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肱骨近端适应体力活动:棒球运动员的个体内对照研究。

Adaptation of the proximal humerus to physical activity: A within-subject controlled study in baseball players.

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 Denver, Denver, CO, United States of America.

出版信息

Bone. 2019 Apr;121:107-115. doi: 10.1016/j.bone.2019.01.008. Epub 2019 Jan 8.

Abstract

The proximal humerus is a common, yet understudied site for osteoporotic fracture. The current study explored the impact of prolonged physical activity on proximal humerus bone health by comparing bone properties between the throwing and nonthrowing arms within professional baseball players. The proximal humerus in throwing arms had 28.1% (95% CI, 17.8 to 38.3%) greater bone mass compared to nonthrowing arms, as assessed using dual-energy x-ray absorptiometry. At the level of the surgical neck, computed tomography revealed 12.0% (95% CI, 8.2 to 15.8%) greater total cross-sectional area and 31.0% (95% CI, 17.8 to 44.2%) greater cortical thickness within throwing arms, which contributed to 56.8% (95% CI, 44.9 to 68.8%) greater polar moment of inertia (i.e., estimated ability to resist torsional forces) compared to nonthrowing arms. Within the humeral head and greater tubercle regions, throwing arms had 3.1% (95% CI, 1.1 to 5.1%) more trabecular bone, as assessed using high-resolution magnetic resonance imaging. Three-dimensional mapping of voxel- and vertex-wise differences between arms using statistical parametric mapping techniques revealed throwing arms had adaptation within much of the proximal diaphysis, especially the posterolateral cortex. The pattern of proximal diaphysis adaptation approximated the pattern of strain energy distribution within the proximal humerus during a fastball pitch derived from a musculoskeletal and finite element model in a representative player. These data demonstrate the adaptive ability of the proximal humerus to physical activity-related mechanical loads. It remains to be established how they translate to exercise prescription to improve bone health within the proximal humerus; however, they provide unique insight into the relationship between prolonged loading and skeletal adaptation at a clinically relevant osteoporotic site.

摘要

肱骨近端是骨质疏松性骨折的常见部位,但研究较少。本研究通过比较职业棒球运动员投掷臂和非投掷臂的骨骼特性,探讨了长期体力活动对肱骨近端骨骼健康的影响。双能 X 射线吸收法评估显示,与非投掷臂相比,投掷臂的肱骨近端骨质增加了 28.1%(95%可信区间,17.8%至 38.3%)。在外科颈水平,计算机断层扫描显示,与非投掷臂相比,投掷臂的总横截面积增加了 12.0%(95%可信区间,8.2%至 15.8%),皮质厚度增加了 31.0%(95%可信区间,17.8%至 44.2%),导致投掷臂的极惯性矩(即估计抵抗扭转力的能力)增加了 56.8%(95%可信区间,44.9%至 68.8%)。在肱骨头和小结节区域,使用高分辨率磁共振成像评估,投掷臂的小梁骨增加了 3.1%(95%可信区间,1.1%至 5.1%)。使用统计参数映射技术对臂部之间的体素和顶点差异进行三维映射显示,投掷臂的近端骨干有很多适应性改变,特别是后外侧皮质。近端骨干的适应模式与从代表性运动员的肌肉骨骼和有限元模型得出的快球投球过程中近端肱骨的应变能分布模式相似。这些数据表明肱骨近端具有适应与体力活动相关的机械负荷的能力。如何将其转化为改善肱骨近端骨骼健康的运动处方仍有待确定;然而,它们为长期负荷与临床相关骨质疏松部位骨骼适应之间的关系提供了独特的见解。

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