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A Smart Biological Signal-Responsive Focal Drug Delivery System for Treatment of Refractory Epilepsy

机译:用于治疗难治性癫痫的智能生物信号响应焦点药物输送系统

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In this paper, we propose a new biological signal-responsive implantable device that triggers direct an anticonvulsive drug into the epileptogenic zone at electrographic seizure onset. We describe the high-performance seizure-onset detection algorithm, low-power circuit technique and focal drug delivery system. The implantable device is composed of a preamplifier, a signal processor, a seizure detector and a micropump. The device records high quality intracerebral electroencephalographic (icEEG) signals using high conductive electrodes and a low noise preamplifier. The recorded signal is processed continuously using low-power technique to detect onset of seizures accurately. The low-power miniaturized micropump is able to deliver sufficient amount of anticonvulsive drug in a short duration (50μL/sec) to epileptogenic zone. The detection algorithm was validated with Matlab tools and a prototype device was assembled with discrete components in a circular (? 40 mm) printed circuit board. The device was validated offline using the icEEG recordings obtained from 3 drug-resistant epilepsy patients. The average seizure detection delay was 10 sec from electrographic seizure onset, well before seizure progression to adjacent functional cortex.
机译:在本文中,我们提出了一个新的生物信号响应植入装置触发直接镇痉药物成电图痉挛发作致痫灶。我们描述了高性能的癫痫发作的检测算法,低功耗电路技术和焦药物递送系统。可植入装置是由一个前置放大器,一个信号处理器,癫痫发作检测器和微型泵的。该装置记录高质量脑内使用高导电性的电极和一低噪声前置放大器脑电图(icEEG)信号。所记录的信号是使用低功率技术来准确地检测癫痫发作连续处理。低功率的小型化微型泵能够在很短的持续时间(50μL/秒)到痫区递送抗惊厥药物的足够量。检测算法用Matlab的工具验证和原型设备是在一个圆形(?40毫米)的印刷电路板用分立元件组装。该装置是离线使用从3耐药性癫痫患者获得的icEEG记录验证。平均癫痫发作检测延迟是从电图发作起始10秒,癫痫发作发展为相邻的功能皮质之前。

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