...
首页> 外文期刊>Biomedical signal processing and control >An optimally designed digital differentiator based preprocessor for R-peak detection in electrocardiogram signal
【24h】

An optimally designed digital differentiator based preprocessor for R-peak detection in electrocardiogram signal

机译:一种优化设计的基于数字微分器的预处理器,用于心电图信号的R峰检测

获取原文
获取原文并翻译 | 示例

摘要

Globally the human death rate is accelerating day by day due to the cardiovascular diseases (CVDs), and it will be elevated shortly. In this scenario, the QRS complex detection of electrocardiogram (ECG) signal is considered as a simple, non-invasive, inexpensive, and preliminary diagnosis method used to assess the cardiac health of a patient. In this paper, an optimally designed Integer Order Digital Differentiator (IODD) based preprocessor is proposed for the accurate estimation of R-peak locations in the ECG signal. IODD, one of the major constituents of the preprocessor, is designed most proficiently by using a metaheuristic evolutionary optimization method called Gravitational Search Algorithm (GSA). In GSA, as the number of iteration increases the exploration capability fades out, and the exploitation capability fades in, which help it to avoid the local optima stagnation problem and results in faster convergence. The IODD based preprocessor accentuates the QRS complexes of the ECG signal irrespective of its abnormal morphology. The employed detector is a simple threshold independent R-peak decision logic designed by utilizing the properties of the Hilbert transform. In order to emphasize the superiority of the proposed research work the proposed IODD based QRS detection approach is validated on the first channel records of MIT/BIH Arrhythmia database (MBAD), QT database (QTDB), MIT/BIH noise stress test database (NSTDB), atrial fibrillation termination challenge database (AFTDB), and MIT/BIH ST change database (STDB). The sensitivity (Se) and positive Predictivity (+P) values for MBAD, QTDB, NSTDB, AFTDB, and STDB are Se=99.92% and +P=99.92%, Se=99.98% and +P=99.96%, Se=95.23% and +P=94.41%, Se=99.03% and +P=99.76%, and Se=99.93% and +P=99.90%, respectively. These performance metrics ensure the accuracy of the proposed R-peak detection technique for a wide variety of QRS morphologies and thereby affirm the applicability of the proposed IODD for the efficient detection of R-peak locations. The performance of the proposed R-peak detector significantly outperforms the reported methods in terms of all the performance metrics. The enhanced QRS detection accuracy of the proposed approach is due to the better feature signal generating capability of the proposed IODD. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在全球范围内,由于心血管疾病(CVD),人类的死亡率每天都在加速增长,并且不久之后就会上升。在这种情况下,心电图(ECG)信号的QRS复杂检测被认为是一种用于评估患者心脏健康的简单,非侵入性,廉价且初步的诊断方法。本文提出了一种基于优化设计的整数阶数字微分器(IODD)的预处理器,用于准确估计ECG信号中的R峰位置。 IODD是预处理器的主要组成部分之一,它使用称为引力搜索算法(GSA)的元启发式进化优化方法进行了最熟练的设计。在GSA中,随着迭代次数的增加,探索能力逐渐减弱,而探索能力逐渐减弱,这有助于避免局部最优停滞问题并加快收敛速度​​。基于IODD的预处理器会增强ECG信号的QRS复合信号,而不管其异常形态如何。所采用的检测器是一种简单的独立于阈值的R峰决策逻辑,该逻辑是通过利用希尔伯特变换的特性而设计的。为了强调所研究工作的优越性,在MIT / BIH心律失常数据库(MBAD),QT数据库(QTDB),MIT / BIH噪声压力测试数据库(NSTDB)的第一条通道记录上验证了基于IODD的QRS检测方法),房颤终止挑战数据库(AFTDB)和MIT / BIH ST变化数据库(STDB)。 MBAD,QTDB,NSTDB,AFTDB和STDB的灵敏度(Se)和正预测性(+ P)值分别为Se = 99.92%和+ P = 99.92%,Se = 99.98%和+ P = 99.96%,Se = 95.23 %和+ P = 94.41%,Se = 99.03%和+ P = 99.76%,和Se = 99.93%和+ P = 99.90%。这些性能指标确保了针对多种QRS形态的拟议R峰检测技术的准确性,从而确认了所提出的IODD对于有效检测R峰位置的适用性。就所有性能指标而言,所提出的R峰值检测器的性能明显优于报告的方法。所提出的方法提高的QRS检测精度是由于所提出的IODD具有更好的特征信号生成能力。 (C)2018 Elsevier Ltd.保留所有权利。

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