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首页> 外文期刊>Cerebral cortex >Functional Alteration of Cerebello-Cerebral Coupling in an Experimental Mouse Model of Parkinson's Disease
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Functional Alteration of Cerebello-Cerebral Coupling in an Experimental Mouse Model of Parkinson's Disease

机译:帕金森病实验小鼠模型中小脑脑耦合的功能改变

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摘要

In Parkinson's disease, the degeneration of the midbrain dopaminergic neurons is consistently associated with modified metabolic activity in the cerebellum. Here we examined the functional reorganization taking place in the cerebello-cerebral circuit in a murine model of Parkinson's disease with 6-OHDA lesion of midbrain dopaminergic neurons. Cerebellar optogenetic stimulations evoked similar movements in control and lesioned mice, suggesting a normal coupling of cerebellum to the motor effectors after the lesion. In freely moving animals, the firing rate in the primary motor cortex was decreased after the lesion, while cerebellar nuclei neurons showed an increased firing rate. This increase may result from reduced inhibitory Purkinje cells inputs, since a population of slow and irregular Purkinje cells was observed in the cerebellar hemispheres of lesioned animals. Moreover, cerebellar stimulations generated smaller electrocortical responses in the motor cortex of lesioned animals suggesting a weaker cerebello-cerebral coupling. Overall these results indicate the presence of functional changes in the cerebello-cerebral circuit, but their ability to correct cortical dysfunction may be limited due to functional uncoupling between the cerebellum and cerebral cortex.
机译:在帕金森病中,中亚多巴胺能神经元的变性与细胞中的改性代谢活性始终如一。在这里,我们检查了帕金森病的小鼠模型中发生的功能重组,其中帕金森病的鼠模型,6-Ohda病变的中脑多巴胺能神经元。小脑致致型刺激唤起了对照和损伤小鼠的类似运动,表明病变后小脑对电动机效应的正常偶联。在自由移动的动物中,病变后初级电机皮质中的烧制率降低,而小脑核神经元显示出烧制率增加。由于减少的抑制性尿布细胞输入可能导致这种增加,因为在损伤动物的小脑半球中观察到缓慢和不规则的幼儿细胞群。此外,小脑刺激在损伤的动物的电动机皮质中产生较小的电蚀响应,提出弱的小脑偶联。总体而言,这些结果表明存在的小脑 - 脑电路的功能变化,但是由于小脑和脑皮质之间的功能不偶联,它们可以限制它们纠正皮质功能障碍的能力。

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