
pmid: 16402599
Sample entropy and approximate entropy are measures that have been successfully utilized to study the deterministic dynamics of heart rate (HR). A complementary stochastic point of view and a heuristic argument using the Central Limit Theorem suggests that the Gaussianity of HR is a complementary measure of the physiological complexity of the underlying signal transduction processes. Renyi entropy (or q-entropy) is a widely used measure of Gaussianity in many applications. Particularly important members of this family are differential (or Shannon) entropy (q = 1) and quadratic entropy (q = 2). We introduce the concepts of differential and conditional Renyi entropy rate and, in conjunction with Burg's theorem, develop a measure of the Gaussianity of a linear random process. Robust algorithms for estimating these quantities are presented along with estimates of their standard errors.
Models, Statistical, Entropy, Models, Cardiovascular, Normal Distribution, Reproducibility of Results, Arrhythmias, Cardiac, Sensitivity and Specificity, Severity of Illness Index, Electrocardiography, Heart Rate, Data Interpretation, Statistical, Computer Simulation, Diagnosis, Computer-Assisted, Algorithms
Models, Statistical, Entropy, Models, Cardiovascular, Normal Distribution, Reproducibility of Results, Arrhythmias, Cardiac, Sensitivity and Specificity, Severity of Illness Index, Electrocardiography, Heart Rate, Data Interpretation, Statistical, Computer Simulation, Diagnosis, Computer-Assisted, Algorithms
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