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Impact of two postural assist exoskeletons on biomechanical loading of the lumbar spine

机译:两个姿势辅助外骨骼对腰椎生物力学载荷的影响

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摘要

This study evaluated loading on the low back while wearing two commercially available postural assist exos-keletons. Ten male subjects lifted a box from multiple lift origins (combinations of vertical height and asymmetry) to a common destination using a squatting lifting technique with and without the use of either exoskeleton. Dependent measures included subject kinematics, moment arms between the torso or weight being lifted and the lumbar spine, and spinal loads as predicted by an electromyography-driven spine model. One of the exoskeletons tested (StrongArm Technologies (TM) FLx) reduced peak torso flexion at the shin lift origin, but differences in moment arms or spinal loads attributable to either of the interventions were not observed. Thus, industrial exoskeletons designed to control posture may not be beneficial in reducing biomechanical loads on the lumbar spine. Interventions altering the external manual materials handling environment (lift origin, load weight) may be more appropriate when implementation is fesible.
机译:该研究评估了低背部的负载,同时穿着两种商业上可用的姿势辅助外来核心。十个男性受试者从多个升力起源(垂直高度和不对称的组合)抬起一个盒子,使用蹲下提升技术,并且不使用外骨骼。依赖性措施包括主题运动学,躯干或重量之间的时刻臂和腰椎,脊柱载荷和脊柱载荷,如电核景驱动的脊柱模型所预测的。测试中的一种外骨骼(Strotharm技术(TM)FLX)降低了Shin升程起源的峰值躯干屈曲,但没有观察到归因于任何一种干预措施的时刻臂或脊柱载荷的差异。因此,设计用于控制姿势的工业外骨骼可能在减少腰椎上的生物力学载荷可能没有有益。干预改变外部手动材料处理环境(升降机来源,负载重量)可能更合适,当实施是可靠的。

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