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帕金森病对猴子初级运动区和辅助运动区单个神经元活动的影响不同:在线性和非线性领域的研究。

Parkinsonism Differently Affects the Single Neuronal Activity in the Primary and Supplementary Motor Areas in Monkeys: An Investigation in Linear and Nonlinear Domains.

机构信息

Department of Neurology, University South Alabama, 307 University Blvd, Mobile, AL 36688, USA.

Division of System Neurophysiology, National Institute for Physiological Sciences and Department of Physiological Sciences, SOKENDAI (Graduate University for Advanced Studies), Okazaki, Aichi 444-8585, Japan.

出版信息

Int J Neural Syst. 2020 Feb;30(2):2050010. doi: 10.1142/S0129065720500100. Epub 2020 Feb 5.

Abstract

The changes in neuronal firing activity in the primary motor cortex (M1) and supplementary motor area (SMA) were compared in monkeys rendered parkinsonian by treatment with 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine. The neuronal dynamic was characterized using mathematical tools defined in different frameworks (rate, oscillations or complex patterns). Then, and for each cortical area, multivariate and discriminate analyses were further performed on these features to identify those important to differentiate between the normal and the pathological neuronal activity. Our results show a different order in the importance of the features to discriminate the pathological state in each cortical area which suggests that the M1 and the SMA exhibit dissimilarities in their neuronal alterations induced by parkinsonism. Our findings highlight the need for multiple mathematical frameworks to best characterize the pathological neuronal activity related to parkinsonism. Future translational studies are warranted to investigate the causal relationships between cortical region-specificities, dominant pathological hallmarks and symptoms.

摘要

研究比较了经 1-甲基-4-苯基-1,2,3,6-四氢吡啶处理导致帕金森病的猴子的初级运动皮层(M1)和辅助运动区(SMA)中神经元放电活动的变化。使用在不同框架中定义的数学工具(率、振荡或复杂模式)来描述神经元的动态。然后,针对每个皮质区域,对这些特征进行多元和判别分析,以确定那些对区分正常和病理神经元活动重要的特征。我们的结果表明,在区分每个皮质区域病理状态的特征的重要性方面存在不同的顺序,这表明 M1 和 SMA 在帕金森病引起的神经元改变方面存在差异。我们的发现强调了需要使用多个数学框架来最好地描述与帕金森病相关的病理性神经元活动。未来的转化研究需要调查皮质区域特异性、主要病理特征和症状之间的因果关系。

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