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Point Process Modeling Reveals Anatomical Non-Uniform Distribution across the Subthalamic Nucleus in Parkinson's Disease

机译:点过程建模揭示了帕金森病中亚饱和核细胞核的解剖学不均匀分布

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Deep brain stimulation (DBS) is a highly promising therapy for Parkinson's disease (PD). However, most patients do not get full therapeutic benefit from DBS, due to its critical dependence on electrode location in the Subthalamic Nucleus (STN). For this reason, we believe that the development of a novel surgical tool for DBS placement, i.e., an automated intraoperative closed-loop DBS localization system, is essential. In this paper, we analyze single unit spiking activity of 120 neurons in different STN locations collected from 4 PD patients. Specifically, for each neuron, we estimate a point process model (PPM) of the spiking activity for different depths within the STN by which we are able to detect pathological bursting and oscillations. Our results suggest that these signatures are more prominent in the dorsolateral part of the STN. Therefore, accurately placing the DBS electrode in this target may result in maximal therapeutic benefit with less power effort required by DBS. Furthermore, PPMs might be an effective tool for modeling of the STN neuronal activities as a function of location within the STN, which may pave the way towards developing a closed-loop navigation tool for optimal DBS electrode placement
机译:深脑刺激(DBS)是帕金森病(PD)的高度有前途的疗法。然而,由于其对亚粒子核(STN)中的电极位置的临界依赖性,大多数患者没有得到DBS的完全治疗益处。出于这个原因,我们认为,DBS位置,即自动化术闭环DBS定位系统一个新的外科手术工具的发展,是至关重要的。在本文中,我们分析了从4个PD患者收集的不同STN位置中120个神经元的单位单位尖峰活性。具体地,对于每个神经元,我们估计STN内的不同深度的尖峰活动的点处理模型(PPM),我们能够检测到病理破裂和振荡。我们的结果表明,这些签名在STN的背侧部分更加突出。因此,精确地放置在该靶标中的DBS电极可能导致最大治疗益处,并且DB所需的功率较低。此外,PPMS可能是用于在STN内的位置的函数的用于建模STN神经元活动的有效工具,其可以铺平朝向开发闭环导航工具以获得最佳DBS电极放置的方式

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