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阈下随机前庭刺激影响平衡挑战的站立和行走。

Subthreshold stochastic vestibular stimulation affects balance-challenged standing and walking.

机构信息

Department of Biomedical Physiology and Kinesiology, Simon Fraser University, Burnaby, British Columbia, Canada.

出版信息

PLoS One. 2020 Apr 10;15(4):e0231334. doi: 10.1371/journal.pone.0231334. eCollection 2020.

Abstract

Subthreshold stochastic vestibular stimulation (SVS) is thought to enhance vestibular sensitivity and improve balance. However, it is unclear how SVS affects standing and walking when balance is challenged, particularly when the eyes are open. It is also unclear how different methods to determine stimulation intensity influence the effects. We aimed to determine (1) whether SVS affects stability when balance is challenged during eyes-open standing and overground walking tasks, and (2) how the effects differ based on whether optimal stimulation amplitude is derived from sinusoidal or cutaneous threshold techniques. Thirteen healthy adults performed balance-unchallenged and balance-challenged standing and walking tasks with SVS (0-30 Hz zero-mean, white noise electrical stimulus) or sham stimulation. For the balance-challenged condition, participants had inflatable rubber hemispheres attached to the bottom of their shoes to reduce the control provided by moving the center of pressure under their base of support. In different blocks of trials, we set SVS intensity to either 50% of participants' sinusoidal (motion) threshold or 80% of participants' cutaneous threshold. SVS reduced medial-lateral trunk velocity root mean square in the balance-challenged (p < 0.05) but not in the balance-unchallenged condition during standing. Regardless of condition, SVS decreased step-width variability and marginally increased gait speed when walking with the eyes open (p < 0.05). SVS intensity had minimal effect on the standing and walking measures. Taken together, our results provide insight into the effectiveness of SVS at improving balance-challenged, eyes-open standing and walking performance in healthy adults.

摘要

亚阈随机前庭刺激(SVS)被认为可以增强前庭敏感性并改善平衡。然而,当平衡受到挑战时,尤其是当眼睛睁开时,SVS 如何影响站立和行走尚不清楚。不同的刺激强度确定方法如何影响效果也不清楚。我们的目的是确定:(1)当睁眼站立和地面行走任务中的平衡受到挑战时,SVS 是否会影响稳定性;(2)基于是否从正弦或皮肤阈值技术得出最佳刺激幅度,效果有何不同。13 名健康成年人在 SVS(0-30 Hz 零均值,白噪声电刺激)或假刺激下进行了平衡不受挑战和平衡受挑战的站立和行走任务。对于平衡受挑战的条件,参与者的鞋子底部附有可充气的橡胶半球,以减少通过移动支撑基础下的压力中心来提供的控制。在不同的试验块中,我们将 SVS 强度设置为参与者正弦(运动)阈值的 50%或参与者皮肤阈值的 80%。SVS 在站立时平衡受挑战(p < 0.05)但不受平衡不受挑战条件下降低了中间-外侧躯干速度均方根。无论条件如何,SVS 均降低了睁眼行走时的步宽变异性,并适度增加了步态速度(p < 0.05)。SVS 强度对站立和行走测量的影响最小。总而言之,我们的结果为 SVS 在改善健康成年人平衡受挑战、睁眼站立和行走表现方面的有效性提供了深入了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5712/7147773/8d45a3c0d24f/pone.0231334.g001.jpg

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