Lee Jeong-Whan, Kim Kyeong-Seop, Lee Bongsoo, Lee Byungchae, Lee Myoung-Ho
M_Application Project Team, Samsung Advanced Institute of Technology, Suwon, Korea.
Ann Biomed Eng. 2002;30(9):1140-51. doi: 10.1114/1.1523030.
In this article, we propose a new algorithm using the characteristics of reconstructed phase portraits by delay-coordinate mapping utilizing lag rotundity for a real-time detection of QRS complexes in ECG signals. In reconstructing phase portrait the mapping parameters, time delay, and mapping dimension play important roles in shaping of portraits drawn in a new dimensional space. Experimentally, the optimal mapping time delay for detection of QRS complexes turned out to be 20 ms. To explore the meaning of this time delay and the proper mapping dimension, we applied a fill factor, mutual information, and autocorrelation function algorithm that were generally used to analyze the chaotic characteristics of sampled signals. From these results, we could find the fact that the performance of our proposed algorithms relied mainly on the geometrical property such as an area of the reconstructed phase portrait. For the real application, we applied our algorithm for designing a small cardiac event recorder. This system was to record patients' ECG and R-R intervals for 1 h to investigate HRV characteristics of the patients who had vasovagal syncope symptom and for the evaluation, we implemented our algorithm in C language and applied to MIT/BIH arrhythmia database of 48 subjects. Our proposed algorithm achieved a 99.58% detection rate of QRS complexes.
在本文中,我们提出了一种新算法,该算法利用延迟坐标映射重建相图的特征以及滞后圆度,用于实时检测心电图(ECG)信号中的QRS复合波。在重建相图时,映射参数、时间延迟和映射维度在新维度空间中绘制的相图形状方面起着重要作用。通过实验发现,检测QRS复合波的最佳映射时间延迟为20毫秒。为了探究这个时间延迟的意义以及合适的映射维度,我们应用了通常用于分析采样信号混沌特征的填充因子、互信息和自相关函数算法。从这些结果中,我们发现我们提出的算法性能主要依赖于重建相图面积等几何特性。对于实际应用,我们将算法应用于设计一个小型心脏事件记录器。该系统用于记录患者1小时的心电图和R-R间期,以研究有血管迷走性晕厥症状患者的心率变异性(HRV)特征。为了进行评估,我们用C语言实现了我们的算法,并将其应用于48名受试者的麻省理工学院/波士顿儿童医院心律失常数据库。我们提出的算法实现了99.58%的QRS复合波检测率。