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设计用于癫痫抑制的患者特异性最佳神经刺激模式。

Designing Patient-Specific Optimal Neurostimulation Patterns for Seizure Suppression.

作者信息

Sandler Roman A, Geng Kunling, Song Dong, Hampson Robert E, Witcher Mark R, Deadwyler Sam A, Berger Theodore W, Marmarelis Vasilis Z

机构信息

Department of Biomedical Engineering, University of Southern California, Los Angeles, CA 90089, U.S.A.

Department of Physiology and Pharmacology, Wake Forest University, Winston-Salem, NC 27109, U.S.A.

出版信息

Neural Comput. 2018 May;30(5):1180-1208. doi: 10.1162/NECO_a_01075. Epub 2018 Mar 22.

Abstract

Neurostimulation is a promising therapy for abating epileptic seizures. However, it is extremely difficult to identify optimal stimulation patterns experimentally. In this study, human recordings are used to develop a functional 24 neuron network statistical model of hippocampal connectivity and dynamics. Spontaneous seizure-like activity is induced in silico in this reconstructed neuronal network. The network is then used as a testbed to design and validate a wide range of neurostimulation patterns. Commonly used periodic trains were not able to permanently abate seizures at any frequency. A simulated annealing global optimization algorithm was then used to identify an optimal stimulation pattern, which successfully abated 92% of seizures. Finally, in a fully responsive, or closed-loop, neurostimulation paradigm, the optimal stimulation successfully prevented the network from entering the seizure state. We propose that the framework presented here for algorithmically identifying patient-specific neurostimulation patterns can greatly increase the efficacy of neurostimulation devices for seizures.

摘要

神经刺激是一种有前景的治疗癫痫发作的方法。然而,通过实验确定最佳刺激模式极其困难。在本研究中,利用人体记录数据建立了一个具有功能的24神经元网络统计模型,用于模拟海马体的连接性和动力学。在这个重建的神经元网络中通过计算机模拟诱发类似自发癫痫发作的活动。然后将该网络用作试验台,以设计和验证各种神经刺激模式。常用的周期性脉冲串在任何频率下都无法永久抑制癫痫发作。随后使用模拟退火全局优化算法来确定最佳刺激模式,该模式成功抑制了92%的癫痫发作。最后,在完全响应或闭环神经刺激范式中,最佳刺激成功地防止了网络进入癫痫发作状态。我们提出,这里介绍的用于通过算法识别患者特异性神经刺激模式的框架可以大大提高神经刺激设备治疗癫痫的疗效。

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