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施加于手腕皮肤的不可察觉振动噪声对指尖触觉诱发电位的影响——一项脑电图研究。

Effect of imperceptible vibratory noise applied to wrist skin on fingertip touch evoked potentials - an EEG study.

作者信息

Seo Na Jin, Lakshminarayanan Kishor, Bonilha Leonardo, Lauer Abigail W, Schmit Brian D

机构信息

Division of Occupational Therapy, Department of Health Professions, Department of Health Sciences and Research, Medical University of South Carolina, Charleston, South Carolina

Department of Mechanical Engineering, University of Wisconsin-Milwaukee, Milwaukee, Wisconsin.

出版信息

Physiol Rep. 2015 Nov;3(11). doi: 10.14814/phy2.12624. Epub 2015 Nov 24.

Abstract

Random vibration applied to skin can change the sense of touch. Specifically, low amplitude white-noise vibration can improve fingertip touch perception. In fact, fingertip touch sensation can improve even when imperceptible random vibration is applied to other remote upper extremity areas such as wrist, dorsum of the hand, or forearm. As such, vibration can be used to manipulate sensory feedback and improve dexterity, particularly during neurological rehabilitation. Nonetheless, the neurological bases for remote vibration enhanced sensory feedback are yet poorly understood. This study examined how imperceptible random vibration applied to the wrist changes cortical activity for fingertip sensation. We measured somatosensory evoked potentials to assess peak-to-peak response to light touch of the index fingertip with applied wrist vibration versus without. We observed increased peak-to-peak somatosensory evoked potentials with wrist vibration, especially with increased amplitude of the later component for the somatosensory, motor, and premotor cortex with wrist vibration. These findings corroborate an enhanced cortical-level sensory response motivated by vibration. It is possible that the cortical modulation observed here is the result of the establishment of transient networks for improved perception.

摘要

施加于皮肤的随机振动会改变触觉。具体而言,低振幅白噪声振动可改善指尖触觉感知。事实上,即使在手腕、手背或前臂等其他远端上肢区域施加难以察觉的随机振动时,指尖触觉也会得到改善。因此,振动可用于操控感觉反馈并提高灵活性,尤其是在神经康复过程中。尽管如此,对于远端振动增强感觉反馈的神经学基础仍知之甚少。本研究探讨了施加于手腕的难以察觉的随机振动如何改变指尖感觉的皮层活动。我们测量了体感诱发电位,以评估在施加手腕振动与未施加振动的情况下,食指指尖轻触的峰峰值反应。我们观察到,手腕振动时体感诱发电位的峰峰值增加,尤其是在手腕振动时,体感、运动和运动前皮层后期成分的振幅增加。这些发现证实了由振动激发的皮层水平感觉反应增强。此处观察到的皮层调制可能是为改善感知而建立瞬态网络的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/083b/4673650/2eaf3e2c28d8/phy20003-e12624-f1.jpg

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