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首页> 外文期刊>Experimental Brain Research >The effect of cortical repetitive transcranial magnetic stimulation on cognitive event-related potentials recorded in the subthalamic nucleus.
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The effect of cortical repetitive transcranial magnetic stimulation on cognitive event-related potentials recorded in the subthalamic nucleus.

机译:皮层重复经颅磁刺激对丘脑下核中认知事件相关电位的影响。

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摘要

We studied whether the cognitive event-related potentials (ERP) in the subthalamic nucleus (STN) are modified by the modulation of the inferior frontal cortex (IFC) and the dorsolateral prefrontal cortex (DLPFC) with repetitive transcranial magnetic stimulation (rTMS). Eighteen patients with Parkinson's disease who had been implanted with a deep brain stimulation (DBS) electrode were included in the study. The ERPs were recorded from the DBS electrode before and after the rTMS (1 Hz, 600 pulses) over either the right IFC (10 patients) or the right DLPFC (8 patients). The ERPs were generated by auditory stimuli. rTMS over the right IFC led to a shortening of ERP latencies from 277 +/- 14 ms (SD) to 252 +/- 19 ms in the standard protocol and from 296 +/- 17 ms to 270 +/- 20 ms in the protocol modified by a higher load of executive functions (both P < 0.01). The application of rTMS over the DLPFC and the sham stimulation over the IFC showed no significant changes. The shortening of ERP latency after rTMS over the right IFC reflected the increase in the speed of the cognitive process. The rTMS modulation of activity of the DLPFC did not influence the ERP. Connections (the IFC-STN hyperdirect pathway) with the cortex that bypass the BG-thalamocortical circuitries could explain the position of the STN in the processing of executive functions.
机译:我们研究了通过反复经颅磁刺激(rTMS)对下额叶皮层(IFC)和背外侧前额叶皮层(DLPFC)的调节是否改变了丘脑底核(STN)中与认知事件相关的电位(ERP)。这项研究包括了18名帕金森氏病患者,他们植入了深部脑刺激(DBS)电极。在正确的IFC(10例患者)或正确的DLPFC(8例)的rTMS(1 Hz,600脉冲)之前和之后,从DBS电极记录ERP。 ERPs是由听觉刺激产生的。正确的IFC上的rTMS导致ERP延迟从标准协议中的277 +/- 14 ms(SD)缩短到252 +/- 19 ms,而在标准协议中从296 +/- 17 ms缩短到270 +/- 20 ms。协议通过更高的执行功能负载进行修改(均为P <0.01)。 rTMS在DLPFC上的应用和假刺激在IFC上的应用均未显示明显变化。正确的IFC上的rTMS之后,ERP延迟的缩短反映了认知过程速度的增加。 DLPFC活动的rTMS调制不影响ERP。绕过BG-丘脑皮质回路的皮质连接(IFC-STN超直接通路)可以解释STN在执行功能处理中的位置。

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