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Cerebellar modulation of human associative plasticity

机译:小脑对人类联想可塑性的调节

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摘要

Paired associative stimulation (PAS) is a method commonly used in human studies of motor cortex synaptic plasticity. It involves repeated pairs of electrical stimuli to the median nerve and transcranial magnetic stimulation (TMS) of the motor cortex. If the interval between peripheral and TMS stimulation is around 21–25 ms, corticospinal excitability is increased for the following 30–60 min via a long term potentiation (LTP)-like effect within the primary motor cortex. Previous work has shown that PAS depends on the present and previous levels of activity in cortex, and that it can be modified by motor learning or attention. Here we show that simultaneous transcranial direct current stimulation (TDCS; 2 mA) over the cerebellum can abolish the PAS effect entirely. Surprisingly, the effect is seen when the PAS interval is 25 ms but not when it is 21.5 ms. There are two implications from this work. First, the cerebellum influences PAS effects in motor cortex; second, LTP-like effects of PAS have at least two different mechanisms. The results are relevant for interpretation of pathological changes that have been reported in response to PAS in people with movement disorders and to changes in healthy individuals following exercise or other interventions.
机译:配对联想刺激(PAS)是人类研究运动皮层突触可塑性的一种常用方法。它涉及对正中神经的重复电刺激对和运动皮层的经颅磁刺激(TMS)。如果周围刺激和TMS刺激之间的间隔约为21–25 ms,则在接下来的30–60分钟内,通过初级运动皮层内的长期增强(LTP)效应,皮质脊髓兴奋性会增加。先前的研究表明,PAS取决于皮质中当前和以前的活动水平,并且可以通过运动学习或注意力对其进行修改。在这里,我们显示同时在小脑上经颅直流电刺激(TDCS; 2 mA)可以完全消除PAS效应。令人惊讶的是,当PAS间隔为25 ms时看到的效果,而当其为21.5 ms时则没有。这项工作有两个含义。首先,小脑影响运动皮层的PAS效应。第二,PAS的LTP样效应至少具有两种不同的机制。这些结果与解释运动障碍患者对PAS的反应所报告的病理变化以及运动或其他干预措施后健康个体的变化有关。

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