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22.7 A Programmable Wireless EEG Monitoring SoC with Open/Closed-Loop Optogenetic and Electrical Stimulation for Epilepsy Control

机译:22.7具有用于癫痫控制的开/闭环光遗传学和电刺激的可编程无线EEG监视SoC

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The number of studies on closed-loop detection and electrical stimulation systems [1]-[2] for efficient control of neurological disorders is increasing, because recent clinical studies have shown their efficiency and usefulness in symptom suppression. Electrical stimulation can produce enough stimulation to affect a large range of nerves. However, all nerves near the stimulus are excited and hurt, and over time, currents start to exceed acceptable limits. Therefore, optogenetic stimulation [3]-[4] has become compelling in recent years due to several advantages: (1) no artificial noise on the EEG; (2) ability to stimulate specific nerves; and (3) no injurious effects on nerves. In this study, a wireless programmable stimulating system-on-chip (WPSSoC) is reported that provides wireless open/closed-loop optogenetic and electrical stimulation to improve treatment for epilepsy suppression. The system is demonstrated on programmable stimulation parameters wirelessly controlled by a software Graphical User Interface (GUI) on a computer. Moreover, an animal experiment conducted on optogenetic tissue was successful, thereby demonstrating that the nerve injury on optogenetic stimulation is lower than that of electrical stimulation.
机译:闭环检测和电刺激系统的研究数量[1] - [2]用于有效控制神经系统障碍的增加,因为最近的临床研究表明了它们的效率和有用性抑制。电刺激可以产生足够的刺激以影响大量神经。然而,刺激附近的所有神经都是兴奋和伤害,随着时间的推移,电流开始超过可接受的限制。因此,近年来,近年来,近年来,近年来的致敏刺激[3] - [4]:(1)脑电图中没有人工噪音; (2)刺激特定神经的能力; (3)对神经没有伤害。在本研究中,报告了一种无线可编程刺激系统(WPSSOC),提供了无线开放/闭环致肌动态和电刺激,以改善癫痫抑制的治疗。该系统是通过计算机上的软件图形用户界面(GUI)无线控制的可编程刺激参数上的。此外,对致硫型组织进行的动物实验是成功的,从而证明了神经损伤对致敏刺激的损伤低于电刺激的神经损伤。

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