Design of a Holter Monitor for the Diagnosis of Neonatal Cardiac Dynamics
Cada año se reportan aproximadamente 4 millones de muertes neonatales y aproximadamente el 98% de los cuales ocurren en los países en desarrollo, donde el riesgo es 6 veces mayor que en los países desarrollados países. Por este motivo, se necesitan métodos de detección y diagnóstico precoz de altera...
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Universidad Cooperativa de Colombia, Facultad de Ingenierías, Ingeniería de Sistemas, Bogotá
2021
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Online Access: | https://repository.ucc.edu.co/handle/20.500.12494/49048 https://hdl.handle.net/20.500.12494/49048 |
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Repositorio Institucional UCC (Universidad Cooperativa de Colombia) |
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Monitor Holter Dinámica cardiaca neonatal Holter monitor Cardiac dynamics |
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Monitor Holter Dinámica cardiaca neonatal Holter monitor Cardiac dynamics Simanca Herrera, Fredys Alberto Páez Páez, Jaime Alberto Cortés Méndez, Jairo Augusto Rodríguez Velásquez, Javier Oswaldo Correa Herrera, Sandra Catalina Prieto Bohórquez, Signed Esperanza Design of a Holter Monitor for the Diagnosis of Neonatal Cardiac Dynamics |
topic_facet |
Monitor Holter Dinámica cardiaca neonatal Holter monitor Cardiac dynamics |
description |
Cada año se reportan aproximadamente 4 millones de muertes neonatales y aproximadamente el 98% de los cuales ocurren en los países en desarrollo, donde el riesgo es 6 veces mayor que en los países desarrollados países. Por este motivo, se necesitan métodos de detección y diagnóstico precoz de alteraciones potencialmente mortales para evitar estos desenlaces. Recientemente, una metodología para la Se ha desarrollado una evaluación de la dinámica cardíaca neonatal, que ayuda a diferenciar de la dinámica cardíaca anormal contando los espacios ocupados por los atractores cardíacos caóticos. Para automatizar este método, se diseñó y construyó un monitor Holter para recién nacidos, junto con una herramienta de software que realiza pruebas de función cardíaca. Finalmente, se realizaron pruebas con el monitor Holter y el software desarrollado para evaluar la dinámica cardíaca de 100 pacientes, que validado el correcto funcionamiento de los dispositivos diseñados. De esta manera, la utilidad potencial de este desarrollo tecnológico está asociado a una disminución de la mortalidad neonatal ya que permite la detección de alteraciones en la dinámica cardíaca a través de un dispositivo ECG (electrocardiograma) y un método matemático que es independiente de la evaluación clínica. Every year, approximately 4 million neonatal deaths are reported, and approximately 98% of which occur in developing countries, where the risk is 6-fold higher than that in developed countries. For this reason, methods for the early detection and diagnosis of potentially lifethreatening alterations are needed to avoid these outcomes. Recently, a ethodology for the assessment of neonatal cardiac dynamics has been developed, which helps differentiate normal from abnormal cardiac dynamics by counting the spaces occupied by the chaotic cardiac attractors. In order to automate this method, a Holter monitor for newborn infants was designed and built, along with a software tool that performs cardiac function tests. Finally, tests were performed using the ... |
format |
Article in Journal/Newspaper |
author |
Simanca Herrera, Fredys Alberto Páez Páez, Jaime Alberto Cortés Méndez, Jairo Augusto Rodríguez Velásquez, Javier Oswaldo Correa Herrera, Sandra Catalina Prieto Bohórquez, Signed Esperanza |
author_facet |
Simanca Herrera, Fredys Alberto Páez Páez, Jaime Alberto Cortés Méndez, Jairo Augusto Rodríguez Velásquez, Javier Oswaldo Correa Herrera, Sandra Catalina Prieto Bohórquez, Signed Esperanza |
author_sort |
Simanca Herrera, Fredys Alberto |
title |
Design of a Holter Monitor for the Diagnosis of Neonatal Cardiac Dynamics |
title_short |
Design of a Holter Monitor for the Diagnosis of Neonatal Cardiac Dynamics |
title_full |
Design of a Holter Monitor for the Diagnosis of Neonatal Cardiac Dynamics |
title_fullStr |
Design of a Holter Monitor for the Diagnosis of Neonatal Cardiac Dynamics |
title_full_unstemmed |
Design of a Holter Monitor for the Diagnosis of Neonatal Cardiac Dynamics |
title_sort |
design of a holter monitor for the diagnosis of neonatal cardiac dynamics |
publisher |
Universidad Cooperativa de Colombia, Facultad de Ingenierías, Ingeniería de Sistemas, Bogotá |
publishDate |
2021 |
url |
https://repository.ucc.edu.co/handle/20.500.12494/49048 https://hdl.handle.net/20.500.12494/49048 |
op_coverage |
Volume 9, Issue 3, 2021 |
genre |
Arctic |
genre_facet |
Arctic |
op_relation |
Advances in Mechanics https://scholar.google.es/citations?view_op=view_citation&hl=es&user=dhHrDtQAAAAJ&sortby=pubdate&citation_for_view=dhHrDtQAAAAJ:70eg2SAEIzsC Instituto Nacional de Salud, Protocolo de vigilancia y control de mortalidad perinatal y neonatal tardía (Colombian Health Institute, Protocol for the surveillance and control of late perinatal and neonatal mortality). Bogota, 2020 World Health Organization, Neonatal and perinatal mortality: country, regional and global estimates, Switzerland: World Health Organization, 2006. MinSalud y Proframilia, Resumen Ejecutivo ENDS (Ministry of Health and Profamilia, ENDS Executive Summary). CTP All solutions S.A.S, Bogota, 2015. ins.gov.co, Protocolo de vigilancia y control de mortalidad perinatal y neonatal tardía. Vigilancia y Control en salud pública (Protocol for the surveillance and control of late perinatal and neonatal mortality. Surveillance and control in public health). Colombia, 2011 D. E. Lake, J. S. Richman, M. P. Griffin y J. R. Moorman, Sample entropy analysis of neonatal heart rate variability. Am J Physiol Regul Integr Comp Physiol, vol. 283, nº 1, pp. 789-797, 2002 K. D. Fairchild y T. M. O'Shea, Heart rate characteristics: physiomarkers for detection of lateonset neonatal sepsis. Clin Perinatol, vol. 37, nº 3, pp. 581-598, 2010 J. Nolan, P. D. Batin, R. Andrews, S. J. Lindsay, P. Brooksby, M. Mullen, W. Baig, A. D. Flapan, A. Cowley, R. J. Prescott, J. M. Neilson y K. A. Fox, Prospective study of heart rate variability and mortality in chronic heart failure: results of the United Kingdom heart failure evaluation and assessment of risk trial (UK-heart). Circulation, vol. 98, nº 15, pp. 1510-1516, 1998. M. Wolf, G. Varigos, D. Hunt y J. S. Sluman, Sinus Arrhythmia in Acute Myocardial Infarction. The Medical Journal Of Australia, vol. 2, nº 2, pp. 52-53, 1978. W.-L. Chen y C.-D. Kuo, Characteristics of Heart Rate Variability Can Predict Impending Septic Shock in Emergency Department Patients with Sepsis. Acad Emerg Med, vol. 14, nº 7, pp. 392- 397, 2007. W.-L. Chen, J.-H. Chen, C.-C. Huang, C.-D. Kuo, C.-I. Huang y L.-S. Lee, Heart rate variability measures as predictors of in-hospital mortality in ED patients with sepsis. Am J Emerg Med, vol. 26, nº 4, pp. 395-401, 2008. M. Gomez Duquea, C. Enciso Oliverab, E. Peña Torres, O. Segura Durán y V. Nieto Estrada, ECAIS study: Inadvertent cardiovascular adverse events in sepsis. Medicina Intensiva, vol. 36, nº 5, pp. 343-350, 2012. M. Cabrales and D. Vanegas, Manual de métodos diagnósticos en electrofisiología cardiovascular (Manual on diagnostic methods in cardiovascular electrophysiology). Bogotá: Publishing house: Sociedad Colombiana De Cardiología y Cirugía Cardiovascular (Colombian Society of Cardiology and Cardiovascular Surgery), 2006 L. Soares-Miranda, J. Sattelmair, P. Chaves, G. Duncan, D. S. Siscovick, P. K. Stein y D. Mozaffarian, «Physical Activity and Heart Rate Variability in Older Adults: The Cardiovascular Health Study.,» Circulation, vol. 129, nº 21, pp. 2100 - 2110, 2014. Rodríguez J, Prieto S, Avilán N, Correa C, Bernal P, Ortiz L, Ayala J., New physics and mathematics methodology in Holter evaluation. Rev Colomb Cardiol 2008; 15: 50-54. Rodríguez JO, Páez JA, Castro A, Cortes JA, Simanca F, Prieto SE, Castro MF, Correa SC. Diagnostic methodology for the neonatal cardiac system based on dynamic systems. Arctic Journal. 2020;7:32-41 J. Rodríguez Velásquez, S. Prieto, M. Florez, C. Alarcon, R. López, G. Aguirre, L. Moreles, L. Lima y L. Mendez, Physical-mathematical diagnosis of cardiac dynamic on neonatal sepsis: predictions of clinical application. J.Med.Med. Sci., vol. 5, pp. 102 -108, 2014. J. Rodriguez, New physical and mathematical diagnosis of fetal monitoring: clinical application prediction. Momento Revista de Física., vol. 44, pp. 49-65, 2012. J. Rodriguez, S. Prieto, C. Correa, F. Mendoza, G. Weiz, M. Y. Soracipa, N. Velasquez, J. M. Pardo, M. Martinez y F. Barrios, Physical mathematical evaluation of the cardiac dynamic applying the Zipf – Mandelbrot law. Journal of Modern of Physics, vol. 6, nº 13, pp. 1881-1888, 2015. Rodríguez J, Prieto S, Correa C, Flórez M, López R, Alarcón C, Soracipa Y, Jattin J, Silva S, Valdés C. New diagnosis of neonatal cardiac dynamics based on the dynamic systems and the fractal geometry. Rev Cubana Pediatr. 2016; 88 (3): 266 -80 Harvard Health Blog. Campos M. Heart rate variability: A new way to track well-being. Disponible en: https://www.health.harvard.edu/blog/heart-rate-variability-new-way-trackwell-2017112212789. Rodríguez J, Giraldo J, Barrios F, Prieto S, Correa C, Soracipa Y., Exponential law of chaotic cardiac dynamics applied to 18 hours. Rev Univ Ind Santander Salud. 2019; 51(2): 148-155. Velásquez, J., Prieto, S., Correa, C., and Melo, M. Geometrical nuclear diagnosis and total paths of cervix cell evolution from normality to cancer. J Can Res Ther. 11(1): 98-104 Rodríguez J, Jattin J, Soracipa Y. Probabilistic temporal prediction of the deaths caused by traffic in Colombia. Accident Analysis and Prevention. 2020;135:105332. Rodríguez J, Prieto S, Pérez C, Correa C, Soracipa Y, Jattin J, David A. Predicción temporal de CD4+ en 80 pacientes con manejo antirretroviral a partir de valores de leucocitos. Infectio. 2020;24(2):103-107. https://repository.ucc.edu.co/handle/20.500.12494/49048 Simanca, F; Rodríguez. J; Paez, j.; Correa, S. Cortes, J. y Prieto, E. (2021). Design of a Holter Monitor for the Diagnosis of Neonatal Cardiac Dynamics. Advances in Mechanics Volume 9, Issue 3. |
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openAccess |
op_doi |
https://doi.org/20.500.12494/49048 |
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ftunivccolomb:oai:repository.ucc.edu.co:20.500.12494/49048 2024-02-11T09:59:46+01:00 Design of a Holter Monitor for the Diagnosis of Neonatal Cardiac Dynamics Simanca Herrera, Fredys Alberto Páez Páez, Jaime Alberto Cortés Méndez, Jairo Augusto Rodríguez Velásquez, Javier Oswaldo Correa Herrera, Sandra Catalina Prieto Bohórquez, Signed Esperanza Volume 9, Issue 3, 2021 2021 1014-1024 https://repository.ucc.edu.co/handle/20.500.12494/49048 https://hdl.handle.net/20.500.12494/49048 unknown Universidad Cooperativa de Colombia, Facultad de Ingenierías, Ingeniería de Sistemas, Bogotá Bogotá Ingeniería de Sistemas Advances in Mechanics https://scholar.google.es/citations?view_op=view_citation&hl=es&user=dhHrDtQAAAAJ&sortby=pubdate&citation_for_view=dhHrDtQAAAAJ:70eg2SAEIzsC Instituto Nacional de Salud, Protocolo de vigilancia y control de mortalidad perinatal y neonatal tardía (Colombian Health Institute, Protocol for the surveillance and control of late perinatal and neonatal mortality). Bogota, 2020 World Health Organization, Neonatal and perinatal mortality: country, regional and global estimates, Switzerland: World Health Organization, 2006. MinSalud y Proframilia, Resumen Ejecutivo ENDS (Ministry of Health and Profamilia, ENDS Executive Summary). CTP All solutions S.A.S, Bogota, 2015. ins.gov.co, Protocolo de vigilancia y control de mortalidad perinatal y neonatal tardía. Vigilancia y Control en salud pública (Protocol for the surveillance and control of late perinatal and neonatal mortality. Surveillance and control in public health). Colombia, 2011 D. E. Lake, J. S. Richman, M. P. Griffin y J. R. Moorman, Sample entropy analysis of neonatal heart rate variability. Am J Physiol Regul Integr Comp Physiol, vol. 283, nº 1, pp. 789-797, 2002 K. D. Fairchild y T. M. O'Shea, Heart rate characteristics: physiomarkers for detection of lateonset neonatal sepsis. Clin Perinatol, vol. 37, nº 3, pp. 581-598, 2010 J. Nolan, P. D. Batin, R. Andrews, S. J. Lindsay, P. Brooksby, M. Mullen, W. Baig, A. D. Flapan, A. Cowley, R. J. Prescott, J. M. Neilson y K. A. Fox, Prospective study of heart rate variability and mortality in chronic heart failure: results of the United Kingdom heart failure evaluation and assessment of risk trial (UK-heart). Circulation, vol. 98, nº 15, pp. 1510-1516, 1998. M. Wolf, G. Varigos, D. Hunt y J. S. Sluman, Sinus Arrhythmia in Acute Myocardial Infarction. The Medical Journal Of Australia, vol. 2, nº 2, pp. 52-53, 1978. W.-L. Chen y C.-D. Kuo, Characteristics of Heart Rate Variability Can Predict Impending Septic Shock in Emergency Department Patients with Sepsis. Acad Emerg Med, vol. 14, nº 7, pp. 392- 397, 2007. W.-L. Chen, J.-H. Chen, C.-C. Huang, C.-D. Kuo, C.-I. Huang y L.-S. Lee, Heart rate variability measures as predictors of in-hospital mortality in ED patients with sepsis. Am J Emerg Med, vol. 26, nº 4, pp. 395-401, 2008. M. Gomez Duquea, C. Enciso Oliverab, E. Peña Torres, O. Segura Durán y V. Nieto Estrada, ECAIS study: Inadvertent cardiovascular adverse events in sepsis. Medicina Intensiva, vol. 36, nº 5, pp. 343-350, 2012. M. Cabrales and D. Vanegas, Manual de métodos diagnósticos en electrofisiología cardiovascular (Manual on diagnostic methods in cardiovascular electrophysiology). Bogotá: Publishing house: Sociedad Colombiana De Cardiología y Cirugía Cardiovascular (Colombian Society of Cardiology and Cardiovascular Surgery), 2006 L. Soares-Miranda, J. Sattelmair, P. Chaves, G. Duncan, D. S. Siscovick, P. K. Stein y D. Mozaffarian, «Physical Activity and Heart Rate Variability in Older Adults: The Cardiovascular Health Study.,» Circulation, vol. 129, nº 21, pp. 2100 - 2110, 2014. Rodríguez J, Prieto S, Avilán N, Correa C, Bernal P, Ortiz L, Ayala J., New physics and mathematics methodology in Holter evaluation. Rev Colomb Cardiol 2008; 15: 50-54. Rodríguez JO, Páez JA, Castro A, Cortes JA, Simanca F, Prieto SE, Castro MF, Correa SC. Diagnostic methodology for the neonatal cardiac system based on dynamic systems. Arctic Journal. 2020;7:32-41 J. Rodríguez Velásquez, S. Prieto, M. Florez, C. Alarcon, R. López, G. Aguirre, L. Moreles, L. Lima y L. Mendez, Physical-mathematical diagnosis of cardiac dynamic on neonatal sepsis: predictions of clinical application. J.Med.Med. Sci., vol. 5, pp. 102 -108, 2014. J. Rodriguez, New physical and mathematical diagnosis of fetal monitoring: clinical application prediction. Momento Revista de Física., vol. 44, pp. 49-65, 2012. J. Rodriguez, S. Prieto, C. Correa, F. Mendoza, G. Weiz, M. Y. Soracipa, N. Velasquez, J. M. Pardo, M. Martinez y F. Barrios, Physical mathematical evaluation of the cardiac dynamic applying the Zipf – Mandelbrot law. Journal of Modern of Physics, vol. 6, nº 13, pp. 1881-1888, 2015. Rodríguez J, Prieto S, Correa C, Flórez M, López R, Alarcón C, Soracipa Y, Jattin J, Silva S, Valdés C. New diagnosis of neonatal cardiac dynamics based on the dynamic systems and the fractal geometry. Rev Cubana Pediatr. 2016; 88 (3): 266 -80 Harvard Health Blog. Campos M. Heart rate variability: A new way to track well-being. Disponible en: https://www.health.harvard.edu/blog/heart-rate-variability-new-way-trackwell-2017112212789. Rodríguez J, Giraldo J, Barrios F, Prieto S, Correa C, Soracipa Y., Exponential law of chaotic cardiac dynamics applied to 18 hours. Rev Univ Ind Santander Salud. 2019; 51(2): 148-155. Velásquez, J., Prieto, S., Correa, C., and Melo, M. Geometrical nuclear diagnosis and total paths of cervix cell evolution from normality to cancer. J Can Res Ther. 11(1): 98-104 Rodríguez J, Jattin J, Soracipa Y. Probabilistic temporal prediction of the deaths caused by traffic in Colombia. Accident Analysis and Prevention. 2020;135:105332. Rodríguez J, Prieto S, Pérez C, Correa C, Soracipa Y, Jattin J, David A. Predicción temporal de CD4+ en 80 pacientes con manejo antirretroviral a partir de valores de leucocitos. Infectio. 2020;24(2):103-107. https://repository.ucc.edu.co/handle/20.500.12494/49048 Simanca, F; Rodríguez. J; Paez, j.; Correa, S. Cortes, J. y Prieto, E. (2021). Design of a Holter Monitor for the Diagnosis of Neonatal Cardiac Dynamics. Advances in Mechanics Volume 9, Issue 3. openAccess Monitor Holter Dinámica cardiaca neonatal Holter monitor Cardiac dynamics Artículo 2021 ftunivccolomb https://doi.org/20.500.12494/49048 2024-01-21T19:12:26Z Cada año se reportan aproximadamente 4 millones de muertes neonatales y aproximadamente el 98% de los cuales ocurren en los países en desarrollo, donde el riesgo es 6 veces mayor que en los países desarrollados países. Por este motivo, se necesitan métodos de detección y diagnóstico precoz de alteraciones potencialmente mortales para evitar estos desenlaces. Recientemente, una metodología para la Se ha desarrollado una evaluación de la dinámica cardíaca neonatal, que ayuda a diferenciar de la dinámica cardíaca anormal contando los espacios ocupados por los atractores cardíacos caóticos. Para automatizar este método, se diseñó y construyó un monitor Holter para recién nacidos, junto con una herramienta de software que realiza pruebas de función cardíaca. Finalmente, se realizaron pruebas con el monitor Holter y el software desarrollado para evaluar la dinámica cardíaca de 100 pacientes, que validado el correcto funcionamiento de los dispositivos diseñados. De esta manera, la utilidad potencial de este desarrollo tecnológico está asociado a una disminución de la mortalidad neonatal ya que permite la detección de alteraciones en la dinámica cardíaca a través de un dispositivo ECG (electrocardiograma) y un método matemático que es independiente de la evaluación clínica. Every year, approximately 4 million neonatal deaths are reported, and approximately 98% of which occur in developing countries, where the risk is 6-fold higher than that in developed countries. For this reason, methods for the early detection and diagnosis of potentially lifethreatening alterations are needed to avoid these outcomes. Recently, a ethodology for the assessment of neonatal cardiac dynamics has been developed, which helps differentiate normal from abnormal cardiac dynamics by counting the spaces occupied by the chaotic cardiac attractors. In order to automate this method, a Holter monitor for newborn infants was designed and built, along with a software tool that performs cardiac function tests. Finally, tests were performed using the ... Article in Journal/Newspaper Arctic Repositorio Institucional UCC (Universidad Cooperativa de Colombia) |