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作为力量、姿势和握距函数的等长间歇性抓握任务的最佳工作-休息周期。

Optimal work-rest cycles for an isometric intermittent gripping task as a function of force, posture and grip span.

作者信息

Eksioglu Mahmut

机构信息

Department of Industrial Engineering, Bogaziçi University, 34342 Istanbul, Turkey.

出版信息

Ergonomics. 2006 Feb 10;49(2):180-201. doi: 10.1080/00140130500465527.

Abstract

The aim of this study was to investigate the maximum acceptable contraction frequencies (i.e. work-rest cycles) for an isometric-intermittent handgrip task as a function of grip span, applied force and shoulder posture using psychophysical and physiological approaches. Twelve healthy males served as subjects. The three grip spans investigated were the optimal, 2 cm narrower than the optimal, and 2 cm wider than the optimal. The grip force levels studied were 15% and 30% of maximum voluntary grip force and the two shoulder postures were 25 degrees flexion and 30 degrees abduction. The psychophysical results indicate that subjects work faster with the narrower grip span at 15% of maximum voluntary grip force level in comparison to working with the optimal and the wider spans. However, when the task required 30% of maximum grip force level, the subjects worked faster with the optimal grip span. These findings were supported by the results of electromyography, heart rate, blood pressure and perceived discomfort. The study suggests that grip span of a tool is an important factor to be considered in predicting optimal work-rest cycles for hand grip tasks, and the optimum setting of grip span of the hand-tool depends on the required task force level. That is, the optimality is relative rather than absolute. In addition, it appears that weaker subjects can work at a higher rate than stronger ones at the same relative force level.

摘要

本研究的目的是使用心理物理学和生理学方法,研究等长间歇式握力任务的最大可接受收缩频率(即工作-休息周期)与握距、施加力和肩部姿势之间的关系。12名健康男性作为受试者。所研究的三种握距分别为最佳握距、比最佳握距窄2厘米以及比最佳握距宽2厘米。所研究的握力水平为最大自主握力的15%和30%,两种肩部姿势分别为25度屈曲和30度外展。心理物理学结果表明,在最大自主握力水平的15%时,与使用最佳握距和较宽握距相比,受试者使用较窄握距时工作速度更快。然而,当任务需要最大握力水平的30%时,受试者使用最佳握距时工作速度更快。这些发现得到了肌电图、心率、血压和感知不适结果的支持。该研究表明,工具的握距是预测握力任务最佳工作-休息周期时需要考虑的一个重要因素,手动工具握距的最佳设置取决于所需的任务力水平。也就是说,最佳状态是相对的而非绝对的。此外,在相同的相对力水平下,似乎较弱的受试者比较强的受试者工作速度更快。

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