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横向升降时的拉力。

Pulling force in lateral lifting and lowering.

作者信息

Huang Q M, Sato M, Thorstensson A

机构信息

Department of Neuroscience, Karolinska Institute, Stockholm, Sweden.

出版信息

Ergonomics. 1998 Jun;41(6):899-908. doi: 10.1080/001401398186711.

DOI:10.1080/001401398186711
PMID:9629070
Abstract

This work investigated maximal voluntary lateral hand pulling force in 18 healthy, habitually active men. Measurements were made in standing at different static angles of lateral trunk flexion, as well as at different constant lifting and lowering velocities. Movement was constrained to the frontal plane, velocity was controlled by an isokinetic dynamometer, pulling force was measured with a strain gauge and overall lateral angular displacement of the trunk by an electrogoniometer. Mean peak pulling force values ranged from 478 to 658 N (static), 291 to 528 N (lifting), and 801 to 911 N (lowering), respectively. The static pulling forces were the highest in flexed positions to the loaded side (10 degrees and 20 degrees trunk angles). In lifting, peak and position-specific pulling force decreased with increasing velocity. Peak lifting force occurred in a flexed trunk position of 7 to 9 degrees to the loaded side. In lowering, pulling forces were significantly higher than during lifting at corresponding velocities and showed less changes with velocity. Peak lowering force occurred at a trunk angle of -7 to -11 degrees, that is towards the unloaded side. In conclusion, maximal voluntary pulling force in the frontal plane was found to be task dependent. Lowering was accompanied by higher forces and a different velocity and position dependency than lifting which, in addition to the fact that the trunk muscles act predominantly eccentrically during the lowering task, may impose an increased risk of injury.

摘要

这项研究调查了18名健康、日常活动活跃的男性的最大自主侧向手部拉力。测量在站立位进行,包括不同的躯干侧屈静态角度,以及不同的恒定升降速度。运动限制在额状面,速度由等速测力计控制,拉力用应变仪测量,躯干的整体侧向角位移用电角度计测量。平均峰值拉力值分别为478至658牛(静态)、291至528牛(提升)和801至911牛(下降)。静态拉力在向负重侧屈曲的位置(躯干角度10度和20度)最高。在提升过程中,峰值及特定位置的拉力随速度增加而降低。峰值提升力出现在向负重侧屈曲7至9度的躯干位置。在下降过程中,相应速度下的拉力显著高于提升过程,且随速度变化较小。峰值下降力出现在躯干角度为-7至-11度时,即朝着非负重侧。总之,发现额状面的最大自主拉力取决于任务。下降过程伴随着更高的力,且与提升过程相比,速度和位置依赖性不同,此外,在下降任务中躯干肌肉主要进行离心收缩,这可能会增加受伤风险。

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