Shu Yu, Jiang Zongliang, Xu Xu, Mirka Gary A
Department of Industrial Engineering, North Carolina State University, NC, USA.
J Appl Biomech. 2007 Nov;23(4):275-81. doi: 10.1123/jab.23.4.275.
Stooping and squatting postures are seen in a number of industries (e.g., agriculture, construction) where workers must work near ground level for extended periods of time. The focus of the current research was to evaluate a knee support device designed to reduce the biomechanical loading of these postures. Ten participants performed a series of sudden loading tasks while in a semisquat posture under two conditions of knee support (no support and fully supported) and two conditions of torso flexion (45 and 60 degrees ). A weight was released into the hands of the participants who then came to steady state while maintaining the designated posture. As they performed this task, the EMG responses of the trunk extensors (multifidus and erector spinae) were collected, both during the "sudden loading" phase of the trial as well as the steady weight-holding phase of the trial. As expected, the effects of torso flexion angle showed significant decreases in the activation of the multifidus muscles with greater torso angle (indicating the initiation of the flexion-relaxation response). Interestingly, the results showed that the knee support device had no effect on the activation levels of the sampled muscles, indicating that the loss of the degree of freedom from the ankle joint during the knee support condition had no impact on trunk extensor muscle response. The a priori concern with regard to these supports was that they would tend to focus loading on the low back and therefore would not serve as a potential ergonomic solution for these stooping/semisquatting tasks. Because the results of this study did not support this concern, further development of such an intervention is underway.
弯腰和蹲姿在许多行业(如农业、建筑业)中都很常见,在这些行业中,工人必须长时间在接近地面的高度工作。当前研究的重点是评估一种旨在减少这些姿势生物力学负荷的膝盖支撑装置。十名参与者在两种膝盖支撑条件(无支撑和完全支撑)以及两种躯干屈曲条件(45度和60度)下,以半蹲姿势执行一系列突然加载任务。一个重物被释放到参与者手中,然后他们在保持指定姿势的同时达到稳定状态。在他们执行这项任务时,收集了躯干伸肌(多裂肌和竖脊肌)在试验的“突然加载”阶段以及试验的稳定持重阶段的肌电图反应。正如预期的那样,躯干屈曲角度的影响显示,随着躯干角度增大,多裂肌的激活显著降低(表明屈曲放松反应开始)。有趣的是,结果表明膝盖支撑装置对所采样肌肉的激活水平没有影响,这表明在膝盖支撑条件下踝关节自由度的丧失对躯干伸肌反应没有影响。对这些支撑装置的先验担忧是,它们往往会使负荷集中在腰部,因此不会成为这些弯腰/半蹲任务的潜在人体工程学解决方案。由于这项研究的结果不支持这一担忧,目前正在对这种干预措施进行进一步开发。