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直流电前庭刺激对支撑面平移过程中人体姿势反应的影响。

Effect of galvanic vestibular stimulation on human postural responses during support surface translations.

作者信息

Inglis J T, Shupert C L, Hlavacka F, Horak F B

机构信息

R. S. Dow Neurological Sciences Institute, Portland, Oregon 97209, USA.

出版信息

J Neurophysiol. 1995 Feb;73(2):896-901. doi: 10.1152/jn.1995.73.2.896.

Abstract
  1. We investigated the role of the vestibular system in postural control by combining galvanic vestibular stimulation (0.2-0.5 mA) with platform translations in standing subjects. Vestibular stimulation delivered 500 ms before and continuously during the platform translation produced little change in the earliest center of pressure (COP) and center of mass (COM) movements in response to platform translations, but resulted in large changes during the execution of the postural movement and in the final equilibrium position. 2. Vestibular stimulation produced anterior or posterior shifts in the position of COP and COM, depending on the polarity of the galvanic current. These shifts were larger during platform translations than during quiet stance. The peak of these shifts in COP and COM occurred at 1.5-2.5 s after the onset of platform translation, and increased in magnitude with increasing platform velocity. The final equilibrium positions of COP and COM were also shifted, but these shifts were smaller and not dependent on platform velocity. 3. These results imply that a tonic step of galvanic current to the vestibular system can change the final equilibrium position for an automatic postural response. Furthermore, these results indicate that the vestibular system may play a larger role in interpreting sensory reafference during postural movements, and especially during fast postural movements, than in controlling quiet stance. Finally, these results indicate that the vestibular system does not play a critical role in triggering the earliest postural responses, but it may be critical in establishing an internal reference for verticality.
摘要
  1. 我们通过将电刺激前庭(0.2 - 0.5毫安)与站立受试者的平台平移相结合,研究了前庭系统在姿势控制中的作用。在平台平移前500毫秒及平移过程中持续给予前庭刺激,对平台平移做出反应时,最早的压力中心(COP)和质心(COM)运动几乎没有变化,但在姿势运动执行过程中和最终平衡位置时产生了很大变化。2. 前庭刺激会使COP和COM的位置向前或向后移动,这取决于电刺激电流的极性。这些移动在平台平移期间比安静站立时更大。COP和COM这些移动的峰值出现在平台平移开始后1.5 - 2.5秒,并随着平台速度的增加而增大。COP和COM的最终平衡位置也发生了移动,但这些移动较小且不依赖于平台速度。3. 这些结果表明,对前庭系统施加的直流电的持续性阶跃可以改变自动姿势反应的最终平衡位置。此外,这些结果表明,前庭系统在解释姿势运动期间,尤其是快速姿势运动期间的感觉再传入方面,可能比控制安静站立时发挥更大的作用。最后,这些结果表明,前庭系统在触发最早的姿势反应中不发挥关键作用,但它可能在建立垂直性的内部参考方面至关重要。

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