噪声前庭电流刺激有效强度的日间和日间变化,以改善双侧前庭病变的姿势稳定性。

IF 2.9 3区 医学 Q2 NEUROSCIENCES
Chisato Fujimoto, Takuya Kawahara, Makoto Kinoshita, Teru Kamogashira, Mineko Oka, Kentaro Ichijo, Kento Koda, Tatsuya Yamasoba, Shinichi Iwasaki
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引用次数: 0

摘要

背景:噪声前庭电流刺激(nGVS)改善姿势稳定性的有效强度的再现性尚不清楚。目的:研究双侧前庭病变(BVP)患者有效强度的日间和日间变化。在闭眼条件下测量30分钟的平均速度、包络面积和均方根 nGVS应用期间的s范围为0至1000μA。有效强度定义为刺激过程中测量的所有三个参数同时小于基线值(0μA)的强度。结果:13名患者中有7名在三个测试日内具有共同的有效强度。第二个测试日的6名患者和第三个测试日有5名患者在早晚之间没有共同的有效强度。结论:nGVS的有效强度随白天和白天之间的时间而变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inter-day and intra-day variations in effective intensity of noisy galvanic vestibular stimulation to improve postural stability in bilateral vestibulopathy.

Background: The reproducibility of the effective intensity of noisy galvanic vestibular stimulation (nGVS) to improve postural stability is not well known.

Objective: We aimed to investigate inter-day and intra-day variations in effective intensity in patients with bilateral vestibulopathy (BVP).

Methods: Thirteen BVP patients were measured for center-of-pressure movements in the standing posture at five time points: morning of the first test day, morning and evening of the second test day, and morning and evening of the third test day. The mean velocity, the envelopment area, and the root mean square were measured in the eyes-closed condition for 30 s during nGVS application ranging from 0 to 1000μA. The effective intensity was defined as the intensity at which all the three parameters measured during the stimulation were simultaneously smaller than the values at baseline (0μA).

Results: Seven of the 13 patients had a common effective intensity throughout the three test days. Six patients on the second test day and five patients on the third test day had no common effective intensity between morning and evening.

Conclusions: The effective intensity of nGVS changes depending on the time during the day as well as between the days.

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来源期刊
CiteScore
5.00
自引率
4.30%
发文量
66
审稿时长
>12 weeks
期刊介绍: Journal of Vestibular Research is a peer-reviewed journal that publishes experimental and observational studies, review papers, and theoretical papers based on current knowledge of the vestibular system. Subjects of the studies can include experimental animals, normal humans, and humans with vestibular or other related disorders. Study topics can include the following: Anatomy of the vestibular system, including vestibulo-ocular, vestibulo-spinal, and vestibulo-autonomic pathways Balance disorders Neurochemistry and neuropharmacology of balance, both at the systems and single neuron level Neurophysiology of balance, including the vestibular, ocular motor, autonomic, and postural control systems Psychophysics of spatial orientation Space and motion sickness Vestibular rehabilitation Vestibular-related human performance in various environments
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