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首页> 外文期刊>Journal of Neurophysiology >Stance- and locomotion-dependent processing of vibration-induced proprioceptive inflow from multiple muscles in humans.
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Stance- and locomotion-dependent processing of vibration-induced proprioceptive inflow from multiple muscles in humans.

机译:姿态和运动依赖的过程,从人体的多块肌肉中产生振动诱发的本体感受性流入。

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摘要

We performed a whole-body mapping study of the effect of unilateral muscle vibration, eliciting spindle Ia firing, on the control of standing and walking in humans. During quiet stance, vibration applied to various muscles of the trunk-neck system and of the lower limb elicited a significant tilt in whole body postural orientation. The direction of vibration-induced postural tilt was consistent with a response compensatory for the illusory lengthening of the stimulated muscles. During walking, trunk-neck muscle vibration induced ample deviations of the locomotor trajectory toward the side opposite to the stimulation site. In contrast, no significant modifications of the locomotor trajectory could be detected when vibrating various muscles of the lower as well as upper limb. The absence of correlation between the effects of muscle vibration during walking and standing dismisses the possibility that vibration-induced postural changes can account for the observed deviations of the locomotor trajectory during walking. We conclude that the dissimilar effects of trunk-neck and lower limb muscle vibration during walking and standing reflect a general sensory-motor plan, whereby muscle Ia input is processed according to both the performed task and the body segment from which the sensory inflow arises.
机译:我们进行了全身映射研究,研究了单侧肌肉振动对人的站立和行走控制的影响,引起纺锤体Ia放电。在安静的姿势中,施加到躯干-颈部系统和下肢的各种肌肉的振动会引起整个身体姿势的明显倾斜。振动引起的姿势倾斜的方向与被刺激的肌肉的幻觉加长的响应补偿一致。在行走过程中,躯干颈部肌肉的振动会引起运动轨迹向与刺激部位相反的一侧的大量偏离。相反,振动下肢和上肢的各种肌肉时,运动轨迹没有明显改变。步行和站立期间肌肉振动的影响之间没有相关性,消除了由振动引起的姿势变化可以解释步行期间运动轨迹的偏差的可能性。我们得出的结论是,步行和站立期间躯干颈部和下肢肌肉振动的不同影响反映了一般的感觉运动计划,从而根据执行的任务和产生感觉流入的身体部位来处理肌肉Ia输入。

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