McMaster Occupational Biomechanics Laboratory, Department of Kinesiology, McMaster University, Hamilton, ON, Canada.
Ergonomics. 2009 Sep;52(9):1144-52. doi: 10.1080/00140130902919113.
Many industrial tasks require repetitive shoulder exertions to be performed with concurrent physical and mental demands. The highly mobile nature of the shoulder predisposes it to injury. The purpose of this study was to determine the effects of simultaneous gripping, at a specified magnitude, on muscle activity and maximal arm force in various directions. Ten female subjects performed maximal arm exertions at two different heights and five directions using both specified (30% maximum voluntary grip) and preferred (self-selected) grip forces. Electromyography was recorded from eight muscles of the right upper extremity. The preferred grip condition produced grip forces that were dependent on the combination of arm height and force direction and were significantly greater (arm force down), lower (to left, up and push forward), or similar to the specified grip condition. Regardless of the magnitude of the preferred grip force, specifying the grip resulted in decreased maximal arm strength (by 18-25%) and muscle activity (by 15-30%) in all conditions, indicating an interfering effect when the grip force was specified by visual target force-matching. Task constraints, such as specific gripping demands, may decrease peak force levels attainable and alter muscle activity. Depending on the nature of task, the amount of relative demand may differ, which should be considered when determining safety thresholds.
许多工业任务需要重复进行肩部运动,同时还伴随着身体和精神上的双重要求。肩部高度灵活的特性使其容易受伤。本研究的目的是确定在特定幅度下同时进行握持对肌肉活动和各个方向上最大手臂力的影响。十位女性受试者在两种不同的高度和五个方向上使用指定(最大自主握力的 30%)和偏好(自我选择)握力进行最大手臂用力。记录右侧上肢的 8 块肌肉的肌电图。在偏好握持条件下,握持力取决于手臂高度和力的方向的组合,并且明显更大(手臂向下用力)、更小(向左、向上和向前推)或与指定握持条件相似。无论偏好握持力的大小如何,指定握持都会导致所有条件下最大手臂力量(降低 18-25%)和肌肉活动(降低 15-30%)下降,这表明在通过视觉目标力匹配指定握持力时会产生干扰效应。任务约束条件,如特定的握持要求,可能会降低可达到的峰值力水平,并改变肌肉活动。根据任务的性质,相对需求的数量可能会有所不同,在确定安全阈值时应考虑到这一点。