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Dynamic Modeling and Statistical Characterization of Subthalamic Nucleus Neural Activity in Parkinson's Disease Patients

机译:帕金森病患者细胞核核神经活动的动态建模与统计表征

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The neural spiking activity of the Subthalamic Nucleus (STN) is devoted to modulate movement actuation and correct movement disorders (i.e. tremor at rest, rigidity, akynesia and postural instability) in Parkinson's Disease (PD) patients. Moreover, it has been recently revealed that an opportune electrical stimulation, called Deep Brain Stimulation (DBS), can annihilate, if associated with the most common L-dopa based pharmacological therapies, PD-related motor disorders. Currently, a great effort is made both in Medicine and Engineering for understanding and modeling in details how the STN works, how PD determines its pathological behavior and how DBS restores the correct motor function. The paper presents a nonlinear, stochastic, continuous-state model describing the global electrical behavior of the STN in PD patients: inspired by the fundamental physiologic features of subthalamic cells, a fictitious vector state is introduced to represent the main dynamics. Its numerical parameters and stochastic properties are chosen by fitting experimental data coming from two PD patients during the surgical implantation of stimulation electrodes in the brain.
机译:帕金森病(Pd)患者(Pd)患者的氨基甲核(STN)的神经尖峰(STN)的神经尖峰活性调节运动致动和正确的运动障碍(即静止,刚性,涂料,姿势不稳定)。此外,它最近据透露,如果与最常见的L-DOPA的药理学疗法,PD相关的电动机障碍有关,可以将叫做深脑刺激(DBS)的适当电刺激。目前,在医学和工程中,在详细信息中,在STN工作中的理解和建模,PD如何确定其病理行为以及DBS如何恢复正确的电机功能。本文介绍了描述PD患者中STN全球电气行为的非线性,随机的连续状态模型:引入了亚饱和细胞的基本生理特征的启发,引入了虚构的载体状态来代表主要动态。通过拟合来自两个PD患者的实验数据在脑内刺激电极的外科植入过程中拟合来自两个PD患者的实验数据来选择其数值参数和随机性质。

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