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站立平衡期间电前庭刺激与诱发力之间不存在非线性耦合。

Absence of Nonlinear Coupling Between Electric Vestibular Stimulation and Evoked Forces During Standing Balance.

作者信息

Hannan Kelci B, Todd Makina K, Pearson Nicole J, Forbes Patrick A, Dakin Christopher J

机构信息

Department of Kinesiology and Health Sciences, Utah State University, Logan, UT, United States.

Department of Neuroscience, Erasmus MC, University Medical Center, Rotterdam, Netherlands.

出版信息

Front Hum Neurosci. 2021 Mar 25;15:631782. doi: 10.3389/fnhum.2021.631782. eCollection 2021.

Abstract

The vestibular system encodes motion and orientation of the head in space and is essential for negotiating in and interacting with the world. Recently, random waveform electric vestibular stimulation has become an increasingly common means of probing the vestibular system. However, many of the methods used to analyze the behavioral response to this type of stimulation assume a linear relationship between frequencies in the stimulus and its associated response. Here we examine this stimulus-response frequency linearity to determine the validity of this assumption. Forty-five university-aged subjects stood on a force-plate for 4 min while receiving vestibular stimulation. To determine the linearity of the stimulus-response relationship we calculated the cross-frequency power coupling between a 0 and 25 Hz bandwidth limited white noise stimulus and induced postural responses, as measured using the horizontal forces acting at the feet. Ultimately, we found that, on average, the postural response to a random stimulus is linear across stimulation frequencies. This result supports the use of analysis methods that depend on the assumption of stimulus-response frequency linearity, such as coherence and gain, which are commonly used to analyze the body's response to random waveform electric stimuli.

摘要

前庭系统编码头部在空间中的运动和方向,对于在世界中行走和与世界互动至关重要。最近,随机波形电前庭刺激已成为探测前庭系统越来越常用的方法。然而,许多用于分析对这种类型刺激的行为反应的方法都假定刺激中的频率与其相关反应之间存在线性关系。在这里,我们研究这种刺激-反应频率线性,以确定这一假设的有效性。45名大学年龄的受试者站在测力板上4分钟,同时接受前庭刺激。为了确定刺激-反应关系的线性,我们计算了0至25赫兹带宽受限白噪声刺激与诱发的姿势反应之间的跨频率功率耦合,姿势反应通过作用于足部的水平力来测量。最终,我们发现,平均而言,对随机刺激的姿势反应在刺激频率范围内是线性的。这一结果支持使用依赖于刺激-反应频率线性假设的分析方法,如相干性和增益,这些方法通常用于分析身体对随机波形电刺激的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1894/8046432/e07410e61251/fnhum-15-631782-g001.jpg

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