...
首页> 外文期刊>Emerging and Selected Topics in Circuits and Systems, IEEE Journal on >An Implantable Seizure-Onset Detector Based on a Dual-Path Single-Window Count-Based Technique for Closed-Loop Applications
【24h】

An Implantable Seizure-Onset Detector Based on a Dual-Path Single-Window Count-Based Technique for Closed-Loop Applications

机译:基于双路径单窗口计数的闭环应用的植入性癫痫发作探测器

获取原文
获取原文并翻译 | 示例

摘要

In this paper, we present a single voltage-window count-based seizure onset detection algorithm and its associated hardware implementation. The proposed algorithm combines the advantages associated with voltage-window count-based and event-based threshold-voltage detections. The result is an algorithm that is more tolerant to noise, dc offsets, baseline energy variations, and seconds-long nonseizure related sharp activities. In addition, only one parameter (one threshold voltage) needs to be optimized per patient, and for that, only one seizure per patient is used for training, making the process of optimizing the patient-specific detector a simple task. The time evaluation period when counting is performed is kept constant across all patients studied, and is fixed at 5 s in this work. A novel dual path digital signal processing unit in the back-end of the detector is included and is shown to decrease the detection latency by 14%. Experimental results on a printed circuit board using commercially available discrete components confirm the correct functionality of the proposed detector. The proposed algorithm achieves 100% sensitivity, 10.7 s average detection delay, and a single false alarm when evaluated on a total of 25 seizures and 24 nonseizure datasets of intracerebral electroencephalographic (icEEG) recordings from five patients from the epilepsy monitoring unit of Notre-Dame Hospital in Montréal. In addition, monolithic integration of the overall system, including bio-amplification and comparison, is also carried out in a TSMC 0.18-$mu$ m complementary metal–oxide–semiconductor technology. Simulations show that a static power dissipation of 7 $mu {rm W}$, 99% of which is consumed by the front-end bio-amplifier, is achieved, showing the potential of using the proposed seizure detector in a closed-loop b-nain–prosthesis device interface for seizure control and treatment.
机译:在本文中,我们提出了一种基于单个电压窗口计数的癫痫发作检测算法及其相关的硬件实现。所提出的算法结合了基于电压窗口计数和基于事件的阈值电压检测的优势。结果是产生了一种对噪声,直流偏移,基线能量变化以及几秒钟的与非癫痫发作相关的剧烈活动更宽容的算法。此外,每位患者仅需要优化一个参数(一个阈值电压),为此,每位患者仅需癫痫发作一次即可进行训练,这使得优化针对患者的检测器的过程变得简单。在所有研究的患者中,进行计数的时间评估周期保持不变,并且在这项工作中固定为5 s。检测器后端包括一个新颖的双路径数字信号处理单元,该单元显示出可将检测延迟降低14%。使用市售分立元件的印刷电路板上的实验结果证实了所提出检测器的正确功能。当对来自Notre-Dame癫痫监测单元的5名患者的总共25次发作和24次非发作性脑电图(icEEG)记录进行评估时,所提出的算法可实现100%的灵敏度,10.7 s的平均检测延迟和单个错误警报蒙特利尔医院。此外,整个系统的单片集成,包括生物放大和比较,也采用台积电0.18-μm互补金属-氧化物-半导体技术进行。仿真表明,实现了7 $ mu {rm W} $的静态功耗,其中有99%的能量被前端生物放大器消耗,表明在闭环b中使用拟议的癫痫发作检测器的潜力-假肢设备接口,用于癫痫发作控制和治疗。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号