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大脑皮层-基底神经节-丘脑模型的分岔分析和势场。

Bifurcation analyses and potential landscapes of a cortex-basal ganglia-thalamus model.

机构信息

School of Mathematical Sciences, Inner Mongolia University, Hohhot, China.

School of Statistics and Mathematics, Inner Mongolia University of Finance and Economics, Hohhot, China.

出版信息

IET Syst Biol. 2021 May;15(3):101-109. doi: 10.1049/syb2.12018. Epub 2021 Apr 16.

Abstract

The dynamics of cortical neuronal activity plays important roles in controlling body movement and is regulated by connection weights between neurons in a cortex-basal ganglia-thalamus (BGCT) loop. Beta-band oscillation of cortical activity is closely associated with the movement disorder of Parkinson's disease, which is caused by an imbalance in the connection weights of direct and indirect pathways in the BGCT loop. In this study, the authors investigate how the dynamics of cortical activity are modulated by connection weights of direct and indirect pathways in the BGCT loop under low dopamine levels through bifurcation analyses and potential landscapes. The results reveal that cortical activity displays rich dynamics under different connection weights, including one, two, or three stable steady states, one or two stable limit cycles, and the coexistence of one stable limit cycle with one stable steady state or two stable ones. For a low dopamine level, cortical activity exhibits oscillation for larger connection weights of direct and indirect pathways. The stability of these stable dynamics is explored by the potential landscapes.

摘要

皮质神经元活动的动力学在控制身体运动中起着重要作用,并且受到皮质-基底神经节-丘脑 (BGCT) 回路中神经元之间的连接权重的调节。皮质活动的β带振荡与帕金森病的运动障碍密切相关,帕金森病是由 BGCT 回路中的直接和间接通路的连接权重失衡引起的。在这项研究中,作者通过分岔分析和势景观研究了在低多巴胺水平下,BGCT 回路中直接和间接通路的连接权重如何调节皮质活动的动力学。结果表明,皮质活动在不同的连接权重下呈现出丰富的动力学,包括一个、两个或三个稳定的平衡点,一个或两个稳定的极限环,以及一个稳定的极限环与一个稳定的平衡点或两个稳定的平衡点共存。对于低多巴胺水平,皮质活动对于直接和间接通路的较大连接权重表现出振荡。通过势景观研究了这些稳定动力学的稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a09/8675854/a7a673ff7354/SYB2-15-101-g003.jpg

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