Application of the chaotic power law to the study of cardiac dynamics in patients with arrhythmias
Background. An exponential law for chaotic cardiac dynamics, found previously, allows the quantification of the differences between normal cardiac dynamics and those with acute diseases, as well as the cardiac dynamics of the evolution between these states. Objective. To confirm the clinical appli...
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doaj-9385054f24724ba4a597901c720abaed2020-11-24T21:06:31ZengUniversidad Nacional de ColombiaRevista de la Facultad de Medicina0120-00112357-38482014-10-0162453954610.15446/revfacmed.v62n4.4344439757Application of the chaotic power law to the study of cardiac dynamics in patients with arrhythmiasJavier Rodríguez0Signed PrietoDario DominguezCatalina CorreaMartha MeloJuan PardoFernàn MendozaLigia Victoria RodríguezDiana Margarita CardonaLaura MéndezUniversidad Militar Nueva Granada- Centro de Investigaciones de la clínica del CountryBackground. An exponential law for chaotic cardiac dynamics, found previously, allows the quantification of the differences between normal cardiac dynamics and those with acute diseases, as well as the cardiac dynamics of the evolution between these states. Objective. To confirm the clinical applicability of the developed methodology through the mathematical law for cardiac dynamics in dynamics with arrhythmias. Materials and methods. 60 Holter electrocardiograms were analyzed, 10 corresponded to normal subjects, and 50 to subjects with different arrhythmias. For each Holter, an attractor was performed, and its fractal dimension and spatial occupancy were measured. A mathematical evaluation was applied in order to differentiate normal dynamics from pathological ones. Sensitivity, specificity and the Kappa coefficient were calculated. Results. The mathematical evaluation differentiated occupation spaces, normal dynamics, acute illness dynamics, and evolution between these states. The sensitivity and specificity values were 100%, and the Kappa coefficient was 1. Conclusions. The clinical applicability of the methodology for cases with arrhythmia was shown. It is also applicable for the detection of changes in dynamics that are not classified clinically as pathological.https://revistas.unal.edu.co/index.php/revfacmed/article/view/43444Caosfractalleyley caóticadinámica cardiacadiagnósticoarritmia. |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Javier Rodríguez Signed Prieto Dario Dominguez Catalina Correa Martha Melo Juan Pardo Fernàn Mendoza Ligia Victoria Rodríguez Diana Margarita Cardona Laura Méndez |
spellingShingle |
Javier Rodríguez Signed Prieto Dario Dominguez Catalina Correa Martha Melo Juan Pardo Fernàn Mendoza Ligia Victoria Rodríguez Diana Margarita Cardona Laura Méndez Application of the chaotic power law to the study of cardiac dynamics in patients with arrhythmias Revista de la Facultad de Medicina Caos fractal ley ley caótica dinámica cardiaca diagnóstico arritmia. |
author_facet |
Javier Rodríguez Signed Prieto Dario Dominguez Catalina Correa Martha Melo Juan Pardo Fernàn Mendoza Ligia Victoria Rodríguez Diana Margarita Cardona Laura Méndez |
author_sort |
Javier Rodríguez |
title |
Application of the chaotic power law to the study of cardiac dynamics in patients with arrhythmias |
title_short |
Application of the chaotic power law to the study of cardiac dynamics in patients with arrhythmias |
title_full |
Application of the chaotic power law to the study of cardiac dynamics in patients with arrhythmias |
title_fullStr |
Application of the chaotic power law to the study of cardiac dynamics in patients with arrhythmias |
title_full_unstemmed |
Application of the chaotic power law to the study of cardiac dynamics in patients with arrhythmias |
title_sort |
application of the chaotic power law to the study of cardiac dynamics in patients with arrhythmias |
publisher |
Universidad Nacional de Colombia |
series |
Revista de la Facultad de Medicina |
issn |
0120-0011 2357-3848 |
publishDate |
2014-10-01 |
description |
Background. An exponential law for chaotic cardiac dynamics,
found previously, allows the quantification of the differences
between normal cardiac dynamics and those with acute
diseases, as well as the cardiac dynamics of the evolution
between these states.
Objective. To confirm the clinical applicability of the developed
methodology through the mathematical law for cardiac
dynamics in dynamics with arrhythmias.
Materials and methods. 60 Holter electrocardiograms were
analyzed, 10 corresponded to normal subjects, and 50 to subjects with different arrhythmias. For each Holter, an attractor was performed, and its fractal dimension and spatial occupancy were measured. A mathematical evaluation was applied in order to differentiate normal dynamics from pathological ones. Sensitivity, specificity and the Kappa coefficient were calculated.
Results. The mathematical evaluation differentiated occupation spaces, normal dynamics, acute illness dynamics, and evolution between these states. The sensitivity and specificity values were 100%, and the Kappa coefficient was 1.
Conclusions. The clinical applicability of the methodology
for cases with arrhythmia was shown. It is also applicable for
the detection of changes in dynamics that are not classified
clinically as pathological. |
topic |
Caos fractal ley ley caótica dinámica cardiaca diagnóstico arritmia. |
url |
https://revistas.unal.edu.co/index.php/revfacmed/article/view/43444 |
work_keys_str_mv |
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