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Towards Input Output Non-Linear Modeling of the Subthalamic Nucleus using Intranuclear Recordings

机译:使用核内记录对亚粒子核的输入输出非线性建模

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The subthalamic nucleus (STN) is a pivotal point of the basal ganglia function and dysfunction. Its crucial engagement with the neurosurgical procedure of deep brain stimulation (DBS) that alleviates medically intractable Parkinsonian tremor augments the need to refine our current understanding of it. Intranuclear recordings, received from a patient during surgery, are processed to acquire both local field potentials (LFPs) and the spiking activity of the cells inside the nucleus. Under the physiologically justified assumption that the LFPs constitute the input of the cells inside the nucleus whereas the spikes are the output, an input output system analysis of the STN is straightforward. Primary results show that a non-linear Hammerstein-Wiener model is able to simulate the STN output with a reasonable accuracy.
机译:亚粒子核(STN)是基底神经节函数和功能障碍的枢轴点。它与深脑刺激的神经外科手术(DBS)的关键啮合,减轻了医学上棘手的Parkinsonian震颤增强了改进我们对其的理解的必要性。从手术期间从患者接受的核核记录被加工以获取局部场势(LFP)和细胞内细胞的尖峰活动。在生理学上的假设下,LFP构成核内部的电池的输入,而尖峰是输出,则STN的输入输出系统分析是简单的。主要结果表明,非线性Hammerstein-Wiener模型能够以合理的准确性模拟STN输出。

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