阈下振动噪声对运动想象时皮层活动的影响。

IF 0.9 4区 医学 Q4 NEUROSCIENCES
Motor Control Pub Date : 2023-07-01 DOI:10.1123/mc.2022-0061
Kishor Lakshminarayanan, Rakshit Shah, Yifei Yao, Deepa Madathil
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引用次数: 7

摘要

先前的研究表明,视觉和本体感受反馈在运动的心理练习中都起着至关重要的作用。触觉已被证明可以通过刺激感觉运动皮层,通过难以察觉的振动噪声来改善周围感觉刺激。由于本体感觉和触觉感觉在高级空间表征中共享相同的后顶叶神经元群,难以察觉的振动噪声对基于运动图像的脑机接口的影响尚不清楚。本研究的目的是探讨通过对食指施加难以察觉的振动噪声的感觉刺激对改善基于运动图像的脑机接口性能的影响。对15名健康成年人(9名男性和6名女性)进行了研究。每位受试者在有和没有感官刺激的情况下完成三项运动想象任务,即饮酒、抓取和手腕屈伸,同时通过虚拟现实耳机呈现丰富的沉浸式视觉场景。结果表明,与无振动相比,振动噪声增加了运动想象过程中事件相关的不同步。此外,当使用机器学习算法进行任务识别时,任务分类率在振动下更高。综上所述,阈下随机频率振动影响了运动图像相关事件相关的去同步,提高了任务分类性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Effects of Subthreshold Vibratory Noise on Cortical Activity During Motor Imagery.

Previous studies have demonstrated that both visual and proprioceptive feedback play vital roles in mental practice of movements. Tactile sensation has been shown to improve with peripheral sensory stimulation via imperceptible vibratory noise by stimulating the sensorimotor cortex. With both proprioception and tactile sensation sharing the same population of posterior parietal neurons encoding within high-level spatial representations, the effect of imperceptible vibratory noise on motor imagery-based brain-computer interface is unknown. The objective of this study was to investigate the effects of this sensory stimulation via imperceptible vibratory noise applied to the index fingertip in improving motor imagery-based brain-computer interface performance. Fifteen healthy adults (nine males and six females) were studied. Each subject performed three motor imagery tasks, namely drinking, grabbing, and flexion-extension of the wrist, with and without sensory stimulation while being presented a rich immersive visual scenario through a virtual reality headset. Results showed that vibratory noise increased event-related desynchronization during motor imagery compared with no vibration. Furthermore, the task classification percentage was higher with vibration when the tasks were discriminated using a machine learning algorithm. In conclusion, subthreshold random frequency vibration affected motor imagery-related event-related desynchronization and improved task classification performance.

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来源期刊
Motor Control
Motor Control 医学-神经科学
CiteScore
1.80
自引率
9.10%
发文量
48
审稿时长
>12 weeks
期刊介绍: Motor Control (MC), a peer-reviewed journal, provides a multidisciplinary examination of human movement across the lifespan. To keep you abreast of current developments in the field of motor control, it offers timely coverage of important topics, including issues related to motor disorders. This international journal publishes many types of research papers, from clinical experimental to modeling and theoretical studies. These papers come from such varied disciplines as biomechanics, kinesiology, neurophysiology, neuroscience, psychology, physical medicine, and rehabilitation. Motor Control, the official journal of the International Society of Motor Control, is designed to provide a multidisciplinary forum for the exchange of scientific information on the control of human movement across the lifespan, including issues related to motor disorders. Motor Control encourages submission of papers from a variety of disciplines including, but not limited to, biomechanics, kinesiology, neurophysiology, neuroscience, psychology, physical medicine, and rehabilitation. This peer-reviewed journal publishes a wide variety of types of research papers including clinical experimental, modeling, and theoretical studies. To be considered for publication, papers should clearly demonstrate a contribution to the understanding of control of movement. In addition to publishing research papers, Motor Control publishes review articles, quick communications, commentaries, target articles, and book reviews. When warranted, an entire issue may be devoted to a specific topic within the area of motor control.
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