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Wrist Band Photoplethysmography Autocorrelation Analysis Enables Detection of Atrial Fibrillation Without Pulse Detection

Atrial fibrillation is often asymptomatic and intermittent making its detection challenging. A photoplethysmography (PPG) provides a promising option for atrial fibrillation detection. However, the shapes of pulse waves vary in atrial fibrillation decreasing pulse and atrial fibrillation detection a...

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Autores principales: Väliaho, Eemu-Samuli, Kuoppa, Pekka, Lipponen, Jukka A., Hartikainen, Juha E. K., Jäntti, Helena, Rissanen, Tuomas T., Kolk, Indrek, Pohjantähti-Maaroos, Hanna, Castrén, Maaret, Halonen, Jari, Tarvainen, Mika P., Santala, Onni E., Martikainen, Tero J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8138449/
https://www.ncbi.nlm.nih.gov/pubmed/34025448
http://dx.doi.org/10.3389/fphys.2021.654555
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author Väliaho, Eemu-Samuli
Kuoppa, Pekka
Lipponen, Jukka A.
Hartikainen, Juha E. K.
Jäntti, Helena
Rissanen, Tuomas T.
Kolk, Indrek
Pohjantähti-Maaroos, Hanna
Castrén, Maaret
Halonen, Jari
Tarvainen, Mika P.
Santala, Onni E.
Martikainen, Tero J.
author_facet Väliaho, Eemu-Samuli
Kuoppa, Pekka
Lipponen, Jukka A.
Hartikainen, Juha E. K.
Jäntti, Helena
Rissanen, Tuomas T.
Kolk, Indrek
Pohjantähti-Maaroos, Hanna
Castrén, Maaret
Halonen, Jari
Tarvainen, Mika P.
Santala, Onni E.
Martikainen, Tero J.
author_sort Väliaho, Eemu-Samuli
collection PubMed
description Atrial fibrillation is often asymptomatic and intermittent making its detection challenging. A photoplethysmography (PPG) provides a promising option for atrial fibrillation detection. However, the shapes of pulse waves vary in atrial fibrillation decreasing pulse and atrial fibrillation detection accuracy. This study evaluated ten robust photoplethysmography features for detection of atrial fibrillation. The study was a national multi-center clinical study in Finland and the data were combined from two broader research projects (NCT03721601, URL: https://clinicaltrials.gov/ct2/show/NCT03721601 and NCT03753139, URL: https://clinicaltrials.gov/ct2/show/NCT03753139). A photoplethysmography signal was recorded with a wrist band. Five pulse interval variability, four amplitude features and a novel autocorrelation-based morphology feature were calculated and evaluated independently as predictors of atrial fibrillation. A multivariate predictor model including only the most significant features was established. The models were 10-fold cross-validated. 359 patients were included in the study (atrial fibrillation n = 169, sinus rhythm n = 190). The autocorrelation univariate predictor model detected atrial fibrillation with the highest area under receiver operating characteristic curve (AUC) value of 0.982 (sensitivity 95.1%, specificity 93.7%). Autocorrelation was also the most significant individual feature (p < 0.00001) in the multivariate predictor model, detecting atrial fibrillation with AUC of 0.993 (sensitivity 96.4%, specificity 96.3%). Our results demonstrated that the autocorrelation independently detects atrial fibrillation reliably without the need of pulse detection. Combining pulse wave morphology-based features such as autocorrelation with information from pulse-interval variability it is possible to detect atrial fibrillation with high accuracy with a commercial wrist band. Photoplethysmography wrist bands accompanied with atrial fibrillation detection algorithms utilizing autocorrelation could provide a computationally very effective and reliable wearable monitoring method in screening of atrial fibrillation.
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spelling pubmed-81384492021-05-22 Wrist Band Photoplethysmography Autocorrelation Analysis Enables Detection of Atrial Fibrillation Without Pulse Detection Väliaho, Eemu-Samuli Kuoppa, Pekka Lipponen, Jukka A. Hartikainen, Juha E. K. Jäntti, Helena Rissanen, Tuomas T. Kolk, Indrek Pohjantähti-Maaroos, Hanna Castrén, Maaret Halonen, Jari Tarvainen, Mika P. Santala, Onni E. Martikainen, Tero J. Front Physiol Physiology Atrial fibrillation is often asymptomatic and intermittent making its detection challenging. A photoplethysmography (PPG) provides a promising option for atrial fibrillation detection. However, the shapes of pulse waves vary in atrial fibrillation decreasing pulse and atrial fibrillation detection accuracy. This study evaluated ten robust photoplethysmography features for detection of atrial fibrillation. The study was a national multi-center clinical study in Finland and the data were combined from two broader research projects (NCT03721601, URL: https://clinicaltrials.gov/ct2/show/NCT03721601 and NCT03753139, URL: https://clinicaltrials.gov/ct2/show/NCT03753139). A photoplethysmography signal was recorded with a wrist band. Five pulse interval variability, four amplitude features and a novel autocorrelation-based morphology feature were calculated and evaluated independently as predictors of atrial fibrillation. A multivariate predictor model including only the most significant features was established. The models were 10-fold cross-validated. 359 patients were included in the study (atrial fibrillation n = 169, sinus rhythm n = 190). The autocorrelation univariate predictor model detected atrial fibrillation with the highest area under receiver operating characteristic curve (AUC) value of 0.982 (sensitivity 95.1%, specificity 93.7%). Autocorrelation was also the most significant individual feature (p < 0.00001) in the multivariate predictor model, detecting atrial fibrillation with AUC of 0.993 (sensitivity 96.4%, specificity 96.3%). Our results demonstrated that the autocorrelation independently detects atrial fibrillation reliably without the need of pulse detection. Combining pulse wave morphology-based features such as autocorrelation with information from pulse-interval variability it is possible to detect atrial fibrillation with high accuracy with a commercial wrist band. Photoplethysmography wrist bands accompanied with atrial fibrillation detection algorithms utilizing autocorrelation could provide a computationally very effective and reliable wearable monitoring method in screening of atrial fibrillation. Frontiers Media S.A. 2021-05-07 /pmc/articles/PMC8138449/ /pubmed/34025448 http://dx.doi.org/10.3389/fphys.2021.654555 Text en Copyright © 2021 Väliaho, Kuoppa, Lipponen, Hartikainen, Jäntti, Rissanen, Kolk, Pohjantähti-Maaroos, Castrén, Halonen, Tarvainen, Santala and Martikainen. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Physiology
Väliaho, Eemu-Samuli
Kuoppa, Pekka
Lipponen, Jukka A.
Hartikainen, Juha E. K.
Jäntti, Helena
Rissanen, Tuomas T.
Kolk, Indrek
Pohjantähti-Maaroos, Hanna
Castrén, Maaret
Halonen, Jari
Tarvainen, Mika P.
Santala, Onni E.
Martikainen, Tero J.
Wrist Band Photoplethysmography Autocorrelation Analysis Enables Detection of Atrial Fibrillation Without Pulse Detection
title Wrist Band Photoplethysmography Autocorrelation Analysis Enables Detection of Atrial Fibrillation Without Pulse Detection
title_full Wrist Band Photoplethysmography Autocorrelation Analysis Enables Detection of Atrial Fibrillation Without Pulse Detection
title_fullStr Wrist Band Photoplethysmography Autocorrelation Analysis Enables Detection of Atrial Fibrillation Without Pulse Detection
title_full_unstemmed Wrist Band Photoplethysmography Autocorrelation Analysis Enables Detection of Atrial Fibrillation Without Pulse Detection
title_short Wrist Band Photoplethysmography Autocorrelation Analysis Enables Detection of Atrial Fibrillation Without Pulse Detection
title_sort wrist band photoplethysmography autocorrelation analysis enables detection of atrial fibrillation without pulse detection
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8138449/
https://www.ncbi.nlm.nih.gov/pubmed/34025448
http://dx.doi.org/10.3389/fphys.2021.654555
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