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A Thalamo-Cortex Microcircuit Model of Beta Oscillations in the Parkinsonian Motor Cortex*

机译:Parkinsonian Motor Cortex中的Beta振荡的Thalamo-Cortex微电路模型*

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Exaggerated beta oscillations (~13-30 Hz) observed in the cortical areas of the brain is one of the characteristics of disrupted information flow in the primary motor cortex in Parkinson’s disease (PD). However, the mechanism underlying the generation of these enhanced beta rhythms remains unclear. The thalamo-cortex microcircuit (TCM) contains reciprocal synaptic connections that generate low frequency oscillations in the microcircuit in healthy conditions. Recent studies suggest that alterations in synaptic connections both within and between the cortex and thalamus play a critical role in the generation of pathological beta rhythms in PD. In this study, we examine this hypothesis in a spiking neuronal network model of the TCM. The model is compared and validated against neural firing patterns recorded in rodent models of PD from the literature.
机译:在大脑的皮质区域观察到夸张的β振荡(〜13-30Hz)是帕金森病(PD)中初级电机皮质中断信息流动的特征之一。然而,所以产生这些增强型β节奏的机制仍不清楚。 Thalamo-Cortex Microcircuit(TCM)含有在健康条件下在微电路中产生低频振荡的互易突触连接。最近的研究表明,皮质和丘脑之间和之间的突触连接中的改变在PD中的病理β节奏中发挥着关键作用。在这项研究中,我们在TCM的尖刺神经元网络模型中检查了这一假设。比较模型,并针对从文献中PD的啮齿动物模型记录的神经烧制模式验证。

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