Kee D, Karwowski W
Department of Industrial Engineering, Keimyung University, Taegu, South Korea.
Appl Ergon. 2001 Aug;32(4):357-66. doi: 10.1016/s0003-6870(01)00006-0.
This paper presents a technique for postural loading on the upper body assessment (LUBA). The proposed method is based on the new experimental data for composite index of perceived discomfort (ratio values) for a set of joint motions, including the hand, arm, neck and back, and the corresponding maximum holding times in static postures. Twenty male subjects participated in the experiment designed to measure perceived joint discomforts. The free modulus technique of the magnitude estimation method was employed to obtain subjects' discomforts for varying joint motions. The developed postural classification scheme was based on the angular deviation levels from the neutral position for each joint motion. These were divided into groups with the same degree of discomforts based on the statistical analysis. Each group was assigned a numerical discomfort score relative to the perceived discomfort value of elbow flexion, which exhibited the lowest level among all joint motions investigated in this study, and, therefore, was set as a reference point. The criteria for evaluating stresses of working postures were proposed based on the four distinct action categories, in order to enable practitioners to apply appropriate corrective actions. The proposed scheme can be used for evaluating and redesigning static working postures in industry.
本文介绍了一种用于上半身姿势负荷评估(LUBA)的技术。所提出的方法基于一组关节运动(包括手部、手臂、颈部和背部)的感知不适复合指数(比值)的新实验数据,以及静态姿势下相应的最大保持时间。二十名男性受试者参与了旨在测量关节感知不适的实验。采用量级估计法的自由模量技术来获取受试者在不同关节运动下的不适程度。所制定的姿势分类方案基于每个关节运动相对于中立位置的角度偏差水平。通过统计分析将这些偏差分为具有相同不适程度的组。根据相对于本研究中所有关节运动中表现出最低不适水平的肘部屈曲的感知不适值,为每个组分配一个数值不适分数,并将其作为参考点。基于四种不同的动作类别提出了评估工作姿势压力的标准,以便从业者能够采取适当的纠正措施。所提出的方案可用于评估和重新设计工业中的静态工作姿势。