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首页> 外文期刊>Journal of Applied Biomechanics >The Spatial Dependency of Shoulder Muscle Demands for Seated Lateral Hand Force Exertions
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The Spatial Dependency of Shoulder Muscle Demands for Seated Lateral Hand Force Exertions

机译:坐姿侧向力练习的肩部肌肉需求的空间依赖性

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摘要

As the modern workplace is dominated by submaximal repetitive tasks, knowledge of the effect of task location is important to ensure workers are unexposed to potentially injurious demands imposed by repetitive work in awkward or sustained postures. The purpose of this investigation was to develop a three-dimensional spatial map of the muscle activity for the right upper extremity during laterally directed submaximal force exertions. Electromyographic (EMG) activity was recorded from fourteen muscles surrounding the shoulder complex as the participants exerted 40N of force in two directions (leftward, rightward) at 70 defined locations. Hand position in both push directions strongly influenced total and certain individual muscle demands as identified by repeated measures analysis of variance (P < .001). During rightward exertions individual muscle activation varied from 1 to 21% MVE and during leftward exertions it varied from 1 to 27% MVE with hand location. Continuous prediction equations for muscular demands based on three-dimensional spatial parameters were created with explained variance ranging from 25 to 73%. The study provides novel information for evaluating existing and proactive workplace designs, and may help identify preferred geometric placements of lateral exertions in occupational settings to lower muscular demands, potentially mitigating fatigue and associated musculoskeletal risks.
机译:由于现代工作场所主要由次要的重复性任务主导,因此了解任务位置的影响对于确保工人不因重复性工作以尴尬或持续的姿势所施加的潜在有害要求而变得至关重要。这项研究的目的是在横向施加次最大力量时,绘制右上肢肌肉活动的三维空间图。当参与者在70个定义的位置沿两个方向(向左,向右)施加40N的力时,从肩部复合体周围的十四个肌肉记录了肌电图(EMG)活动。通过重复测量方差分析可以确定,两个推动方向上的手位置都强烈影响了总的肌肉需求和某些特定的肌肉需求(P <.001)。在向右运动时,单个手的肌肉激活程度在1至21%MVE之间变化,在向左运动时,其肌肉活动在1至27%MVE之间变化。建立了基于三维空间参数的肌肉需求连续预测方程,其解释方差范围为25%到73%。这项研究为评估现有的和积极的工作场所设计提供了新颖的信息,并可能有助于确定职业环境中侧向运动的首选几何位置,以降低肌肉需求,从而潜在地减轻疲劳和相关的肌肉骨骼风险。

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