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采用三极同心环电极经颅聚焦刺激实现大鼠非侵入性自动癫痫控制系统。

Toward a noninvasive automatic seizure control system in rats with transcranial focal stimulations via tripolar concentric ring electrodes.

机构信息

Department of Electrical, Computer, and Biomedical Engineering, University of Rhode Island, Kingston, RI 02881, USA.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2012 Jul;20(4):422-31. doi: 10.1109/TNSRE.2012.2197865.

Abstract

Epilepsy affects approximately 1% of the world population. Antiepileptic drugs are ineffective in approximately 30% of patients and have side effects. We are developing a noninvasive, or minimally invasive, transcranial focal electrical stimulation system through our novel tripolar concentric ring electrodes to control seizures. In this study, we demonstrate feasibility of an automatic seizure control system in rats with pentylenetetrazole-induced seizures through single and multiple stimulations. These stimulations are automatically triggered by a real-time electrographic seizure activity detector based on a disjunctive combination of detections from a cumulative sum algorithm and a generalized likelihood ratio test. An average seizure onset detection accuracy of 76.14% was obtained for the test set (n = 13). Detection of electrographic seizure activity was accomplished in advance of the early behavioral seizure activity in 76.92% of the cases. Automatically triggered stimulation significantly (p = 0.001) reduced the electrographic seizure activity power in the once stimulated group compared to controls in 70% of the cases. To the best of our knowledge this is the first closed-loop automatic seizure control system based on noninvasive electrical brain stimulation using tripolar concentric ring electrode electrographic seizure activity as feedback.

摘要

癫痫影响全球约 1%的人口。大约 30%的患者对抗癫痫药物无效,并且存在副作用。我们正在通过新型三极同心环电极开发一种非侵入性或微创性的经颅聚焦电刺激系统来控制癫痫发作。在这项研究中,我们通过单次和多次刺激证明了基于累积和算法和广义似然比检验的离散组合的实时脑电图发作活动检测器的自动癫痫控制系统在戊四氮诱导的癫痫发作大鼠中的可行性。对于测试集(n = 13),获得了平均癫痫发作起始检测准确率为 76.14%。在 76.92%的情况下,在早期行为性癫痫发作之前,检测到了脑电图发作活动。在 70%的情况下,与对照组相比,自动触发刺激显著(p = 0.001)降低了单次刺激组的脑电图发作活动功率。据我们所知,这是第一个基于三极同心环电极脑电图发作活动作为反馈的无创性脑电刺激的闭环自动癫痫控制系统。

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