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首页> 外文期刊>International Journal of Industrial Ergonomics >Muscle fatigue in axial rotation of the trunk
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Muscle fatigue in axial rotation of the trunk

机译:躯干轴向旋转时的肌肉疲劳

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The objective of the study was to determine if different trunk muscles fatigued at a different rate in isometric axial rotation. Rotation is associated with a large number of back injuries. The fatigue behaviour may shed some light on possible reasons for such an association. Subjects were stabilized in an upright seated neutral posture in a specially designed and fabricated device axial rotation tester such that the rotation could occur only in thoraco-lumbar region. Subjects performed isometric trunk rotation at 60% of their previously measured maximal voluntary contraction for a maximum duration of 2 min or less if they could hold no longer. Surface electromyographic (EMG) was measured from seven trunk muscles bilaterally. Power spectra were calculated, the mean median frequency obtained at 10% intervals of the task cycle and compared in time within and between subjects. The EMG amplitudes were significantly different between right and left sides (p<0.01). The initial median frequencies of each muscle were significantly different from the other (p<0.0l). The rate of decline of the median frequency for different trunk muscles were different (p<0.01). In isometric trunk rotation different trunk muscles demonstrated a different rate and magnitude of EMG fatigue. The latter is likely to alter the pattern of load sharing between muscles and predisposing musculoligamentous to injury either through stress concentration in deformed tissues or exceeding the strain rate tolerance in fatigue induced jerky motion (micromotion).
机译:研究的目的是确定等轴测轴旋转中不​​同躯干肌肉是否以不同速率疲劳。旋转与大量背部受伤有关。疲劳行为可能会阐明这种关联的可能原因。在专门设计和制造的设备轴向旋转测试仪中,受试者以直立的坐姿中立姿势稳定下来,使得旋转只能发生在胸腰段。如果受试者无法忍受,则以其先前测得的最大自愿收缩的60%进行等距躯干旋转,最大持续时间为2分钟或更短。从两侧的七个躯干肌肉测量表面肌电图(EMG)。计算功率谱,以任务周期的10%间隔获得平均中频,并在受试者之间和受试者之间进行时间比较。右侧和左侧的EMG振幅显着不同(p <0.01)。每条肌肉的初始中值频率彼此之间显着不同(p <0.0l)。不同躯干肌肉的中位频率下降率不同(p <0.01)。在等距躯干旋转中,不同的躯干肌肉表现出不同的肌电图疲劳率和幅度。后者可能会通过变形组织中的应力集中或超过疲劳诱发的抖动运动(微运动)的应变率容限,改变肌肉之间的负载分担模式,并使肌肉韧带易受伤。

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