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人体手指振动功率吸收密度的估计。

Estimation of vibration power absorption density in human fingers.

作者信息

Dong Ren G, Wu John Z, Welcome Daniel E, McDowell Thomas W

机构信息

Engineering and Control Technology Branch, National Institute for Occupational Safety and Health, 1095 Willowdale Road, Morgantown, West Virginia 26505, USA.

出版信息

J Biomech Eng. 2005 Oct;127(5):849-56. doi: 10.1115/1.1992526.

Abstract

The absorption of hand-transmitted vibration energy may be an etiological factor in vibration-induced disorders. The vibration power absorption density (VPAD) may be a better measure of energy than the total power absorption of the hand-arm system. The objectives of the present study are to develop a method to estimate the average absorption density in the fingers and to investigate its basic characteristics. Ten healthy male subjects were used in this study. The biodynamic response of the fingers in a power grip subjected to a broad-band random excitation was measured under three grip forces (15, 30, 50 N) and three push forces (35, 45, 50 N). The response was used to estimate the total finger energy absorption. The response, together with the finger volume, was also used to estimate the amount of tissue effectively involved in the absorption. Then, the average VPAD under constant-acceleration, constant-power density, constant-velocity vibration spectra, and 20 tool vibration spectra were calculated. The correlations between the VPAD and the unweighted and weighted accelerations (ISO 5349-1, 2001) were also examined. The VPAD depends on both the characteristics of the vibration spectrum and the biodynamic response of the finger-hand-arm system. The biodynamic response generally plays a more important role in determining the VPAD in the middle frequency range (31.5-400 Hz) than those at the low and high ends. The applied force significantly affected the VPAD. The finger VPAD was highly correlated to the unweighted acceleration. The average VPAD can be determined using the proposed experimental method. It can serve as an alternative tool to quantify the severity of the vibration exposure for studying vibration-induced finger disorders.

摘要

手部传递的振动能量吸收可能是振动诱发疾病的一个病因。与手臂系统的总功率吸收相比,振动功率吸收密度(VPAD)可能是衡量能量的更好指标。本研究的目的是开发一种估计手指平均吸收密度的方法,并研究其基本特性。本研究使用了10名健康男性受试者。在三种握力(15、30、50牛)和三种推力(35、45、50牛)下,测量了手指在宽带随机激励下强力握持时的生物动力学响应。该响应用于估计手指的总能量吸收。该响应连同手指体积,还用于估计有效参与吸收的组织量。然后,计算了恒定加速度、恒定功率密度、恒定速度振动谱以及20种工具振动谱下的平均VPAD。还研究了VPAD与未加权和加权加速度(ISO 5349-1,2001)之间的相关性。VPAD取决于振动谱的特性以及手指-手臂系统的生物动力学响应。在确定中频段(31.5-400赫兹)的VPAD时,生物动力学响应通常比低频段和高频段的响应发挥更重要的作用。施加的力显著影响VPAD。手指VPAD与未加权加速度高度相关。可以使用所提出的实验方法确定平均VPAD。它可以作为一种替代工具,用于量化振动暴露的严重程度,以研究振动诱发的手指疾病。

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