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运动引起的适应性改变可以增加大转子上方跌倒时的股骨近端强度。

Physical activity induced adaptation can increase proximal femur strength under loading from a fall onto the greater trochanter.

机构信息

Department of Physical Therapy, School of Health and Human Sciences, Indiana University, Indianapolis, IN, United States of America; Indiana Center for Musculoskeletal Health, Indiana University, Indianapolis, IN, United States of America.

Department of Radiology, School of Medicine, University of Colorado Anschutz Medical Campus, Aurora, CO, United States of America.

出版信息

Bone. 2021 Nov;152:116090. doi: 10.1016/j.bone.2021.116090. Epub 2021 Jun 25.

Abstract

Physical activity enhances proximal femur bone mass, but it remains unclear whether the benefits translate into an enhanced ability to resist fracture related loading. We recently used baseball pitchers as a within-subject controlled model to demonstrate physical activity induced proximal femur adaptation in regions associated with weight bearing and increased strength under single-leg stance loading. However, there was no measurable benefit to resisting common injurious loading (e.g. a fall onto the greater trochanter). A lack of power and a small physical activity effect size may have contributed to the latter null finding. Softball pitchers represent an alternative within-subject controlled model to explore adaptation of the proximal femur to physical activity, exhibiting greater dominant-to-nondominant (D-to-ND) leg differences than baseball pitchers. The current study used quantitative computed tomography, statistical parametric mapping, and subject-specific finite element (FE) modeling to explore adaptation of the proximal femur to physical activity in female softball pitchers (n = 25). Female cross-country runners (n = 15) were included as symmetrically loaded controls, showing very limited D-to-ND leg differences. Softball pitchers had D-to-ND leg differences in proximal femur, femoral neck, and trochanteric volumetric bone mineral density and content, and femoral neck volume. Voxel-based morphometry analyses and cortical bone mapping showed D-to-ND leg differences within a large region connecting the superior femoral head, inferior femoral neck and medial intertrochanteric region, and within the greater trochanter. FE modeling revealed pitchers had 19.4% (95%CI, 15.0 to 23.9%) and 4.9% (95%CI, 1.7 to 8.2%) D-to-ND leg differences in predicted ultimate strength under single-leg stance loading and a fall onto the greater trochanter, respectively. These data affirm the spatial and strength adaptation of the proximal femur to weight bearing directed loading and demonstrate that the changes can also have benefits, albeit smaller, on resisting loads associated with a sideways fall onto the greater trochanter.

摘要

体育活动可以增加股骨近端的骨量,但目前尚不清楚这些益处是否能转化为增强抵抗与负荷相关的骨折的能力。我们最近使用棒球投手作为一种个体内对照模型,证明了体育活动可使与承重和单腿站立负荷下增加的强度相关的股骨近端发生适应性改变。然而,对于抵抗常见的损伤性负荷(例如,大转子上的跌倒),并没有可衡量的益处。力量不足和体育活动效应量小可能是导致后一种无效结果的原因。垒球投手是一种替代的个体内对照模型,可以探索股骨近端对体育活动的适应,其优势腿与非优势腿(D-to-ND)之间的差异大于棒球投手。本研究使用定量计算机断层扫描、统计参数映射和个体特定的有限元(FE)建模来研究女性垒球投手的股骨近端对体育活动的适应(n=25)。还纳入了女性越野跑运动员(n=15)作为对称加载的对照,她们的 D-to-ND 腿差异非常有限。垒球投手的股骨近端、股骨颈和转子区体积骨矿物质密度和含量以及股骨颈体积存在 D-to-ND 腿差异。体素形态计量分析和皮质骨映射显示,在连接股骨头上部、股骨颈下部和内侧转子间区域以及大转子的较大区域内存在 D-to-ND 腿差异。FE 建模显示,投手在单腿站立负荷和大转子上跌倒的预测极限强度下,D-to-ND 腿差异分别为 19.4%(95%CI,15.0 至 23.9%)和 4.9%(95%CI,1.7 至 8.2%)。这些数据证实了股骨近端对承重定向负荷的空间和强度适应性,并表明这些变化也可以在抵抗与向大转子侧方跌倒相关的负荷方面带来较小的益处。

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