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稳态诱发电位用于研究人类大脑中触觉和伤害性躯体感觉输入的处理。

Steady-state evoked potentials to study the processing of tactile and nociceptive somatosensory input in the human brain.

机构信息

Institute of Neuroscience (IONS), université catholique de Louvain, Brussels, Belgium.

出版信息

Neurophysiol Clin. 2012 Oct;42(5):315-23. doi: 10.1016/j.neucli.2012.05.005. Epub 2012 Jun 22.

Abstract

The periodic presentation of a sensory stimulus induces, at certain frequencies of stimulation, a sustained electroencephalographic response of corresponding frequency, known as steady-state evoked potentials (SS-EP). In visual, auditory and vibrotactile modalities, studies have shown that SS-EP reflect mainly activity originating from early, modality-specific sensory cortices. Furthermore, it has been shown that SS-EP have several advantages over the recording of transient event-related brain potentials (ERP), such as a high signal-to-noise ratio, a shorter time to obtain reliable signals, and the capacity to frequency-tag the cortical activity elicited by concurrently presented sensory stimuli. Recently, we showed that SS-EP can be elicited by the selective activation of skin nociceptors and that nociceptive SS-EP reflect the activity of a population of neurons that is spatially distinct from the somatotopically-organized population of neurons underlying vibrotactile SS-EP. Hence, the recording of SS-EP offers a unique opportunity to study the cortical representation of nociception and touch in humans, and to explore their potential crossmodal interactions. Here, (1) we review available methods to achieve the rapid periodic stimulation of somatosensory afferents required to elicit SS-EP, (2) review previous studies that have characterized vibrotactile and nociceptive SS-EP, (3) discuss the nature of the recorded signals and their relationship with transient event-related potentials and (4) outline future perspectives and potential clinical applications of this technique.

摘要

周期性呈现感觉刺激会在特定的刺激频率下引起相应频率的持续脑电图反应,这种反应被称为稳态诱发电位(SS-EP)。在视觉、听觉和触觉模态中,研究表明 SS-EP 主要反映了源自早期、特定感觉皮质的活动。此外,已经表明 SS-EP 相对于记录瞬态事件相关脑电位(ERP)具有几个优势,例如高信噪比、获得可靠信号的时间更短,以及能够对同时呈现的感觉刺激引发的皮质活动进行频率标记。最近,我们表明 SS-EP 可以通过选择性激活皮肤伤害感受器来诱发,并且伤害性 SS-EP 反映了神经元群体的活动,该群体在空间上与基础振动 SS-EP 的躯体感觉组织的神经元群体不同。因此,记录 SS-EP 为研究人类疼痛和触觉的皮质代表提供了一个独特的机会,并探索了它们潜在的跨模态相互作用。在这里,(1)我们回顾了实现诱发 SS-EP 所需的快速周期性刺激躯体感觉传入的现有方法,(2)回顾了以前描述振动和伤害性 SS-EP 的研究,(3)讨论了记录信号的性质及其与瞬态事件相关电位的关系,以及(4)概述了该技术的未来展望和潜在临床应用。

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