Investigating the effect of different targets in deep brain stimulation on symptoms of Parkinson's disease using a mean-field model of the basal ganglia-thalamocortical system

A. Nahvi, F. Bahrami
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Abstract

In this paper, we investigated effects of deep brain stimulation (DBS) on Parkinson's disease (PD) when different target sites in the basal ganglia are stimulated. The targets which are investigated are subthalamic nucleus (STN), globus pallidus interna (GPi), and globus pallidus externa (GPe). For this purpose we used a computational model of the basal ganglia-thalamocortical system (BGTCS) with parameters calculated for mean field. This model is able to reproduce both the normal and parkinsonian activities of basal ganglia, thalamus and cortex in a unified structure. Our results suggest that DBS in the STN and GPe could restore the thalamus relay activity, while DBS in the GPi could inhibit it. Our results are compatible with the experimental and the clinical outcomes about the effects of DBS of different targets.
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利用基底神经节-丘脑皮质系统平均场模型研究脑深部刺激不同靶点对帕金森病症状的影响
本文研究了深部脑刺激(DBS)对基底神经节不同靶点的帕金森病(PD)的影响。研究的靶点是丘脑下核(STN)、内苍白球(GPi)和外苍白球(GPe)。为此,我们使用了基底节区-丘脑皮质系统(BGTCS)的计算模型,其参数计算为平均场。该模型能够在一个统一的结构中再现基底节区、丘脑和皮层的正常和帕金森活动。我们的研究结果表明,STN和GPe的DBS可以恢复丘脑中继活动,而GPi的DBS可以抑制它。我们的研究结果与不同靶点DBS治疗效果的实验和临床结果是一致的。
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