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在躯干伸肌疲劳后安静站立时,重新调整来自足部和踝关节的体感输入以控制姿势。

Re-weighting of somatosensory inputs from the foot and the ankle for controlling posture during quiet standing following trunk extensor muscles fatigue.

作者信息

Vuillerme Nicolas, Pinsault Nicolas

机构信息

Laboratoire TIMC-IMAG, Faculté de Médecine, UMR UJF CNRS 5525, 38706, La Tronche cédex, France.

出版信息

Exp Brain Res. 2007 Nov;183(3):323-7. doi: 10.1007/s00221-007-1047-4. Epub 2007 Jul 21.

Abstract

The present study focused on the effects of trunk extensor muscles fatigue on postural control during quiet standing under different somatosensory conditions from the foot and the ankle. With this aim, 20 young healthy adults were asked to stand as immobile as possible in two conditions of No fatigue and Fatigue of trunk extensor muscles. In Experiment 1 (n = 10), somatosensation from the foot and the ankle was degraded by standing on a foam surface. In Experiment 2 (n = 10), somatosensation from the foot and ankle was facilitated through the increased cutaneous feedback at the foot and ankle provided by strips of athletic tape applied across both ankle joints. The centre of foot pressure displacements (CoP) were recorded using a force platform. The results showed that (1) trunk extensor muscles fatigue increased CoP displacements under normal somatosensatory conditions (Experiment 1 and Experiment 2), (2) this destabilizing effect was exacerbated when somatosensation from the foot and the ankle was degraded (Experiment 1), and (3) this destabilizing effect was mitigated when somatosensation from the foot and the ankle was facilitated (Experiment 2). Altogether, the present findings evidenced re-weighting of sensory cues for controlling posture during quiet standing following trunk extensor muscles fatigue by increasing the reliance on the somatosensory inputs from the foot and the ankle. This could have implications in clinical and rehabilitative areas.

摘要

本研究聚焦于在不同体感条件下(从足部和脚踝获取的体感信息),躯干伸肌疲劳对安静站立时姿势控制的影响。为此,20名年轻健康成年人被要求在躯干伸肌无疲劳和疲劳这两种状态下尽可能静止站立。在实验1(n = 10)中,通过站在泡沫表面来降低来自足部和脚踝的体感。在实验2(n = 10)中,通过横跨两个踝关节粘贴运动胶带条增加足部和脚踝处的皮肤反馈,从而促进来自足部和脚踝的体感。使用测力平台记录足压力中心位移(CoP)。结果表明:(1)在正常体感条件下(实验1和实验2),躯干伸肌疲劳会增加CoP位移;(2)当来自足部和脚踝的体感降低时(实验1),这种破坏稳定性的影响会加剧;(3)当来自足部和脚踝的体感得到促进时(实验2),这种破坏稳定性的影响会减轻。总之,本研究结果证明,在躯干伸肌疲劳后安静站立期间,通过增加对来自足部和脚踝的体感输入的依赖,会重新权衡用于控制姿势的感觉线索。这可能对临床和康复领域具有启示意义。

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