DocumentCode :
988752
Title :
Model-Based Detection of Heart Rate Turbulence
Author :
Solem, Kristian ; Laguna, Pablo ; Martinez, Juan Pablo ; Sornmo, Leif
Author_Institution :
Signal Process. Group, Lund Univ., Lund
Volume :
55
Issue :
12
fYear :
2008
Firstpage :
2712
Lastpage :
2722
Abstract :
In this study, the integral pulse frequency modulation model is extended to account for the presence of ectopic beats and heart rate turbulence (HRT). Based on this model, a new statistical approach to the detection and characterization of HRT is presented. The detector structure involves a set of Karhunen-Loeve basis functions and a generalized likelihood ratio test statistic T(x) . The three most significant basis functions reflect the difference in heart rate prior to a ventricular ectopic beat (VEB) compared to after HRT, the ldquoaveragerdquo HRT, and a delayed contribution to HRT, respectively. Detector performance was studied on both simulated and ECG signals. Three different simulations were performed for the purpose of studying the influence of SNR, QRS jitter, and ECG sampling rate. The results show that the HRT test statistic T(x) performs better in all simulations than do the commonly used parameters known as turbulence onset (TO) and turbulence slope (TS). In order to attain the same performance as T(x), TS needs at least twice the amount of VEBs for averaging, and TO at least four times. The detector performance was also studied on ECGs acquired from eight patients who underwent hemodialysis treatment with the goal to discriminate between patients considered to be hypotension-resistant (HtR) and hypotension-prone (HtP). The results show that T(x) exhibits larger mean values in HtR patients than in HtP, suggesting that HRT is mostly present in HtR patients. The overlap between the two groups was larger for TO and TS than for T(x).
Keywords :
bioelectric phenomena; electrocardiography; patient treatment; turbulence; ECG signals; Karhunen-Loeve basis function; ectopic beats; generalized likelihood ratio test statistic; heart rate turbulence; hemodialysis treatment; hypotension-prone patients; hypotension-resistant patients; integral pulse frequency modulation model; Delay; Detectors; Electrocardiography; Frequency modulation; Heart rate; Heart rate detection; Heart rate variability; Pulse modulation; Statistical analysis; Testing; ECG; Karhunen–LoÈve (KL) basis functions; generalized likelihood ratio test (GLRT); heart rate turbulence (HRT); integral pulse frequency modulation (IPFM) model; Data Interpretation, Statistical; Electrophysiologic Techniques, Cardiac; Heart; Heart Conduction System; Heart Rate; Humans; Hypotension; Models, Cardiovascular; Myocardial Contraction; Odds Ratio; Predictive Value of Tests; Ventricular Premature Complexes;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/TBME.2008.2002113
Filename :
4674609
Link To Document :
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