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不同的启动刺激如何影响非侵入性脑刺激技术诱导的皮质脊髓兴奋性:系统评价和荟萃分析。

How different priming stimulations affect the corticospinal excitability induced by noninvasive brain stimulation techniques: a systematic review and meta-analysis.

机构信息

Non-invasive Brain Stimulation and Neuroplasticity Laboratory, Department of Physiotherapy, School of Primary and Allied Health Care, Faculty of Medicine, Nursing and Health Science, Monash University, Peninsula Campus, P. O. Box 527, Victoria 3199, Australia.

Department of Rehabilitation, Nutrition and Sport, School of Allied Health, Discipline of Physiotherapy, La Trobe University, Bundoora, Victoria 3086, Australia.

出版信息

Rev Neurosci. 2018 Nov 27;29(8):883-899. doi: 10.1515/revneuro-2017-0111.

Abstract

Noninvasive brain stimulation (NIBS) techniques could induce changes in corticospinal excitability (CSE) and neuroplasticity. These changes could be affected by different factors, including having a session of stimulation called the 'priming' protocol before the main stimulation session called the 'test' protocol. Literature indicates that a priming protocol could affect the activity of postsynaptic neurons, form a neuronal history, and then modify the expected effects of the test protocol on CSE indicated by the amplitude of transcranial magnetic stimulation-induced motor-evoked potentials. This prior history affects a threshold to activate the necessary mechanism stabilizing the neuronal activity within a useful dynamic range. For studying the effects of this history and related metaplasticity mechanisms in the human primary motor cortex (M1), priming-test protocols are successfully employed. Thirty-two studies were included in this review to investigate how different priming protocols could affect the induced effects of a test protocol on CSE in healthy individuals. The results showed that if the history of synaptic activity were high or low enough to displace the threshold, the expected effects of the test protocol would be the reverse. This effect reversal is regulated by homeostatic mechanisms. On the contrary, the effects of the test protocol would not be the reverse, and at most we experience a prolongation of the lasting effects if the aforementioned history is not enough to displace the threshold. This effect prolongation is mediated by nonhomeostatic mechanisms. Therefore, based on the characteristics of priming-test protocols and the interval between them, the expected results of priming-test protocols would be different. Moreover, these findings could shed light on the different mechanisms of metaplasticity involved in NIBS. It helps us understand how we can improve the expected outcomes of these techniques in clinical approaches.

摘要

非侵入性脑刺激 (NIBS) 技术可引起皮质脊髓兴奋性 (CSE) 和神经可塑性的变化。这些变化可能会受到不同因素的影响,包括在主要刺激“测试”方案之前进行一次被称为“预刺激”方案的刺激会话。文献表明,预刺激方案可以影响突触后神经元的活动,形成神经元的“历史”,然后改变测试方案对 CSE 的预期影响,这种影响由经颅磁刺激诱导的运动诱发电位的幅度来表示。这种先前的“历史”影响到激活稳定神经元活动所需机制的阈值,使其处于有用的动态范围内。为了研究这种历史和相关的超可塑性机制对人类初级运动皮层 (M1) 的影响,成功地采用了预刺激-测试方案。本综述纳入了 32 项研究,旨在调查不同的预刺激方案如何影响健康个体中测试方案对 CSE 的诱导作用。结果表明,如果突触活动的“历史”高到足以移动阈值,则测试方案的预期效果将相反。这种效果的反转受自稳态机制调节。相反,如果上述“历史”不足以移动阈值,则测试方案的效果不会相反,并且在大多数情况下,我们只会经历持久效果的延长。这种效果的延长是由非自稳态机制介导的。因此,基于预刺激-测试方案的特征及其之间的间隔,预刺激-测试方案的预期结果将不同。此外,这些发现可以揭示 NIBS 中涉及的超可塑性的不同机制。这有助于我们了解如何在临床方法中改善这些技术的预期效果。

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