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人手在随机振动下强力握持时手指的生物动力学响应。

Biodynamic response of human fingers in a power grip subjected to a random vibration.

作者信息

Dong R G, Welcome D E, McDowell T W, Wu J Z

机构信息

Engineering & Control Technology Branch, National Institute for Occupational Safety and Health, Morgantown, West Virginia 26505, USA.

出版信息

J Biomech Eng. 2004 Aug;126(4):447-57. doi: 10.1115/1.1784479.

Abstract

BACKGROUND

Knowledge of the biodynamic response (BR) of the human hand-arm system is an important part of the foundation for the measurement and assessment of hand-transmitted vibration exposure. This study investigated the BR of human fingers in a power grip subjected to a random vibration.

METHOD

Ten male subjects were used in the experiment. Each subject applied three coupling actions to a simulated tool handle at three different finger grip force levels.

RESULTS AND CONCLUSIONS

The BR is practically independent of the hand coupling actions for frequencies at or above 100 Hz. Above 50 Hz, the BR is correlated to finger and hand sizes. Increasing the finger coupling force significantly increases the BR. Therefore, hand forces should be measured and used when assessing hand-transmitted vibration exposure. The results also show that under a constant-velocity vibration, the finger vibration power absorption at frequencies above 200 Hz is approximately twice that at frequencies below 100 Hz. This suggests that the frequency weighting specified in the current ISO 5349-1 (2001) may underestimate the high frequency effect on vibration-induced finger disorders.

摘要

背景

了解人体手部 - 手臂系统的生物动力学响应(BR)是测量和评估手部传递振动暴露的基础的重要组成部分。本研究调查了在随机振动下强力握持时人手指的生物动力学响应。

方法

实验使用了10名男性受试者。每个受试者在三种不同的手指握力水平下对模拟工具手柄施加三种耦合动作。

结果与结论

对于100Hz及以上频率,生物动力学响应实际上与手部耦合动作无关。在50Hz以上,生物动力学响应与手指和手部尺寸相关。增加手指耦合力会显著增加生物动力学响应。因此,在评估手部传递的振动暴露时应测量并使用手部力量。结果还表明,在等速振动下,200Hz以上频率的手指振动功率吸收约为100Hz以下频率的两倍。这表明当前ISO 5349 - 1(2001)中规定的频率加权可能低估了高频对振动引起的手指疾病的影响。

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