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Implantable Cardioverter Defibrillator Multisensor Monitoring during Home Confinement Caused by the COVID-19 Pandemic

SIMPLE SUMMARY: During the COVID-19 pandemic, utilization of remote monitoring platforms was recommended. The HeartLogic algorithm identifies patients at risk of heart failure events, combining multiple sensors available on implantable cardioverter defibrillators. This analysis examined how multiple...

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Autores principales: Ziacchi, Matteo, Calò, Leonardo, D’Onofrio, Antonio, Manzo, Michele, Dello Russo, Antonio, Santini, Luca, Giubilato, Giovanna, Carriere, Cosimo, Santobuono, Vincenzo Ezio, Savarese, Gianluca, La Greca, Carmelo, Arena, Giuseppe, Talarico, Antonello, Pisanò, Ennio, Giammaria, Massimo, Pangallo, Antonio, Campari, Monica, Valsecchi, Sergio, Diemberger, Igor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8772791/
https://www.ncbi.nlm.nih.gov/pubmed/35053117
http://dx.doi.org/10.3390/biology11010120
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author Ziacchi, Matteo
Calò, Leonardo
D’Onofrio, Antonio
Manzo, Michele
Dello Russo, Antonio
Santini, Luca
Giubilato, Giovanna
Carriere, Cosimo
Santobuono, Vincenzo Ezio
Savarese, Gianluca
La Greca, Carmelo
Arena, Giuseppe
Talarico, Antonello
Pisanò, Ennio
Giammaria, Massimo
Pangallo, Antonio
Campari, Monica
Valsecchi, Sergio
Diemberger, Igor
author_facet Ziacchi, Matteo
Calò, Leonardo
D’Onofrio, Antonio
Manzo, Michele
Dello Russo, Antonio
Santini, Luca
Giubilato, Giovanna
Carriere, Cosimo
Santobuono, Vincenzo Ezio
Savarese, Gianluca
La Greca, Carmelo
Arena, Giuseppe
Talarico, Antonello
Pisanò, Ennio
Giammaria, Massimo
Pangallo, Antonio
Campari, Monica
Valsecchi, Sergio
Diemberger, Igor
author_sort Ziacchi, Matteo
collection PubMed
description SIMPLE SUMMARY: During the COVID-19 pandemic, utilization of remote monitoring platforms was recommended. The HeartLogic algorithm identifies patients at risk of heart failure events, combining multiple sensors available on implantable cardioverter defibrillators. This analysis examined how multiple CIED sensors behave in periods of anticipated restrictions pertaining to physical activity. We demonstrated a significant drop in median activity level immediately after the implementation of stay-at-home orders, whereas there was no difference in the other contributing sensors. The weekly rate of heart failure alerts was significantly higher during the lockdown and post-lockdown than that reported in the pre-lockdown. ABSTRACT: Aims: The utilization of remote monitoring platforms was recommended amidst the COVID-19 pandemic. The HeartLogic index combines multiple implantable cardioverter defibrillator (ICD) sensors and has proved to be a predictor of impending heart failure (HF) decompensation. We examined how multiple ICD sensors behave in the periods of anticipated restrictions pertaining to physical activity. Methods: The HeartLogic feature was active in 349 ICD and cardiac resynchronization therapy ICD patients at 20 Italian centers. The period from 1 January to 19 July 2020, was divided into three phases: pre-lockdown (weeks 1–11), lockdown (weeks 12–20), post-lockdown (weeks 21–29). Results: Immediately after the implementation of stay-at-home orders (week 12), we observed a significant drop in median activity level whereas there was no difference in the other contributing parameters. The median composite HeartLogic index increased at the end of the Lockdown. The weekly rate of alerts was significantly higher during the lockdown (1.56 alerts/week/100 pts, 95%CI: 1.15–2.06; IRR = 1.71, p = 0.014) and post-lockdown (1.37 alerts/week/100 pts, 95%CI: 0.99–1.84; IRR = 1.50, p = 0.072) than that reported in pre-lockdown (0.91 alerts/week/100 pts, 95%CI: 0.64–1.27). However, the median duration of alert state and the maximum index value did not change among phases, as well as the proportion of alerts followed by clinical actions at the centers and the proportion of alerts fully managed remotely. Conclusions: During the lockdown, the system detected a significant drop in the median activity level and generated a higher rate of alerts suggestive of worsening of the HF status.
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spelling pubmed-87727912022-01-21 Implantable Cardioverter Defibrillator Multisensor Monitoring during Home Confinement Caused by the COVID-19 Pandemic Ziacchi, Matteo Calò, Leonardo D’Onofrio, Antonio Manzo, Michele Dello Russo, Antonio Santini, Luca Giubilato, Giovanna Carriere, Cosimo Santobuono, Vincenzo Ezio Savarese, Gianluca La Greca, Carmelo Arena, Giuseppe Talarico, Antonello Pisanò, Ennio Giammaria, Massimo Pangallo, Antonio Campari, Monica Valsecchi, Sergio Diemberger, Igor Biology (Basel) Article SIMPLE SUMMARY: During the COVID-19 pandemic, utilization of remote monitoring platforms was recommended. The HeartLogic algorithm identifies patients at risk of heart failure events, combining multiple sensors available on implantable cardioverter defibrillators. This analysis examined how multiple CIED sensors behave in periods of anticipated restrictions pertaining to physical activity. We demonstrated a significant drop in median activity level immediately after the implementation of stay-at-home orders, whereas there was no difference in the other contributing sensors. The weekly rate of heart failure alerts was significantly higher during the lockdown and post-lockdown than that reported in the pre-lockdown. ABSTRACT: Aims: The utilization of remote monitoring platforms was recommended amidst the COVID-19 pandemic. The HeartLogic index combines multiple implantable cardioverter defibrillator (ICD) sensors and has proved to be a predictor of impending heart failure (HF) decompensation. We examined how multiple ICD sensors behave in the periods of anticipated restrictions pertaining to physical activity. Methods: The HeartLogic feature was active in 349 ICD and cardiac resynchronization therapy ICD patients at 20 Italian centers. The period from 1 January to 19 July 2020, was divided into three phases: pre-lockdown (weeks 1–11), lockdown (weeks 12–20), post-lockdown (weeks 21–29). Results: Immediately after the implementation of stay-at-home orders (week 12), we observed a significant drop in median activity level whereas there was no difference in the other contributing parameters. The median composite HeartLogic index increased at the end of the Lockdown. The weekly rate of alerts was significantly higher during the lockdown (1.56 alerts/week/100 pts, 95%CI: 1.15–2.06; IRR = 1.71, p = 0.014) and post-lockdown (1.37 alerts/week/100 pts, 95%CI: 0.99–1.84; IRR = 1.50, p = 0.072) than that reported in pre-lockdown (0.91 alerts/week/100 pts, 95%CI: 0.64–1.27). However, the median duration of alert state and the maximum index value did not change among phases, as well as the proportion of alerts followed by clinical actions at the centers and the proportion of alerts fully managed remotely. Conclusions: During the lockdown, the system detected a significant drop in the median activity level and generated a higher rate of alerts suggestive of worsening of the HF status. MDPI 2022-01-12 /pmc/articles/PMC8772791/ /pubmed/35053117 http://dx.doi.org/10.3390/biology11010120 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
Ziacchi, Matteo
Calò, Leonardo
D’Onofrio, Antonio
Manzo, Michele
Dello Russo, Antonio
Santini, Luca
Giubilato, Giovanna
Carriere, Cosimo
Santobuono, Vincenzo Ezio
Savarese, Gianluca
La Greca, Carmelo
Arena, Giuseppe
Talarico, Antonello
Pisanò, Ennio
Giammaria, Massimo
Pangallo, Antonio
Campari, Monica
Valsecchi, Sergio
Diemberger, Igor
Implantable Cardioverter Defibrillator Multisensor Monitoring during Home Confinement Caused by the COVID-19 Pandemic
title Implantable Cardioverter Defibrillator Multisensor Monitoring during Home Confinement Caused by the COVID-19 Pandemic
title_full Implantable Cardioverter Defibrillator Multisensor Monitoring during Home Confinement Caused by the COVID-19 Pandemic
title_fullStr Implantable Cardioverter Defibrillator Multisensor Monitoring during Home Confinement Caused by the COVID-19 Pandemic
title_full_unstemmed Implantable Cardioverter Defibrillator Multisensor Monitoring during Home Confinement Caused by the COVID-19 Pandemic
title_short Implantable Cardioverter Defibrillator Multisensor Monitoring during Home Confinement Caused by the COVID-19 Pandemic
title_sort implantable cardioverter defibrillator multisensor monitoring during home confinement caused by the covid-19 pandemic
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8772791/
https://www.ncbi.nlm.nih.gov/pubmed/35053117
http://dx.doi.org/10.3390/biology11010120
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