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抽动秽语综合征中的异常神经元活动及其通过深部脑刺激进行的调节。

Abnormal neuronal activity in Tourette syndrome and its modulation using deep brain stimulation.

作者信息

Israelashvili Michal, Loewenstern Yocheved, Bar-Gad Izhar

机构信息

The Leslie & Susan Goldschmied (Gonda) Multidisciplinary Brain Research Center, Bar-Ilan University, Ramat-Gan, Israel.

The Leslie & Susan Goldschmied (Gonda) Multidisciplinary Brain Research Center, Bar-Ilan University, Ramat-Gan, Israel

出版信息

J Neurophysiol. 2015 Jul;114(1):6-20. doi: 10.1152/jn.00277.2015. Epub 2015 Apr 29.

Abstract

Tourette syndrome (TS) is a common childhood-onset disorder characterized by motor and vocal tics that are typically accompanied by a multitude of comorbid symptoms. Pharmacological treatment options are limited, which has led to the exploration of deep brain stimulation (DBS) as a possible treatment for severe cases. Multiple lines of evidence have linked TS with abnormalities in the motor and limbic cortico-basal ganglia (CBG) pathways. Neurophysiological data have only recently started to slowly accumulate from multiple sources: noninvasive imaging and electrophysiological techniques, invasive electrophysiological recordings in TS patients undergoing DBS implantation surgery, and animal models of the disorder. These converging sources point to system-level physiological changes throughout the CBG pathway, including both general altered baseline neuronal activity patterns and specific tic-related activity. DBS has been applied to different regions along the motor and limbic pathways, primarily to the globus pallidus internus, thalamic nuclei, and nucleus accumbens. In line with the findings that also draw on the more abundant application of DBS to Parkinson's disease, this stimulation is assumed to result in changes in the neuronal firing patterns and the passage of information through the stimulated nuclei. We present an overview of recent experimental findings on abnormal neuronal activity associated with TS and the changes in this activity following DBS. These findings are then discussed in the context of current models of CBG function in the normal state, during TS, and finally in the wider context of DBS in CBG-related disorders.

摘要

图雷特综合征(TS)是一种常见的儿童期起病的疾病,其特征为运动和发声抽动,通常伴有多种共病症状。药物治疗选择有限,这促使人们探索深部脑刺激(DBS)作为重症病例的一种可能治疗方法。多条证据表明TS与运动和边缘皮质 - 基底神经节(CBG)通路异常有关。神经生理学数据直到最近才开始从多个来源缓慢积累:非侵入性成像和电生理技术、接受DBS植入手术的TS患者的侵入性电生理记录以及该疾病的动物模型。这些汇聚的来源指向CBG通路中系统水平的生理变化,包括普遍改变的基线神经元活动模式和与抽动相关的特定活动。DBS已应用于运动和边缘通路的不同区域,主要是苍白球内侧部、丘脑核团和伏隔核。与DBS在帕金森病中应用更为广泛的研究结果一致,这种刺激被认为会导致神经元放电模式的改变以及信息通过受刺激核团的传递。我们概述了近期关于与TS相关的异常神经元活动以及DBS后这种活动变化的实验结果。然后在正常状态下、TS期间CBG功能的当前模型背景下,最后在CBG相关疾病中DBS的更广泛背景下讨论这些发现。

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Animal models of tic disorders: a translational perspective.抽动障碍的动物模型:转化医学视角
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