Title :
Phase shift, coherence, BPV and HRV before and during self-terminating cardiac arrhythmia
Author :
Postolache, G. ; Rocha, Isabel ; Oliveira, Miguel ; Girao, Pedro ; Postolache, Octavian Adrian
Author_Institution :
Univ. Atlantica, Oeiras, Portugal
Abstract :
The purpose of this work is to discuss the ability of wavelet analysis and cross-spectral algorithm to follow up the short-term cardiovascular function changes during cardiac arrhythmia. It was analyzed the (a) coherence between systolic blood pressure (SBP) and cardiac oscillations in low frequency (LF) and high frequency (HF) band; (b) fluctuations of phase; (c) heart rate variability (HRV) and blood pressure variability (BPV) as a LF power and HF power in frequency and time frequency domain. The analysis was performed on blood pressure and electrocardiogram signals from one rabbit anaesthetized, paralyzed and mechanically ventilated with self-terminating atrial and ventricular fibrillation after 7 minutes of cardiac arrhythmia. Arrhythmia was preceded by a) decreased coherence; b) increase in fluctuations of phase between signals; c) increased spectral energy associated with respiratory frequency in blood pressure signal; d) increased sympathetic outflow to the heart and e) decreased HRV. Cardiac arrhythmia was characterized mainly by increased LF power in blood pressure and cardiac signal. During self-termination of dysrhythmia a larger increased in total BPV and HRV was recorded. These results suggest that important information about both neuronal cardio-circulatory control and risk for spontaneous arrhythmia might be provided by combined analysis of frequency, phase, time-frequency analysis of blood pressure and cardiac oscillation.
Keywords :
cardiovascular system; diseases; electrocardiography; haemodynamics; lung; medical signal processing; neurophysiology; blood pressure variability; cardiac oscillation; cardiac oscillations; cardiac signal; cross-spectral algorithm; dysrhythmia; electrocardiogram signals; heart rate variability; high-frequency band; low-frequency band; neuronal cardio-circulatory control; phase fluctuations; phase shift; respiratory frequency; self-terminating atrial; self-terminating cardiac arrhythmia; short-term cardiovascular function; spectral energy; sympathetic outflow; systolic blood pressure; time 7 min; time-frequency analysis; time-frequency domain; ventricular fibrillation; wavelet analysis; Blood pressure; Coherence; Continuous wavelet transforms; Heart rate variability; Resonant frequency; Time frequency analysis; arrhythmia; blood pressure and heart rate variability; cross-spectral algorithm; wavelet analysis;
Conference_Titel :
Medical Measurements and Applications Proceedings (MeMeA), 2011 IEEE International Workshop on
Conference_Location :
Bari
Print_ISBN :
978-1-4244-9336-4
DOI :
10.1109/MeMeA.2011.5966760