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人体工程学干预对腰部力矩的影响会因提举行为的改变而减弱。

The effects of ergonomic interventions on low back moments are attenuated by changes in lifting behaviour.

作者信息

Faber G S, Kingma I, van Dieën J H

机构信息

Research Institute Move, Faculty of HumanMovement Sciences, VU University Amsterdam, The Netherlands.

出版信息

Ergonomics. 2007 Sep;50(9):1377-91. doi: 10.1080/00140130701324622.

Abstract

This study investigated the effects of ergonomic interventions involving a reduction of the mass (from 16 to 11 and 6 kg) and an increase in the initial lifting height (from pallet height to 90 cm above the ground) of building blocks in a mock-up of an industrial depalletizing task, investigating lifting behaviour as well as low back moments (calculated using a 3-D linked segment model). Nine experienced construction workers participated in the experiment, in which they removed building blocks from a pallet in the way they normally did during their work. Most of the changes in lifting behaviour that were found would attenuate the effect of the investigated interventions on low back moments. When block mass was reduced from 16 to 6 kg, subjects chose to lift the building block from a 10 (SD 10) cm greater distance from the front edge of the pallet and with a 100 (SD 66) degrees/s(2) higher trunk angular acceleration. When initial lifting height was increased, subjects chose to shift the building blocks less before actually lifting them, resulting in a 10.7 (SD 10) cm increase in horizontal distance of the building blocks relative to the body at the instant of peak net total moment. Despite these changes in lifting behaviour, the investigated ergonomic interventions still reduced the net total low back moment (by 4.9 (SD 2.0) Nm/kg when block mass was reduced and 53.6 (SD 41.0) Nm when initial lifting height was increased).

摘要

本研究在工业卸托盘任务的模拟实验中,调查了人体工程学干预措施的效果,这些措施包括减少积木质量(从16千克减至11千克和6千克)以及增加积木初始起升高度(从托盘高度增至离地面90厘米),同时研究了起升行为以及腰部力矩(使用三维链接节段模型计算)。九名经验丰富的建筑工人参与了实验,他们以工作时的正常方式从托盘上搬运积木。所发现的大多数起升行为变化会减弱所研究干预措施对腰部力矩的影响。当积木质量从16千克减至6千克时,受试者选择从距离托盘前沿远10(标准差10)厘米处提起积木,且躯干角加速度高100(标准差66)度/秒²。当初始起升高度增加时,受试者在实际提起积木前选择较少移动积木,导致在峰值净总力矩瞬间积木相对于身体的水平距离增加10.7(标准差10)厘米。尽管起升行为有这些变化,但所研究的人体工程学干预措施仍降低了腰部净总力矩(积木质量减少时降低4.9(标准差2.0)牛米/千克,初始起升高度增加时降低53.6(标准差41.0)牛米)。

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