joint angle (P=0.984). Additionally, tarsal joint angle in the incline group sheep were maintained more extended throughout the day using elevated platform shoes on their forelimbs. A third "sedentary group" group did not run but wore platform shoes throughout the day. As predicted by Wolff's law, trabecular orientation in the distal tibia (tarsal joint) were more obtuse by 2.7 to 4.3° in the incline group compared to the level group; trabecular orientation was not significantly different in the sedentary and level groups. In addition, trabecular orientations in the distal radius (carpal joint) of the sedentary, level and incline groups did not differ between groups, and were aligned almost parallel to the radius long axis, corresponding to the almost straight carpal joint angle at peak loading. Measurements of other trabecular bone parameters revealed additional responses to loading, including significantly higher bone volume fraction (BV/TV), Trabecular number (Tb.N) and trabecular thickness (Tb.Th), lower trabecular spacing (Tb.Sp), and less rod-shaped trabeculae (higher structure model index, SMI) in the exercised than sedentary sheep. Overall, these results demonstrate that trabecular bone dynamically adjusts and realigns itself in very precise relation to changes in peak loading direction, indicating that Wolff's law is not only accurate but also highly sensitive.

摘要

本研究通过检验关节加载方向的变化是否导致小梁方向的相应调整,来检验小梁骨适应 Wolff 定律。两组绵羊在倾斜(7°)或水平(0°)跑步机上以小跑的方式运动,每天 15 分钟,持续 34 天。倾斜跑步使羊在峰值加载时将跗关节伸展 3-4.5°(P<0.01),但对腕关节角度没有影响(P=0.984)。此外,通过在前肢穿上高架平台鞋,使倾斜组绵羊的跗关节角度在一天中保持更伸展的状态。第三组“久坐组”不跑步,但整天穿着平台鞋。正如 Wolff 定律所预测的那样,与水平组相比,倾斜组胫骨远端(跗关节)的小梁方向更钝,为 2.7 至 4.3°;久坐组和水平组的小梁方向没有显著差异。此外,久坐组、水平组和倾斜组的桡骨远端(腕关节)的小梁方向在组间没有差异,并且几乎与桡骨长轴平行,与峰值加载时几乎笔直的腕关节角度相对应。对其他小梁骨参数的测量揭示了对加载的其他反应,包括骨体积分数(BV/TV)、小梁数量(Tb.N)和小梁厚度(Tb.Th)显著增加,小梁间距(Tb.Sp)降低,以及杆状小梁(结构模型指数,SMI)减少,表明运动羊的小梁骨比久坐羊更活跃。总的来说,这些结果表明,小梁骨会根据峰值加载方向的变化动态调整和重新排列,这表明 Wolff 定律不仅准确而且非常敏感。

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