DocumentCode
674610
Title
Is cross-sample entropy a valid measure of synchronization between sequences of RR interval and pulse transit time?
Author
Chengyu Liu ; Dingchang Zheng ; Peng Li ; Lina Zhao ; Changchun Liu ; Murray, A.
Author_Institution
Inst. of Cellular Med., Newcastle Univ., Newcastle upon Tyne, UK
fYear
2013
fDate
22-25 Sept. 2013
Firstpage
939
Lastpage
942
Abstract
Synchronization provides an insight into mechanisms underlying the interaction among bivariate physiological signals where their coupling is not known a priori. Cross-sample entropy (C-SampEn) has been used to quantify their synchronization. However, traditional C-SampEn has a poor statistical stability because a rigid decision rule is applied to define the similarity between two vectors. In this study, a fuzzy membership function was implemented to redefine the decision rule in C-SampEn with its performance evaluated using simulated and real cardiovascular coupling signals (RR interval and pulse transit time sequences from 10 normal subjects and 10 heart failure patients). Simulation results verified the decrease of both C-SampEn with increasing coupling degree. The analysis of cardiovascular coupling signals demonstrated a significant difference between normal and heart failure patients (normal 1.17 ± 0.09 vs. heart failure 1.02 ± 0.10, P<;0.01) with the improved C-SampEn, but not the traditional C-SampEn. Our improved C-SampEn provides a better understanding of the different cardiovascular coupling between normal subjects and heart failure patients.
Keywords
cardiovascular system; electrocardiography; entropy; medical signal processing; synchronisation; C-SampEn; RR interval sequences; bivariate physiological signals; cardiovascular coupling signal analysis; cross-sample entropy; fuzzy membership function; heart failure patients; pulse transit time sequences; real cardiovascular coupling signals; rigid decision rule; simulated cardiovascular coupling signals; statistical stability; synchronization; Abstracts; Arteries; Artificial intelligence; Biological system modeling; Entropy; Physiology; Vectors;
fLanguage
English
Publisher
ieee
Conference_Titel
Computing in Cardiology Conference (CinC), 2013
Conference_Location
Zaragoza
ISSN
2325-8861
Print_ISBN
978-1-4799-0884-4
Type
conf
Filename
6713533
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