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Modeling the effects of Deep Brain Stimulation on sensorimotor cortex in normal and MPTP conditions

机译:在正常和MPTP条件下模拟深部脑刺激对感觉运动皮层的影响

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Deep Brain Stimulation (DBS) is an effective surgical therapy for the treatment of movement disorders in Parkinson's disease (PD) and other neurological pathologies. DBS is known to modulate the spiking activity of the neurons within the basal ganglia, but how such modulation impacts the primary sensorimotor cortex is still uncertain. In this study a monkey was stimulated with DBS at several frequencies in the subthalamic nucleus (STN) before and after treatment with 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) to develop PD symptoms, while single unit recordings are simultaneously obtained from the sensorimotor cortex. We exploit such data to develop point-process input-output models of the cortical neurons. Our models describe the effects of stimulation in normal and MPTP conditions and investigate the influence of the stimulation frequency on the neuronal activity. Our models show increased synchronization of the cortical neurons in MPTP vs. normal conditions before stimulation, suggest that STN DBS impacts the cortical activity by antidromically eliciting spikes at the stimulation frequency, and support the hypothesis that high frequency DBS partially masks the effects of thalamo-cortical input.
机译:脑深部刺激(DBS)是一种有效的外科手术疗法,用于治疗帕金森氏病(PD)和其他神经系统疾病的运动障碍。众所周知,DBS可以调节基底神经节内神经元的突波活动,但是这种调节如何影响初级感觉运动皮层仍然不确定。在这项研究中,在用1-甲基-4-苯基-1,2,3,6-四氢吡啶(MPTP)治疗之前和之后,用丘脑膜下丘脑核(STN)的几种频率的猴子刺激猴子出现PD症状,而同时从感觉运动皮层获得单个单位的记录。我们利用这些数据来开发皮层神经元的点过程输入输出模型。我们的模型描述了正常和MPTP条件下的刺激效果,并研究了刺激频率对神经元活动的影响。我们的模型显示,与刺激前相比,MPTP皮质神经元与正常条件下的同步增强,表明STN DBS通过刺激刺激频率下的峰值引起皮层活动,并支持高频DBS部分掩盖了丘脑刺激的假说。皮质输入。

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