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Multiscale entropy analysis of biological signals

Physical Review E · 2005 · Vol. 71(2) · pp. 021906–021906
Madalena D. CostaAry L. GoldbergerChung‐Kang Peng

Abstract

Traditional approaches to measuring the complexity of biological signals fail to account for the multiple time scales inherent in such time series. These algorithms have yielded contradictory findings when applied to real-world datasets obtained in health and disease states. We describe in detail the basis and implementation of the multiscale entropy (MSE) method. We extend and elaborate previous findings showing its applicability to the fluctuations of the human heartbeat under physiologic and pathologic conditions. The method consistently indicates a loss of complexity with aging, with an erratic cardiac arrhythmia (atrial fibrillation), and with a life-threatening syndrome (congestive heart failure). Further, these different conditions have distinct MSE curve profiles, suggesting diagnostic uses. The results support a general "complexity-loss" theory of aging and disease. We also apply the method to the analysis of coding and noncoding DNA sequences and find that the latter have higher multiscale entropy, consistent with the emerging view that so-called "junk DNA" sequences contain important biological information.

Fractal and DNA sequence analysisGene Regulatory Network AnalysisNeural dynamics and brain functionHeartbeatEntropy (arrow of time)Computer scienceCoding (social sciences)Heart failureAlgorithmArtificial intelligenceStatistical physicsMathematicsPattern recognition (psychology)

MeSH terms

AdultAgedAlgorithmsAtrial FibrillationComputer SimulationDiagnosis, Computer-AssistedFemaleHeart FailureHumansMaleMiddle AgedModels, BiologicalModels, ChemicalSensitivity and SpecificityReproducibility of Results
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References
Ergodic theory of chaos and strange attractors
Reviews of Modern Physics · 1985 · 4,848 citations
Estimation of the Kolmogorov entropy from a chaotic signal
Physical review. A, General physics · 1983 · 1,435 citations
Approximate entropy as a measure of system complexity.
Proceedings of the National Academy of Sciences · 1991 · 5,695 citations
Multiscale entropy analysis of human gait dynamics
Physica A Statistical Mechanics and its Applications · 2003 · 510 citations
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