Department of Kinesiology, University of Waterloo, ON, Canada.
Appl Ergon. 2012 Nov;43(6):971-8. doi: 10.1016/j.apergo.2012.01.005. Epub 2012 Feb 28.
Pushing and pulling account for nearly half of all manual material handling tasks. The purpose of this investigation was to develop a 3-D spatial muscle activity map for the right upper extremity during pushing and pulling tasks. Nineteen males performed 140 ramped directional hand exertions (70 push; 70 pull) at locations along three axes aligned with the anatomical planes. Electromyography (EMG) of 14 sites on the right upper extremity was recorded. Two directional 3-way repeated measures ANOVAs assessed the influence of hand position on EMG. Hand position and exertion direction influenced total and individual muscle demand. During pulling exertions, all three hand location parameters influenced total muscle activity (p < 0.001) and similarly in pushing exertions (p < 0.002), though less pronounced than in pulling. Data were used to create equations to predict the muscle activity of untested hand locations for novel work design scenarios.
推和拉几乎占所有手动搬运任务的一半。本研究的目的是开发一种在推和拉任务期间用于右侧上肢的三维空间肌肉活动图。19 名男性在与解剖平面对齐的三个轴上的位置进行了 140 次斜坡定向手部用力(70 次推;70 次拉)。记录了右侧上肢 14 个部位的肌电图(EMG)。两个方向的 3 向重复测量 ANOVA 评估了手位置对 EMG 的影响。手位置和用力方向影响总肌肉和个体肌肉的需求。在拉出力时,所有三个手部位置参数都影响总肌肉活动(p < 0.001),在推出力时也同样(p < 0.002),尽管不如拉出力明显。这些数据被用于创建方程,以预测用于新工作设计场景的未测试手部位置的肌肉活动。