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The spatial dependency of shoulder muscular demands during upward and downward exertions

机译:上下运动过程中肩膀肌肉需求的空间依赖性

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Lifting and lowering are common occupational tasks contributing to shoulder injury risk. Quantifying task interaction with physical demand can precipitate better workstation designs. Nineteen university-aged males performed one-handed, submaximal upward/downward manual force exertions at 70 hand locations; unilateral electromyography (EMG) of 14 muscles was recorded. EMG across planes was evaluated with ANOVA. Predictive equations for muscle activity throughout the reach envelope were developed with stepwise regression. Total muscle activity (sum of individual muscle activity) was most sensitive to vertical hand location for upward exertions, where activation at superior locations was 192% of values for inferior locations. For upward exertions, activation differences for hand location occurred along all anatomical axes, and along anterior/posterior and superior/inferior axes for downward exertions. Predictive equations were non-linear, reflecting complex muscular demand with three-dimensional hand location. This work details foundational exposure data for lifting/lowering exertions. Results are applicable to workstation design to minimise occupational shoulder muscular demands.Practitioner Summary: Lifting and lowering in the workplace contribute to shoulder injury risk. Shoulder muscle activity magnitudes revealed a dependence on three-dimensional hand location in the reach envelope for a defined hand force. This information can inform evidence-based workstation designs that reduce shoulder muscular demands for numerous materials handling scenarios.
机译:抬高和降低是导致肩部受伤风险的常见职业任务。量化任务与实际需求的交互可以促进更好的工作站设计。 19名大学年龄的男性在70个手部位置执行了单手向上或向下最大程度的单手力量施加操作;记录了14条肌肉的单侧肌电图(EMG)。跨平面肌电图用ANOVA评估。通过逐步回归建立了整个覆盖范围内肌肉活动的预测方程。对于向上运动,总的肌肉活动(单个肌肉活动的总和)对垂直的手部位置最为敏感,其中上级位置的激活是下级位置值的192%。对于向上运动,手位置的激活差异在所有解剖轴上以及向下运动的前后轴和上/下轴上发生。预测方程是非线性的,反映了具有三维手部位置的复杂肌肉需求。这项工作详细介绍了提升/降低运动量的基本暴露数据。结果适用于工作站设计,以最大程度地减少职业性肩部肌肉需求。从业者摘要:在工作场所中抬高和放低会造成肩部受伤的风险。肩部肌肉活动幅度揭示了对于定义的手部力,其在到达范围中的三维手部位置具有依赖性。该信息可为基于证据的工作站设计提供信息,该工作站设计可减少多种物料搬运情况下肩膀肌肉的需求。

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