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Measurement of Osteogenic Exercise – How to Interpret Accelerometric Data?

机译:成骨运动的测量–如何解释加速度计数据?

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摘要

Bone tissue adapts to its mechanical loading environment. We review here the accelerometric measurements with special emphasis on osteogenic exercise. The accelerometric method offers a unique opportunity to assess the intensity of mechanical loadings. We present methods to interpret accelerometric data, reducing it to the daily distributions of magnitude, slope, area, and energy of signal. These features represent the intensity level of physical activities, and were associated with the changes in bone density, bone geometry, physical performance, and metabolism in healthy premenopausal women. Bone adaptations presented a dose- and intensity dependent relationship with impact loading. Changes in hip were threshold dependent, indicating the importance of high-impacts exceeding acceleration of 4 g or slope of 100 g/s as an osteogenic stimulus. The number of impacts needed was 60/day. We also present the daily impact score to describe the osteogenic potential of daily mechanical loading with a single score. The methodology presented here can be used to study musculoskeletal adaptation to exercise in other target groups as well.
机译:骨组织适应其机械负荷环境。我们在这里回顾了特别着重于成骨运动的加速度测量。加速度计方法提供了一个独特的机会来评估机械载荷的强度。我们提出了解释加速度计数据的方法,将其减少到幅度,斜率,面积和信号能量的每日分布。这些特征代表了体育活动的强度水平,并且与健康的绝经前妇女的骨密度,骨骼几何形状,身体机能和代谢变化有关。骨骼适应表现出剂量和强度与冲击负荷的关系。髋关节的变化是阈值依赖性的,表明超过4μg的加速度或100μg/ s的斜率的高影响力作为成骨刺激的重要性。所需的影响数量为60 /天。我们还提供了每日影响力得分,用一个得分来描述每日机械负荷的成骨潜力。这里介绍的方法还可以用于研究骨骼肌肉的适应性以及其他目标人群的锻炼。

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