Zhu Xiaohang, Liu Shu, Liu Suyu
School of Sciences, Hangzhou Dianzi University, Hangzhou, 310018 China.
Shenzhen Liushu Clinic, Shenzhen, 518118 China.
Cogn Neurodyn. 2024 Aug;18(4):1849-1860. doi: 10.1007/s11571-023-10048-y. Epub 2023 Dec 23.
There is evidence that the subthalamic nucleus (STN) and globus pallidus pars externa (GPe) involve in the development of Parkinson's disease, a neurodegenerative disorder characterized by motor and non-motor symptoms and loss of dopaminergic neurons in which the error index () in firing patterns is widely used to address the related issues. Whether and how this interaction mechanism of STN and GPe affects in Parkinson's disease is uncertain. To account for this, we propose a kind of basal ganglia-thalamic network model associated with Parkinson's disease coupled with neurons, and investigate the effect of synaptic conductance of STN and GPe on in this network, as well as their internal relationship under as an index. The results show a relationship like a piecewise function between the error index and the slope of the state transition function of synaptic conductance from STN to GPe ( ) and from GPe to STN ( ). And there is an approximate negative correlation between and . Increasing and decreasing can improve the fidelity of thalamus information transmission and alleviate Parkinson's disease effectively. These obtained results can give some theoretical evidence that the abnormal synaptic releases of STN and GPe may be the symptoms of the development of Parkinson's disease, and further enrich the understanding of the pathogenesis and treatment mechanism of Parkinson's disease.
有证据表明,底丘脑核(STN)和苍白球外侧部(GPe)参与帕金森病的发展,帕金森病是一种神经退行性疾病,其特征为运动和非运动症状以及多巴胺能神经元的丧失,其中放电模式中的误差指数()被广泛用于解决相关问题。STN和GPe的这种相互作用机制是否以及如何影响帕金森病中的尚不确定。为了解决这个问题,我们提出了一种与帕金森病相关的基底神经节 - 丘脑网络模型,该模型与神经元耦合,并研究STN和GPe的突触电导对该网络中 的影响,以及以 为指标时它们之间的内在关系。结果表明,误差指数与从STN到GPe()和从GPe到STN()的突触电导状态转移函数的斜率之间存在类似分段函数的关系。并且 与 之间存在近似负相关。增加 和减少 可以提高丘脑信息传递的保真度并有效缓解帕金森病。这些结果可以提供一些理论证据,表明STN和GPe的异常突触释放可能是帕金森病发展的症状,并进一步丰富对帕金森病发病机制和治疗机制的理解。