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Joint moment trade-offs across the upper extremity and trunk during repetitive work

机译:在重复工作期间,联合时刻在上肢和后备箱穿过上肢和行李箱

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摘要

Individuals can coordinate small kinematic changes at several degrees of freedom simultaneously in the presence of fatigue, leaving it unclear how overall biomechanical demands at each joint are altered. The purpose of this study was to evaluate trade-offs in joint moments between the trunk, shoulder, and elbow during repetitive upper extremity work. Participants performed four simulated workplace tasks cyclically until meeting fatigue termination criteria. Emergent fatigue-induced adaptations to repetitive work resulted in task-dependent trade-offs in joint moments. In general, reduced shoulder moments were compensated for by increased elbow and trunk joint moment contributions. Although mean joint moment changes were modest (range: 1-3 Nm) across participants, a wide distribution of responses was observed, with standard deviations exceeding 10 Nm. Re-distributing biomechanical demands across joints may alleviate constant tissue loads and facilitate continued task performance with fatigue but may be at the expense of increasing demands at adjacent joints.
机译:个人可以在存在疲劳的情况下同时协调几次自由度的小运动变化,尚不清楚每个关节的整体生物力学要求如何改变。本研究的目的是评估在重复的上肢工作期间躯干,肩部和肘部之间的联合时刻的权衡。参与者在满足疲劳终止标准之前循环执行四个模拟工作场所任务。紧急疲劳诱导的重复工作的适应导致联合时刻的任务依赖权衡。通常,通过增加的肘部和躯干联合力矩贡献来补偿减少的肩部矩。虽然参与者的平均接合力矩变化是适度的(范围:1-3nm),但观察到响应的广泛分布,标准偏差超过10nm。重新分配联合的生物力学需求可能减轻恒定的组织负荷,并促进疲劳的持续任务性能,但可能需要牺牲相邻关节的需求增加。

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