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Non-invasive brain stimulation as a tool to study cerebellar-M1 interactions in humans

机译:无创性脑刺激作为研究人类小脑M1相互作用的工具

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The recent development of non-invasive brain stimulation techniques such as transcranial magnetic stimulation (TMS) has allowed the non-invasive assessment of cerebellar function in humans. Early studies showed that cerebellar activity, as reflected in the excitability of the dentate-thalamo-cortical pathway, can be assessed with paired stimulation of the cerebellum and the primary motor cortex (M1) (cerebellar inhibition of motor cortex, CBI). Following this, many attempts have been made, using techniques such as repetitive TMS and transcranial electrical stimulation (TES), to modulate the activity of the cerebellum and the dentate-thalamo-cortical output, and measure their impact on M1 activity. The present article reviews literature concerned with the impact of non-invasive stimulation of cerebellum on M1 measures of excitability and “plasticity” in both healthy and clinical populations. The main conclusion from the 27 reviewed articles is that the effects of cerebellar “plasticity” protocols on M1 activity are generally inconsistent. Nevertheless, two measurements showed relatively reproducible effects in healthy individuals: reduced response of M1 to sensorimotor “plasticity” (paired-associative stimulation, PAS) and reduced CBI following repetitive TMS and TES. We discuss current challenges, such as the low power of reviewed studies, variability in stimulation parameters employed and lack of understanding of physiological mechanisms underlying CBI.
机译:非侵入性脑刺激技术(例如经颅磁刺激(TMS))的最新发展已允许对人类小脑功能进行非侵入性评估。早期研究表明,小脑活动反映在齿状-丘脑-皮质途径的兴奋性上,可以通过对小脑和初级运动皮层(M1)的配对刺激(运动皮层的小脑抑制,CBI)来评估。此后,使用重复性TMS和经颅电刺激(TES)等技术进行了许多尝试,以调节小脑和丘脑-丘脑-皮质输出的活性,并测量它们对M1活性的影响。本文回顾了有关无创刺激小脑对健康和临床人群中M1兴奋性和“可塑性”测量值的影响的文献。 27篇综述文章的主要结论是,小脑“可塑性”方案对M1活性的影响通常是不一致的。尽管如此,两项测量结果显示出在健康个体中相对可重现的效果:M1对感觉运动“可塑性”的响应减少(配对相关刺激,PAS),以及重复TMS和TES后CBI降低。我们讨论了当前的挑战,例如综述研究的低效性,所采用的刺激参数的可变性以及对CBI潜在生理机制的缺乏了解。

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