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High-Frequency Pallidal Stimulation Disrupts Information Flow through the Pallidum by GABAergic Inhibition

机译:高频苍白球刺激通过GABA能抑制干扰通过苍白球的信息流

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摘要

To elucidate the mechanism of deep brain stimulation (DBS) targeting the internal segment of the globus pallidus (GPi), neuronal activity of the GPi and the external segment of the globus pallidus (GPe) was examined during local electrical microstimulation in normal awake monkeys. Single-pulse stimulation of the GPi evoked brief inhibition in neighboring GPi neurons, which was mediated by GABAA receptors. High-frequency stimulation of the GPi completely inhibited spontaneous firings of GPi neurons by activation of GABAA and GABAB receptors. Local single-pulse stimulation directly excited some GPi neurons. Such directly evoked responses were also inhibited by high-frequency stimulation through GABAA receptors. In contrast to the GPi, single-pulse and high-frequency stimulation of the GPe induced complex responses composed of GABAergic inhibition and glutamatergic excitation in neighboring GPe neurons. Cortically evoked triphasic responses of GPi neurons were completely inhibited during high-frequency GPi stimulation. These findings suggest that GPi-DBS dissociates inputs and outputs in the GPi by intense GABAergic inhibition and disrupts information flow through the GPi.
机译:为了阐明针对苍白球(GPi)内部部分的深部脑刺激(DBS)的机制,在正常清醒的猴子中进行局部电微刺激时,检查了GPi和苍白球(GPe)外部部分的神经元活性。 GPi的单脉冲刺激引起邻近GPi神经元的短暂抑制,这是由GABAA受体介导的。 GPi的高频刺激通过激活GABAA和GABAB受体完全抑制了GPi神经元的自发放电。局部单脉冲刺激直接激发了一些GPi神经元。通过GABAA受体的高频刺激也抑制了这种直接诱发的反应。与GPi相反,GPe的单脉冲和高频刺激在邻近的GPe神经元中诱导了由GABA能抑制和谷氨酸能刺激组成的复杂反应。在高频GPi刺激过程中,完全抑制了GPi神经元的皮质诱发的三相反应。这些发现表明,GPi-DBS通过强烈的GABA能抑制作用分离了GPi中的输入和输出,并破坏了通过GPi的信息流。

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