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Monitoring the Evolution of Asynchrony between Mean Arterial Pressure and Mean Cerebral Blood Flow via Cross-Entropy Methods

Cerebrovascular control is carried out by multiple nonlinear mechanisms imposing a certain degree of coupling between mean arterial pressure (MAP) and mean cerebral blood flow (MCBF). We explored the ability of two nonlinear tools in the information domain, namely cross-approximate entropy (CApEn) a...

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Autores principales: Porta, Alberto, Gelpi, Francesca, Bari, Vlasta, Cairo, Beatrice, De Maria, Beatrice, Panzetti, Cora May, Cornara, Noemi, Bertoldo, Enrico Giuseppe, Fiolo, Valentina, Callus, Edward, De Vincentiis, Carlo, Volpe, Marianna, Molfetta, Raffaella, Pistuddi, Valeria, Ranucci, Marco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8774596/
https://www.ncbi.nlm.nih.gov/pubmed/35052106
http://dx.doi.org/10.3390/e24010080
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author Porta, Alberto
Gelpi, Francesca
Bari, Vlasta
Cairo, Beatrice
De Maria, Beatrice
Panzetti, Cora May
Cornara, Noemi
Bertoldo, Enrico Giuseppe
Fiolo, Valentina
Callus, Edward
De Vincentiis, Carlo
Volpe, Marianna
Molfetta, Raffaella
Pistuddi, Valeria
Ranucci, Marco
author_facet Porta, Alberto
Gelpi, Francesca
Bari, Vlasta
Cairo, Beatrice
De Maria, Beatrice
Panzetti, Cora May
Cornara, Noemi
Bertoldo, Enrico Giuseppe
Fiolo, Valentina
Callus, Edward
De Vincentiis, Carlo
Volpe, Marianna
Molfetta, Raffaella
Pistuddi, Valeria
Ranucci, Marco
author_sort Porta, Alberto
collection PubMed
description Cerebrovascular control is carried out by multiple nonlinear mechanisms imposing a certain degree of coupling between mean arterial pressure (MAP) and mean cerebral blood flow (MCBF). We explored the ability of two nonlinear tools in the information domain, namely cross-approximate entropy (CApEn) and cross-sample entropy (CSampEn), to assess the degree of asynchrony between the spontaneous fluctuations of MAP and MCBF. CApEn and CSampEn were computed as a function of the translation time. The analysis was carried out in 23 subjects undergoing recordings at rest in supine position (REST) and during active standing (STAND), before and after surgical aortic valve replacement (SAVR). We found that at REST the degree of asynchrony raised, and the rate of increase in asynchrony with the translation time decreased after SAVR. These results are likely the consequence of the limited variability of MAP observed after surgery at REST, more than the consequence of a modified cerebrovascular control, given that the observed differences disappeared during STAND. CApEn and CSampEn can be utilized fruitfully in the context of the evaluation of cerebrovascular control via the noninvasive acquisition of the spontaneous MAP and MCBF variability.
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spelling pubmed-87745962022-01-21 Monitoring the Evolution of Asynchrony between Mean Arterial Pressure and Mean Cerebral Blood Flow via Cross-Entropy Methods Porta, Alberto Gelpi, Francesca Bari, Vlasta Cairo, Beatrice De Maria, Beatrice Panzetti, Cora May Cornara, Noemi Bertoldo, Enrico Giuseppe Fiolo, Valentina Callus, Edward De Vincentiis, Carlo Volpe, Marianna Molfetta, Raffaella Pistuddi, Valeria Ranucci, Marco Entropy (Basel) Article Cerebrovascular control is carried out by multiple nonlinear mechanisms imposing a certain degree of coupling between mean arterial pressure (MAP) and mean cerebral blood flow (MCBF). We explored the ability of two nonlinear tools in the information domain, namely cross-approximate entropy (CApEn) and cross-sample entropy (CSampEn), to assess the degree of asynchrony between the spontaneous fluctuations of MAP and MCBF. CApEn and CSampEn were computed as a function of the translation time. The analysis was carried out in 23 subjects undergoing recordings at rest in supine position (REST) and during active standing (STAND), before and after surgical aortic valve replacement (SAVR). We found that at REST the degree of asynchrony raised, and the rate of increase in asynchrony with the translation time decreased after SAVR. These results are likely the consequence of the limited variability of MAP observed after surgery at REST, more than the consequence of a modified cerebrovascular control, given that the observed differences disappeared during STAND. CApEn and CSampEn can be utilized fruitfully in the context of the evaluation of cerebrovascular control via the noninvasive acquisition of the spontaneous MAP and MCBF variability. MDPI 2022-01-02 /pmc/articles/PMC8774596/ /pubmed/35052106 http://dx.doi.org/10.3390/e24010080 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Porta, Alberto
Gelpi, Francesca
Bari, Vlasta
Cairo, Beatrice
De Maria, Beatrice
Panzetti, Cora May
Cornara, Noemi
Bertoldo, Enrico Giuseppe
Fiolo, Valentina
Callus, Edward
De Vincentiis, Carlo
Volpe, Marianna
Molfetta, Raffaella
Pistuddi, Valeria
Ranucci, Marco
Monitoring the Evolution of Asynchrony between Mean Arterial Pressure and Mean Cerebral Blood Flow via Cross-Entropy Methods
title Monitoring the Evolution of Asynchrony between Mean Arterial Pressure and Mean Cerebral Blood Flow via Cross-Entropy Methods
title_full Monitoring the Evolution of Asynchrony between Mean Arterial Pressure and Mean Cerebral Blood Flow via Cross-Entropy Methods
title_fullStr Monitoring the Evolution of Asynchrony between Mean Arterial Pressure and Mean Cerebral Blood Flow via Cross-Entropy Methods
title_full_unstemmed Monitoring the Evolution of Asynchrony between Mean Arterial Pressure and Mean Cerebral Blood Flow via Cross-Entropy Methods
title_short Monitoring the Evolution of Asynchrony between Mean Arterial Pressure and Mean Cerebral Blood Flow via Cross-Entropy Methods
title_sort monitoring the evolution of asynchrony between mean arterial pressure and mean cerebral blood flow via cross-entropy methods
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8774596/
https://www.ncbi.nlm.nih.gov/pubmed/35052106
http://dx.doi.org/10.3390/e24010080
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