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A real time QRS detection using delay-coordinate mapping for the microcontroller implementation
Authors:Lee Jeong-Whan  Kim Kyeong-Seop  Lee Bongsoo  Lee Byungchae  Lee Myoung-Ho
Institution:(1) M_Application Project Team, Samsung Advanced Institute of Technology, Suwon, Korea;(2) School of Biomedical Engineering, College of Medicine, Konkuk University, Chungju, Korea;(3) Department of Medical Information System, Yong-in Songdam College, Yongin, Korea;(4) Department of Electrical and Computer Engineering, Yonsei University, Seoul, Korea
Abstract: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 patientsrsquo 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. © 2002 Biomedical Engineering Society. PAC2002: 8719Nn, 8719Hh, 8780-y
Keywords:QRS complexes  Reconstructed phase portrait  HRV  ECG
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