The in vivo reduction of afferent facilitation induced by low frequency electrical stimulation of the motor cortex is antagonized by cathodal direct current stimulation of the cerebellum.

Q3 Medicine Cerebellum and Ataxias Pub Date : 2016-08-30 eCollection Date: 2016-01-01 DOI:10.1186/s40673-016-0053-3
Nordeyn Oulad Ben Taib, Mario Manto
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引用次数: 9

Abstract

Background: Low-frequency electrical stimulation to the motor cortex (LFSMC) depresses the excitability of motor circuits by long-term depression (LTD)-like effects. The interactions between LFSMC and cathodal direct current stimulation (cDCS) over the cerebellum are unknown.

Methods: We assessed the corticomotor responses and the afferent facilitation of corticomotor responses during a conditioning paradigm in anaesthetized rats. We applied LFSMC at a frequency of 1 Hz and a combination of LFSMC with cDCS.

Results: LFSMC significantly depressed both the corticomotor responses and the afferent facilitation of corticomotor responses. Simultaneous application of cDCS over the cerebellum antagonized the depression of corticomotor responses and cancelled the depression of the afferent facilitation.

Conclusion: Our results demonstrate that cDCS of the cerebellum is a potent modulator the inhibition of the motor circuits induced by LFSMC applied in vivo. These results expand our understanding of the effects of cerebellar DCS on motor commands and open novel applications for a cerebellar remote control of LFSMC-induced neuroplasticity. We suggest that the cerebellum acts as a neuronal machine supervising not only long-term potentiation (LTP)-like effects, but also LTD-like effects in the motor cortex, two mechanisms which underlie cerebello-cerebral interactions and the cerebellar control of remote plasticity. Implications for clinical ataxiology are discussed.

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低频电刺激运动皮层引起的传入便利化的体内降低被小脑的阴极直流电刺激拮抗。
背景:低频电刺激运动皮层(LFSMC)通过长期抑制(LTD)样效应抑制运动回路的兴奋性。LFSMC与小脑阴极直流电刺激(cDCS)之间的相互作用尚不清楚。方法:观察麻醉大鼠在条件反射模式下的皮质运动反应和皮质运动反应的传入促进。我们以1hz的频率应用LFSMC,并将LFSMC与cDCS结合使用。结果:LFSMC显著抑制皮质运动反应和皮质运动的传入促进。同时在小脑上应用cDCS可拮抗皮质运动反应的抑制,并消除传入促进的抑制。结论:小脑cDCS对LFSMC诱导的运动回路抑制具有有效的调节作用。这些结果扩大了我们对小脑DCS对运动指令影响的理解,并为小脑远程控制lfsmc诱导的神经可塑性开辟了新的应用。我们认为,小脑作为一个神经元机器,不仅监督长时程增强(LTP)样效应,还监督运动皮层的长时程增强(LTP)样效应,这两种机制是小脑相互作用和小脑远程可塑性控制的基础。对临床共济失调的意义进行了讨论。
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Cerebellum and Ataxias
Cerebellum and Ataxias Medicine-Neurology (clinical)
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