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Using Point Process Models to Compare Neural Spiking Activity in the Subthalamic Nucleus of Parkinsons Patients and a Healthy Primate

机译:利用点过程模型比较帕金森病患者丘脑底核和健康灵长类动物的神经刺激活动

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摘要

Placement of deep brain stimulating electrodes in the subthalamic nucleus (STN) to treat Parkinson's disease (PD) also allows the recording of single neuron spiking activity. Analyses of these unique data offer an important opportunity to better understand the pathophysiology of PD. Despite the point process nature of PD neural spiking activity, point process methods are rarely used to analyze these recordings. We develop a point process representation of PD neural spiking activity using a generalized linear model to describe long- and short-term temporal dependencies in the spiking activity of 28 STN neurons from seven PD patients and 35 neurons from one healthy primate (surrogate control) recorded, while the subjects executed a directed-hand movement task. We used the point process model to characterize each neuron's bursting, oscillatory, and directional tuning properties during key periods in the task trial. Relative to the control neurons, the PD neurons showed increased bursting, increased 10-30 Hz oscillations, and increased fluctuations in directional tuning. These features, which traditional methods failed to capture accurately, were efficiently summarized in a single model in the point process analysis of each neuron. The point process framework suggests a useful approach for developing quantitative neural correlates that may be related directly to the movement and behavioral disorders characteristic of PD.
机译:将深层脑刺激电极放置在丘脑下核(STN)中以治疗帕金森氏病(PD),也可以记录单个神经元的尖峰活动。这些独特数据的分析为更好地了解PD的病理生理学提供了重要的机会。尽管PD神经峰值活动具有点过程性质,但很少使用点过程方法来分析这些记录。我们使用广义线性模型开发了PD神经峰值活动的点过程表示,以描述记录的7名PD患者的28个STN神经元和一名健康灵长类动物(替代对照)的35个神经元的峰值活动的长期和短期时间依赖性,而受试者则执行了定向移动任务。在任务试验的关键时期,我们使用点过程模型来表征每个神经元的爆发,振荡和方向性调整特性。相对于对照神经元,PD神经元显示出增加的爆发,增加的10-30 Hz振荡以及方向调整的波动。传统方法无法准确捕获的这些功能已在每个神经元的点过程分析中的单个模型中得到了有效总结。点过程框架为开发定量神经相关性提出了一种有用的方法,该定量神经相关性可能与PD的运动和行为障碍特征直接相关。

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