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苍白球深部脑刺激调节皮质兴奋性和可塑性。

Pallidal deep brain stimulation modulates cortical excitability and plasticity.

机构信息

Division of Neurology, Department of Medicine, University Health Network, Toronto, Ontario, Canada.

Division of Neurosurgery, Department of Surgery, University of Toronto and Krembil Research Institute, University Health Network, Toronto, Ontario, Canada.

出版信息

Ann Neurol. 2018 Feb;83(2):352-362. doi: 10.1002/ana.25156.

Abstract

OBJECTIVE

Internal globus pallidus (GPi) deep brain stimulation (DBS) relieves symptoms in dystonia patients. However, the physiological effects produced by GPi DBS are not fully understood. In particular, how a single-pulse GPi DBS changes cortical circuits has never been investigated. We studied the modulation of motor cortical excitability and plasticity with single-pulse GPi DBS in dystonia patients with bilateral implantation of GPi DBS.

METHODS

The cortical evoked potentials from DBS were recorded with electroencephalography. Transcranial magnetic stimulation with a conditioning test paired-pulse paradigm was used to investigate the effect of GPi DBS on the primary motor cortex. How GPi DBS might modulate the motor cortical plasticity was tested using a paired associative stimulation paradigm with repetitive pairs of GPi DBS and motor cortical stimulation at specific time intervals.

RESULTS

GPi stimulation produced 2 peaks of cortical evoked potentials with latencies of ∼10 and ∼25 milliseconds in the motor cortical area. Cortical facilitation was observed at ∼10 milliseconds after single-pulse GPi DBS, and cortical inhibition was observed after a ∼25-millisecond interval. Repetitive pairs of GPi stimulation with cortical stimulation at these 2 time intervals produced long-term potentiation-like effects in the motor cortex.

INTERPRETATION

Single-pulse DBS modulates cortical excitability and plasticity at specific time intervals. These effects may be related to the mechanism of action of DBS. Combination of DBS with cortical stimulation with appropriate timing has therapeutic potential and could be explored in the future as a method to enhance the effects of neuromodulation for neurological and psychiatric diseases. Ann Neurol 2018;83:352-362.

摘要

目的

苍白球内侧核(GPi)深部脑刺激(DBS)可缓解肌张力障碍患者的症状。然而,GPi DBS 产生的生理效应尚未完全了解。特别是,单脉冲 GPi DBS 如何改变皮质回路从未被研究过。我们研究了双侧 GPi DBS 植入的肌张力障碍患者中,单脉冲 GPi DBS 对运动皮质兴奋性和可塑性的调制作用。

方法

通过脑电图记录 DBS 引起的皮质诱发电位。使用经颅磁刺激与条件测试成对脉冲范式,研究 GPi DBS 对初级运动皮质的影响。使用重复 GPi DBS 和运动皮质刺激的成对关联刺激范式,在特定时间间隔测试 GPi DBS 如何调节运动皮质的可塑性。

结果

GPi 刺激在运动皮质区产生潜伏期约为 10 和 25 毫秒的 2 个皮质诱发电位峰。在单脉冲 GPi DBS 后约 10 毫秒观察到皮质易化,在约 25 毫秒后观察到皮质抑制。在这 2 个时间间隔内,重复 GPi 刺激与皮质刺激产生类似于长时程增强的运动皮质效应。

结论

单脉冲 DBS 在特定时间间隔调节皮质兴奋性和可塑性。这些效应可能与 DBS 的作用机制有关。结合具有适当定时的皮质刺激的 DBS 具有治疗潜力,并可作为一种增强神经调节对神经和精神疾病的效果的方法在未来进行探索。

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