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一种用于治疗耐药性癫痫的可植入闭环异步药物输送系统。

An implantable closedloop asynchronous drug delivery system for the treatment of refractory epilepsy.

机构信息

Polystim Neurotechnologies Laboratory, École Polytechnique de Montréal, Montréal, QC, Canada.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2012 Jul;20(4):432-42. doi: 10.1109/TNSRE.2012.2189020. Epub 2012 Apr 4.

DOI:10.1109/TNSRE.2012.2189020
PMID:22491131
Abstract

In this paper, we present an implantable device for intra-cerebral electroencephalography (icEEG) data acquisition and real-time epileptic seizure detection with simultaneous focal antiepileptic drug injection feedback. This implantable device includes a neural signal amplifier, an asynchronous seizure detector, a drug delivery system (DDS) including a micropump, and a hybrid subdural electrode (HSE). The asynchronous detection algorithm is based on data-dependent analysis and validated with Matlab tools. The detector and DDS have a power saving mode. The HSE contacts are made of Platinum (Pt) encapsulated with polydimethylsiloxane (PDMS). Given the heterogeneity of electrographic seizure signals and seizure suppression threshold, the implantable device provides tunable parameters facility through an external transmitter to adapt to each individual's neurophysiology prior to clinical deployment. The proposed detector and DDS were assembled in Ø 50 mm and Ø 30 mm circular printed circuit boards, respectively. The detector was validated using icEEG recordings of seven patients who had previously undergone an intracranial investigation for epilepsy surgery. The triggering of the DDS was tested and a predefined seizure suppression dose was delivered ~16 s after electrographical seizure onsets. The device's power consumption was reduced by 12% in active mode and 49% in power saving mode compared to similar seizure detection algorithms implemented with synchronous architecture.

摘要

在本文中,我们提出了一种可植入的设备,用于颅内脑电图(icEEG)数据采集和实时癫痫发作检测,同时具有焦点抗癫痫药物注射反馈。该植入式设备包括神经信号放大器、异步发作检测器、药物输送系统(DDS),包括微泵和混合硬膜下电极(HSE)。异步检测算法基于数据依赖分析,并使用 Matlab 工具进行验证。检测器和 DDS 具有省电模式。HSE 触点由包裹在聚二甲基硅氧烷(PDMS)中的铂(Pt)制成。鉴于电描记发作信号和发作抑制阈值的异质性,该植入式设备通过外部发射器提供可调参数设施,以便在临床部署前适应每个个体的神经生理学。所提出的检测器和 DDS 分别组装在Ø 50 毫米和Ø 30 毫米圆形印刷电路板上。使用曾因癫痫手术而接受颅内研究的七名患者的 icEEG 记录对检测器进行了验证。测试了 DDS 的触发,并在电描记发作开始后约 16 秒输送了预定的发作抑制剂量。与使用同步架构实现的类似癫痫检测算法相比,该设备在主动模式下的功耗降低了 12%,在省电模式下降低了 49%。

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