DocumentCode :
141328
Title :
Assessing real-time RR-QT frequency-domain measures of coupling and causality through inhomogeneous point-process bivariate models
Author :
Valenza, Gaetano ; Orini, M. ; Citi, Luca ; Minchole, A. ; Pueyo, Esther ; Laguna, P. ; Barbieri, Riccardo
Author_Institution :
Dept. of Anesthesia, Massachusetts Gen. Hosp., Boston, MA, USA
fYear :
2014
fDate :
26-30 Aug. 2014
Firstpage :
6475
Lastpage :
6478
Abstract :
Ventricular repolarization instability is known to be related to arrhythmogenesis and increased risk of sudden cardiac death. These repolarization dynamics are linked to the distance between T-wave and Q-wave occurrances (QT) on the ECG, and they are coupled with R-wave to R-wave interval variability (RRV). Several efforts have been dedicated to the analysis of QT-RR interactions in order to provide both a quantification of the coupling and estimates of intrinsic repolarization dynamics. However, a methodology able to quantify dynamic changes in repolarization variability unrelated to RRV dynamics is still needed. In this study, we propose a bivariate model embedded within a multiple inhomogeneous point-process framework to obtain time-varying tracking of (causal) interactions between QT variability (QTV), a marker of repolarization variability, and RRV. Data from 15 healthy subjects undergoing a tilt table test were analyzed. Our results demonstrate that the model effectively captures the time-varying mutual QTV-RRV interactions. The analysis of time-varying coherence confirms that head-up tilt is associated with a decrease in linear QTV-RRV coupling, while time-varying directed coherence shows that intrinsic QTV becomes more prominent during head-up tilt.
Keywords :
electrocardiography; medical signal processing; time-frequency analysis; ECG; Q-wave occurrence; QT-RR interactions; R-wave interval variability; T-wave occurrence; arrhythmogenesis; bivariate model; head-up tilt; inhomogeneous point-process bivariate models; intrinsic repolarization dynamics; multiple inhomogeneous point-process framework; real-time RR-QT frequency-domain measures assessment; sudden cardiac death; tilt table test analysis; time-varying tracking; ventricular repolarization instability; Coherence; Couplings; Educational institutions; Electrocardiography; Heart rate variability; Nonhomogeneous media; Physiology;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Engineering in Medicine and Biology Society (EMBC), 2014 36th Annual International Conference of the IEEE
Conference_Location :
Chicago, IL
ISSN :
1557-170X
Type :
conf
DOI :
10.1109/EMBC.2014.6945111
Filename :
6945111
Link To Document :
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