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Exercise-Induced Bone Formation Is Poorly Linked to Local Strain Magnitude in the Sheep Tibia

机译:运动诱发的骨骼形成与羊胫骨的局部应变幅度关系不佳

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摘要

Functional interpretations of limb bone structure frequently assume that diaphyses adjust their shape by adding bone primarily across the plane in which they are habitually loaded in order to minimize loading-induced strains. Here, to test this hypothesis, we characterize the in vivo strain environment of the sheep tibial midshaft during treadmill exercise and examine whether this activity promotes bone formation disproportionately in the direction of loading in diaphyseal regions that experience the highest strains. It is shown that during treadmill exercise, sheep tibiae were bent in an anteroposterior direction, generating maximal tensile and compressive strains on the anterior and posterior shaft surfaces, respectively. Exercise led to significantly increased periosteal bone formation; however, rather than being biased toward areas of maximal strains across the anteroposterior axis, exercise-related osteogenesis occurred primarily around the medial half of the shaft circumference, in both high and low strain regions. Overall, the results of this study demonstrate that loading-induced bone growth is not closely linked to local strain magnitude in every instance. Therefore, caution is necessary when bone shaft shape is used to infer functional loading history in the absence of in vivo data on how bones are loaded and how they actually respond to loading.
机译:肢体骨骼结构的功能解释通常认为,干骨主要通过在惯性负载的平面上添加骨骼来调整其形状,以最大程度地减少负载诱发的应变。在这里,为了验证这一假设,我们在跑步机运动期间表征了绵羊胫骨中轴的体内应变环境,并检查了这种活动是否在承受最高应变的骨干区域中沿负荷的方向过度地促进了骨形成。结果表明,在跑步机锻炼过程中,绵羊胫骨在前后方向弯曲,分别在前轴和后轴表面产生最大的拉伸和压缩应变。运动导致骨膜骨形成明显增加;然而,运动相关的成骨作用主要发生在轴应变的高和低区域,而并非偏向前后轴的最大应变区域,而是主要发生在轴周围的一半左右。总体而言,这项研究的结果表明,在每种情况下,负载引起的骨生长与局部应变幅度并不紧密相关。因此,在缺乏有关骨骼如何加载以及骨骼如何实际响应加载的体内数据的情况下,当使用骨轴形状来推断功能性加载历史时,必须谨慎行事。

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