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首页> 外文期刊>Neural Systems and Rehabilitation Engineering, IEEE Transactions on >Characterizing Motor and Cognitive Effects Associated With Deep Brain Stimulation in the GPi of Hemi-Parkinsonian Rats
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Characterizing Motor and Cognitive Effects Associated With Deep Brain Stimulation in the GPi of Hemi-Parkinsonian Rats

机译:表征与半帕金森氏大鼠的GPi的深部脑刺激相关的运动和认知作用。

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摘要

The globus pallidus internus (GPi) is the main output nucleus of the basal ganglia, which is associated with a variety of functions including motor performance and cognition. The GPi is one of the primary targets of deep brain stimulation (DBS) in patients with movement disorders. However, the therapeutic mechanism of GPi-DBS is poorly understood and rodent models have not been characterized. Cognitive side effects, such as impulsivity and depression, of DBS treatment for Parkinson's disease are known, but their relationship to the efficacy of the treatment is not well explained. The goal of this study is to illuminate the effects of GPi-DBS on both motor and cognitive function in a hemi-Parkinsonian rat model. In this work, we study the motor performance of the rodents in multiple behaviors, as well as of impulsivity and depression, and consider the relationship between these behavioral variables and the stimulation frequency of the DBS signal. For the first time, the connection is directly established between stimulating the GPi, motor performance and cognition is directly established in the hemi-Parkinsonian rodent model.
机译:苍白球(GPi)是基底神经节的主要输出核,它与多种功能有关,包括运动表现和认知。 GPi是运动障碍患者深部脑刺激(DBS)的主要目标之一。但是,对GPi-DBS的治疗机制了解甚少,并且尚未鉴定啮齿动物模型。 DBS治疗帕金森氏病的认知副作用(如冲动性和抑郁性)是已知的,但尚未很好地解释它们与治疗效果的关系。这项研究的目的是阐明GPi-DBS对半帕金森病大鼠模型的运动和认知功能的影响。在这项工作中,我们研究了啮齿动物在多种行为中的运动性能,以及冲动性和抑郁性,并考虑了这些行为变量与DBS信号的刺激频率之间的关系。第一次,在半自体帕金森病啮齿动物模型中,直接建立了在刺激GPi,运动性能和认知之间的联系。

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