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评估小腿支撑式外骨骼在地板和髋关节以下高度面板工作中的应用。

Evaluation of a Lower Leg Support Exoskeleton on Floor and Below Hip Height Panel Work.

机构信息

suitX, Emeryville, CA, USA.

1438 University of California Berkeley, USA.

出版信息

Hum Factors. 2020 May;62(3):489-500. doi: 10.1177/0018720820907752. Epub 2020 Mar 9.

Abstract

OBJECTIVE

The aim of this study is to determine the effectiveness of using a leg support exoskeleton (legX) in different modes on simulated work tasks which emulate real-world job tasks.

BACKGROUND

Prolonged kneeling and squatting tasks increase the risk of work-related musculoskeletal disorders at the knee in industrial occupations.

METHODS

We evaluated legX capable of spring assistance throughout one's range of motion and/or locking support at a fixed angular position. Participants performed a dynamic panel task, alternating between hip and knee height, and a sustained floor level task with and without the exoskeleton. The exoskeleton was evaluated in spring mode, locking mode, and spring + locking mode for the panel task and only in locking mode for the floor task. The participants' ( = 15) muscle activity was recorded for the right lumbar erector spinae, thoracic erector spinae, tibialis anterior, rectus femoris, semitendinosus, and lateral gastrocnemius.

RESULTS

Significant reduction of the rectus femoris activity was observed with the exoskeleton (median reduction: 22%-56% and peak reduction: 12%-48% for the panel task and median reduction: 57% and peak reduction:34% during the floor task).

CONCLUSION

legX significantly reduces rectus femoris activity during squatted static (floor) and dynamic (panel) work and may reduce pain and discomfort associated with squatting and potentially reduce the risk of developing knee disorders. Dynamic tasks benefit from both locking modes and spring assistance, the greatest benefit occurring with a combination of the two.

APPLICATION

These results show that the legX can be beneficial to activities such as electrical panel work, grinding, sanding of larger surfaces, and concrete laying.

摘要

目的

本研究旨在确定在模拟实际工作任务的不同模式下使用腿部支撑外骨骼(legX)对模拟工作任务的有效性。

背景

长时间的跪姿和蹲姿会增加工业职业中与膝盖相关的肌肉骨骼疾病的风险。

方法

我们评估了 legX 能够在整个运动范围内提供弹簧辅助,或在固定角度位置锁定支撑。参与者执行动态面板任务,在髋关节和膝关节高度之间交替,以及在有和没有外骨骼的情况下持续进行地板水平任务。外骨骼在面板任务中评估了弹簧模式、锁定模式和弹簧+锁定模式,而仅在地板任务中评估了锁定模式。记录了参与者(n=15)右侧腰方肌、胸腰筋膜、胫骨前肌、股四头肌、半腱肌和外侧腓肠肌的肌肉活动。

结果

使用外骨骼时,股四头肌的活动明显减少(中位数减少:22%-56%和峰值减少:12%-48%,用于面板任务;中位数减少:57%和峰值减少:34%,用于地板任务)。

结论

legX 可显著降低蹲姿静态(地板)和动态(面板)工作中的股四头肌活动,可能减轻与蹲姿相关的疼痛和不适,并降低患膝盖疾病的风险。锁定模式和弹簧辅助都使动态任务受益,两者结合的效果最佳。

应用

这些结果表明,legX 可有益于电气面板工作、打磨、较大表面的打磨和混凝土铺设等活动。

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