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Non-invasive modulation reduces repetitive behavior in a rat model through the sensorimotor cortico-striatal circuit

机译:无创调制通过感觉运动皮层-纹状体回路减少了大鼠模型的重复行为

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摘要

Involuntary movements as seen in repetitive disorders such as Tourette Syndrome (TS) results from cortical hyperexcitability that arise due to striato-thalamo-cortical circuit (STC) imbalance. Transcranial direct current stimulation (tDCS) is a stimulation procedure that changes cortical excitability, yet its relevance in repetitive disorders such as TS remains largely unexplored. Here, we employed the dopamine transporter-overexpressing (DAT-tg ) rat model to investigate behavioral and neurobiological effects of frontal tDCS. The outcome of tDCS was pathology dependent, as anodal tDCS decreased repetitive behavior in the DAT-tg rats yet increased it in wild-type ( wt ) rats. Extensive deep brain stimulation (DBS) application and computational modeling assigned the response in DAT-tg rats to the sensorimotor pathway. Neurobiological assessment revealed cortical activity changes and increase in striatal inhibitory properties in the DAT-tg rats. Our findings show that tDCS reduces repetitive behavior in the DAT-tg rat through modulation of the sensorimotor STC circuit. This sets the stage for further investigating the usage of tDCS in repetitive disorders such as TS.
机译:在重复性疾病(例如,抽动秽语综合征(TS))中看到的不自主运动是由于纹状体-丘脑-皮质-皮质回路(STC)不平衡而引起的皮质过度兴奋引起的。经颅直流电刺激(tDCS)是一种刺激程序,可改变皮层兴奋性,但在诸如TS之类的重复性疾病中,其相关性仍未开发。在这里,我们采用了多巴胺转运蛋白过度表达(DAT-tg)大鼠模型来研究额叶tDCS的行为和神经生物学效应。 tDCS的结果与病理有关,因为阳极tDCS减少了DAT-tg大鼠的重复行为,而增加了野生型(wt)大鼠的重复行为。广泛的深部脑刺激(DBS)应用和计算模型将DAT-tg大鼠中的感觉运动通路分配为响应。神经生物学评估显示,DAT-tg大鼠的大脑皮层活性发生变化,纹状体抑制特性增加。我们的发现表明,tDCS通过调节感觉运动STC电路来减少DAT-tg大鼠的重复行为。这为进一步研究tDCS在诸如TS等重复性疾病中的使用奠定了基础。

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