首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Seated postural neck and trunk reactions to sideways perturbations with or without a cognitive task
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Seated postural neck and trunk reactions to sideways perturbations with or without a cognitive task

机译:坐姿的颈部和躯干对有或没有认知任务的侧向扰动的反应

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Driving on irregular terrain will expose the driver to sideways mechanical shocks or perturbations that may cause musculoskeletal problems. How a cognitive task, imposed on the driver, affects seated postural reactions during perturbations is unknown. The aim of the present study was to investigate seated postural reactions in the neck and trunk among healthy adults exposed to sideways perturbations with or without a cognitive task. Twenty-three healthy male subjects aged 19-36 years, were seated on a chair mounted on a motion system and randomly exposed to 20 sideways perturbations (at two peak accelerations 5.1 or 13.2 m/s(2)) in two conditions: counting backwards or not. Kinematics were recorded for upper body segments using inertial measurement units attached to the body and electromyography (EMG) was recorded for four muscles bilaterally in the neck and trunk. Angular displacements (head, neck, trunk and pelvis) in the frontal plane, and EMG amplitude (normalised to maximum voluntary contractions, MVC) were analysed. The cognitive task provoked significantly larger angular displacements of the head, neck and trunk and significantly increased EMG mean amplitudes in the upper neck during deceleration, although 10% of MVC was never exceeded. A cognitive task seems to affect musculoskeletal reactions when exposed to sideways perturbations in a seated position. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在不规则的地形上驾驶会使驾驶员遭受可能引起肌肉骨骼问题的侧向机械冲击或扰动。未知的是,施加在驾驶员身上的认知任务如何影响摄动过程中坐姿的姿势反应。本研究的目的是研究暴露于有或没有认知任务的侧向扰动的健康成年人中,颈部和躯干的坐姿姿势反应。 23名年龄在19-36岁之间的健康男性受试者坐在安装在运动系统上的椅子上,并在两种情况下随机暴露于20个侧向扰动(两个峰值加速度为5.1或13.2 m / s(2)):或不。使用连接到身体的惯性测量单元记录上半身的运动学,并记录颈部和躯干两侧的四块肌肉的肌电图(EMG)。分析额角平面的角位移(头部,颈部,躯干和骨盆)和EMG振幅(标准化为最大自愿收缩,MVC)。尽管从未超过10%的MVC,但认知任务引起了头,颈部和躯干的较大的角位移,并在减速期间显着增加了上颈部的EMG平均振幅。当在坐姿中受到侧向扰动时,认知任务似乎会影响骨骼肌肉反应。 (C)2015 Elsevier Ltd.保留所有权利。

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