一种用于癫痫发作检测和神经刺激的低功率植入式装置

M. T. Salam, D. Nguyen, M. Sawan
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引用次数: 18

摘要

在本文中,我们提出了一种低功率闭环神经刺激器(CLNS)的设计,作为难治性部分癫痫患者的辅助治疗。CLNS结合了癫痫发作检测和同步电刺激反馈。该系统以可调增益放大神经信号,检测癫痫低电压快速活动,并产生可编程的刺激电流。所实现的癫痫检测器基于在Matlab工具中验证的检测算法,并使用耐药癫痫患者的脑内脑电图(iEEG)记录进行了测试。放大器、癫痫检测器和电刺激器采用CMOS 0.18 μm工艺实现。通过提出的CMOS构建模块评估iEEG,并在电性癫痫发作后2至3秒给予预定义的癫痫抑制双相电刺激。CLNS的模拟功耗表明,该系统可以在一个纽扣电池上运行8年以上。
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A low-power implantable device for epileptic seizure detection and neurostimulation
In this paper, we present the design of a low-power closed-loop neurostimulator (CLNS) as an adjunctive treatment for patients with refractory partial epilepsy. The CLNS combines epileptic seizure detection with simultaneous electrical stimulation feedback. The system amplifies the neural signal with adjustable gain, detects epileptic low-voltage fast-activity, and generates programmable stimulation currents. The implemented seizure detector is based on a detection algorithm validated in Matlab tools and was tested using intracerebral electroencephalographic (iEEG) recordings from a patient with drug-resistant epilepsy. The amplifier, epileptic-seizure detector and electric stimulator were implemented using CMOS 0.18-μm process. The iEEG were assessed by the proposed CMOS building blocks and the predefined seizure suppression biphasic electrical stimulations were administrated at 2 to 3 sec after electrographical seizure onsets. The simulated power consumption of the CLNS has showed that the system could run on a button cell battery for more than 8 years.
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