Park Daegeun, Cho Kyu-Jin
School of Mechanical and Aerospace Engineering/Institute of Advanced Machines and Design, Seoul National University, Seoul, Republic of Korea.
PLoS One. 2017 Mar 14;12(3):e0173730. doi: 10.1371/journal.pone.0173730. eCollection 2017.
Compensating the weight of human limbs is important in reducing muscle fatigue experienced by manual laborers. In this study, a compact and lightweight soft wearable weight support device was developed and evaluated. The device supports gravitational force on the shoulder at any arm posture, although there are some limitations in its assistive performance. The device actuator consists of a cam-rod structure, a tendon-driven mechanism, and a rubber band. The desired assistive torque is translated to the shoulder joint along a tendon routing structure. Device performance was evaluated by measuring muscle activation in with-assist and without-assist conditions. Muscle activation on the deltoid was measured by surface electromyography. An experimental protocol consisting of a series of exercises was executed with six healthy subjects. The subjects raised and lowered their arm from 0 to 100 degrees for 30 times under eight conditions, which were combined with-assist and without-assist conditions, and holding the horizontal angle of the arm at 0, 30, 60, or 90 degrees against the sagittal plane. Surface electromyography data were pre-processed and analyzed using a root mean square method. When muscle fatigue occurs, the root mean square of the surface electromyography increases nonlinearly. This was calculated using the standard deviation of the root mean square. Three of six subjects showed decreased variation of the root mean square between the exercises in the with-assist condition. One subject's result was significantly reduced (by about 57.6%) in the with-assist condition. In contrast, two subjects did not show significant difference between measurements taken in the with-assist and without-assist conditions. One subject was dropped from the experiment because the device did not fit the subject's body. In conclusion, the effectiveness of the soft wearable weight support device in supporting shoulder movements was verified through the decreased variation of muscle activation.
补偿人体肢体的重量对于减轻体力劳动者的肌肉疲劳很重要。在本研究中,开发并评估了一种紧凑且轻便的软质可穿戴式重量支撑装置。该装置可在任何手臂姿势下支撑肩部的重力,尽管其辅助性能存在一些局限性。该装置的致动器由凸轮杆结构、腱驱动机构和橡皮筋组成。所需的辅助扭矩沿着腱路由结构传递到肩关节。通过测量有辅助和无辅助条件下的肌肉激活来评估装置性能。通过表面肌电图测量三角肌上的肌肉激活。对六名健康受试者执行了由一系列练习组成的实验方案。受试者在八种条件下将手臂从0度抬高到100度再放下30次,这些条件结合了有辅助和无辅助条件,并使手臂相对于矢状面在0度、30度、60度或90度保持水平角度。使用均方根方法对表面肌电图数据进行预处理和分析。当肌肉疲劳发生时,表面肌电图的均方根会非线性增加。这是使用均方根的标准差来计算的。六名受试者中有三名在有辅助条件下的练习之间均方根的变化有所减少。一名受试者在有辅助条件下的结果显著降低(约57.6%)。相比之下,两名受试者在有辅助和无辅助条件下的测量结果之间没有显著差异。一名受试者因装置与该受试者身体不匹配而退出实验。总之,通过肌肉激活变化的减少验证了软质可穿戴式重量支撑装置在支持肩部运动方面的有效性。