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首页> 外文期刊>Journal of Applied Biomechanics >Effect of Mechanically Passive, Wearable Shoulder Exoskeletons on Muscle Output During Dynamic Upper Extremity Movements: A Computational Simulation Study
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Effect of Mechanically Passive, Wearable Shoulder Exoskeletons on Muscle Output During Dynamic Upper Extremity Movements: A Computational Simulation Study

机译:机械无源,可穿着肩外骨骼对动态上肢运动期间肌肉输出的影响:计算仿真研究

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摘要

Wearable passive (ie, spring powered) shoulder exoskeletons could reduce muscle output during motor tasks to help prevent or treat shoulder musculoskeletal disorders. However, most wearable passive shoulder exoskeletons have been designed and evaluated for static tasks, so it is unclear how they affect muscle output during dynamic tasks. The authors used a musculoskeletal model and Computed Muscle Control optimization to estimate muscle output with and without a wearable passive shoulder exoskeleton during 2 simulated dynamic tasks: abduction and upward reach. To an existing upper extremity musculoskeletal model, the authors added an exoskeleton model with 3-dimensional representations of the exoskeleton components, including a spring, cam wheel, force-transmitting shoulder cable, and wrapping surfaces that permitted the shoulder cable to wrap over the shoulder. The exoskeleton reduced net muscle-generated moments in positive shoulder elevation by 28% and 62% during the abduction and upward reach, respectively. However, muscle outputs (joint moments and muscle effort) were higher with the exoskeleton than without at some points of the movement. Muscle output was higher with the exoskeleton because the exoskeleton moment opposed the muscle-generated moment in some postures. The results of this study highlight the importance of evaluating muscle output for passive exoskeletons designed to support dynamic movements to ensure that the exoskeletons assist, rather than impede, movement.
机译:可穿戴被动(即弹簧供电)肩外骨骼可以减少电机任务期间的肌肉输出,以帮助预防或治疗肩部肌肉骨骼疾病。然而,最具可穿戴的被动肩肩部的外骨骼已经设计和评估了静态任务,因此目前尚不清楚它们如何影响动态任务期间的肌肉输出。作者使用了肌肉骨骼模型和计算的肌肉控制优化,以估计2个模拟动态任务期间带有可穿戴被动肩部外骨骼的肌肉输出:绑架和向上伸向伸展。对于现有的上肢肌肉骨骼模型,作者添加了具有三维表示的外骨骼模型,包括弹簧,凸轮,力传递肩部电缆和包装表面,允许肩部电缆包裹在肩部上。在展示和向上达到的情况下,外骨骼在正肩部升高减少了28%和62%的净肌肉产生的矩。然而,肌肉输出(联合时刻和肌肉效率)与外骨骼较高,而不是在某些情况下的运动。肌肉输出与外骨骼较高,因为外骨骼时刻反对一些姿势的肌肉产生的时刻。本研究的结果突出了评估被动外骨骼的肌肉输出的重要性,该肌肉输出旨在支持动态运动,以确保外骨骼协助,而不是阻碍运动。

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