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The boundaries for joint angles of isocomfort for sitting and standing males based on perceived comfort of static joint postures

机译:基于静态关节姿势的感知舒适度,坐着和站着的男性等舒适关节角度的边界

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This study presents data for the joint angles of isocomfort (JAI) in sitting and standing males based on perceived comfort ratings for static joint postures maintained for 60 s. The JAI value was defined as a boundary indicating joint deviation (an angle) from neutral posture, within which the perceived comfort for different body joint postures is expected to be the same. An experiment for quantifying perceived comfort ratings was conducted using the free modulus method of magnitude estimation. Based on experimental results, regression equations were derived for each joint posture, to represent the relationships between different levels of joint deviation/joint posture and corresponding normalized comfort scores. The JAI values were developed for nine verbal categories of joint comfort. The JAIs with the marginal comfort levels, one of the nine verbal categories used, for most joint postures around the wrist, elbow, neck and ankle were similar to the maximum range of motion (ROM) values for these joints. However, the JAIs with the marginal comfort category for back and hip postures were much smaller than the maximum ROM values for these joints. There were no significant differences in JAI expressed in terms of the percentage of the corresponding maximum ROM values between sitting and standing postures. The relative ‘marginal comfort index', defined as the percentage of JAIs for the marginal comfort relative to the corresponding maximum ROM values, for the hip was the smallest among all joints. This was followed, in an increasing order of the marginal comfort index, by the lower back and shoulder, while the marginal comfort index for the elbow joint was the largest. The results of this study suggest that static postures maintained for 60 s cause greater discomfort for the hip joint than for the other joints studied, and less discomfort for the elbow than for the other joints. The data about JAIs can be used as guidelines for enhancing postural comfort when designing a variety of human-machine tasks where static postures cannot be eliminated.
机译:这项研究基于静态关节姿势维持60 s的感知舒适度等级,给出了坐着和站着男性的等舒适度(JAI)关节角度数据。 JAI值定义为指示与中立姿势的关节偏离(角度)的边界,在该边界内,期望不同身体关节姿势的感知舒适度相同。使用幅度估计的自由模量法进行了量化感知舒适度的实验。根据实验结果,为每个关节姿势导出了回归方程,以表示不同水平的关节偏离/关节姿势与相应的标准化舒适度评分之间的关​​系。 JAI值是针对九种关节舒适性的口头类别制定的。腕部,肘部,颈部和脚踝周围大多数关节姿势中使用的边际舒适度(九种语言类别之一)的JAI与这些关节的最大运动范围(ROM)值相似。但是,对于背部和臀部姿势,具有边缘舒适度类别的JAI比这些关节的最大ROM值小得多。在坐姿和站立姿势之间,相应的最大ROM值的百分比表示的JAI没有显着差异。相对的“边缘舒适度指数”,定义为边缘舒适度相对于相应的最大ROM值的JAI百分比,在所有关节中,髋关节均最小。其次是腰部和肩部,按边缘舒适度指数的升序排列,而肘关节的边缘舒适度指数最大。这项研究的结果表明,保持静态姿势60 s所引起的髋关节不适感比其他研究关节大,而肘部不适感则比其他关节轻。在设计无法消除静态姿势的各种人机任务时,有关JAI的数据可用作增强姿势舒适性的准则。

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