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扰动诱发电位:在平衡控制研究中的意义和应用。

Perturbation-evoked potentials: Significance and application in balance control research.

机构信息

Department of Kinesiology, University of Waterloo, 200 University Ave W, Waterloo, Ontario, N2L 3G1, Canada.

出版信息

Neurosci Biobehav Rev. 2017 Dec;83:267-280. doi: 10.1016/j.neubiorev.2017.10.022. Epub 2017 Oct 28.

Abstract

Historically, balance control was thought to be mediated solely by subcortical structures based on animal research. However, recent findings provide compelling evidence of cortical involvement during balance reactions evoked by whole-body postural perturbations. In humans, an external perturbation elicits an evoked potential, termed the perturbation-evoked potential (PEP). PEPs are widely distributed over fronto-centro-parietal areas with maximal amplitude at the FCz/Cz electrode. From our literature review it is evident that the PEPs are comprised of a small positive potential (P1) that peaks around 30-90ms after perturbation onset, a large negative potential (N1) that peaks around 90-160ms, followed by positive (P2) and negative (N2) potentials between 200 and 400ms. Converging results across multiple studies suggest that these different PEP components are influenced by perturbation characteristics, postural set, environmental, and psychological factors. This review summarizes and integrates seminal research on the PEP, with a special emphasis on the PEP N1. Implications for future studies in PEP research are discussed to encourage further empirical investigation of PEP characteristics in healthy and patient populations.

摘要

从历史上看,基于动物研究的结果,人们认为平衡控制仅由皮质下结构介导。然而,最近的发现提供了令人信服的证据,证明在整个身体姿势扰动引起的平衡反应中存在皮质参与。在人类中,外部扰动会引发诱发电位,称为扰动诱发电位(PEP)。PEP 广泛分布在前额-中央-顶叶区域,在 FCz/Cz 电极处的振幅最大。从我们的文献综述中可以明显看出,PEP 由一个小的正电位(P1)组成,在扰动开始后约 30-90ms 达到峰值,一个大的负电位(N1)在约 90-160ms 达到峰值,随后在 200 和 400ms 之间出现正(P2)和负(N2)电位。多项研究的一致结果表明,这些不同的 PEP 成分受到扰动特征、姿势设定、环境和心理因素的影响。本综述总结并整合了 PEP 的开创性研究,特别强调了 PEP N1。讨论了 PEP 研究中未来研究的意义,以鼓励进一步对健康和患者人群中的 PEP 特征进行实证研究。

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