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阈下振动噪声对运动想象时皮质活动的影响。

The Effects of Subthreshold Vibratory Noise on Cortical Activity During Motor Imagery.

机构信息

Department of Sensors and Biomedical Engineering, School of Electronics Engineering, Vellore Institute of Technology, Vellore,India.

Cleveland State University, Cleveland, OH,USA.

出版信息

Motor Control. 2023 Feb 17;27(3):559-572. doi: 10.1123/mc.2022-0061. Print 2023 Jul 1.

Abstract

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.

摘要

先前的研究表明,视觉和本体感觉反馈在运动的心理练习中都起着至关重要的作用。触觉感觉通过刺激感觉运动皮层,可以通过不可察觉的振动噪声改善外周感觉刺激。由于本体感觉和触觉都共享同一群后顶叶神经元,这些神经元在高空间表示中进行编码,因此不可察觉的振动噪声对基于运动想象的脑机接口的影响尚不清楚。本研究的目的是通过施加于食指指尖的不可察觉的振动噪声来研究这种感觉刺激对基于运动想象的脑机接口性能的影响。研究了 15 名健康成年人(9 名男性和 6 名女性)。每位受试者在虚拟现实耳机呈现丰富的沉浸式视觉场景的同时进行了三种运动想象任务,即喝水、抓握和手腕屈伸,分别在有和没有感觉刺激的情况下进行。结果表明,与没有振动相比,振动噪声增加了运动想象期间的事件相关去同步化。此外,当使用机器学习算法对任务进行区分时,振动时的任务分类百分比更高。总之,亚阈值随机频率振动会影响与运动想象相关的事件相关去同步化,并提高任务分类性能。

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