Hansson G-A, Arvidsson I, Ohlsson K, Nordander C, Mathiassen S E, Skerfving S, Balogh I
Department of Occupational and Environmental Medicine, University Hospital, SE-221 85 Lund, Sweden.
J Electromyogr Kinesiol. 2006 Apr;16(2):125-36. doi: 10.1016/j.jelekin.2005.06.009. Epub 2005 Aug 18.
For measuring the physical exposure/workload in studies of work-related musculoskeletal disorders, direct measurements are valuable. However, the between-days and between-subjects variability, as well as the precision of the method per se, are not well known. In a laboratory, six women performed three standardised assembly tasks, all of them repeated on three different days. Triaxial inclinometers were applied to the head, upper back and upper arms. Between-days (within subjects) and between-subjects (within tasks) variance components were derived for the 10th, 50th and 90th percentiles of the angular and the angular velocity distributions, and for the proportion of time spent in predefined angular sectors. For percentiles of the angular distributions, the average between-days variability was 3.4 degrees , and the between-subjects variability 4.0 degrees . For proportion of time spent in angular sectors, the variability depended on the percentage of time spent in the sector; the relative variability was scattered and large, on average 103% between days and 56% between subjects. For the angular velocity percentiles, the average between-days variability was 7.9%, and the average between-subjects variability was 22%. The contribution of the measurement procedure per se to the between-days variability, i.e., the imprecision of the method, was small: less than 2 degrees for angles and 3% for angular velocity.
在与工作相关的肌肉骨骼疾病研究中,用于测量身体暴露/工作量时,直接测量很有价值。然而,日间和个体间的变异性以及该方法本身的精度尚不清楚。在一个实验室中,六名女性执行了三项标准化装配任务,所有任务均在三个不同日期重复进行。将三轴倾角仪应用于头部、上背部和上臂。针对角度和角速度分布的第10、50和90百分位数以及在预定义角度扇区中花费的时间比例,得出了日间(个体内)和个体间(任务内)的方差分量。对于角度分布的百分位数,日间平均变异性为3.4度,个体间变异性为4.0度。对于在角度扇区中花费的时间比例,变异性取决于在该扇区中花费的时间百分比;相对变异性分散且较大,日间平均为103%,个体间平均为56%。对于角速度百分位数,日间平均变异性为7.9%,个体间平均变异性为22%。测量程序本身对日间变异性的贡献,即方法的不精确性较小:角度方面小于2度,角速度方面为3%。