Cargando…

An augmented reality–based method to assess precordial electrocardiogram leads: a feasibility trial

AIMS: It has been demonstrated that several cardiac pathologies, including myocardial ischaemia, can be detected using smartwatch electrocardiograms (ECGs). Correct placement of bipolar chest leads remains a major challenge in the outpatient population. METHODS AND RESULTS: In this feasibility trial...

Descripción completa

Detalles Bibliográficos
Autores principales: Serfözö, Peter Daniel, Sandkühler, Robin, Blümke, Bibiana, Matthisson, Emil, Meier, Jana, Odermatt, Jolein, Badertscher, Patrick, Sticherling, Christian, Strebel, Ivo, Cattin, Philippe C, Eckstein, Jens
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10545517/
https://www.ncbi.nlm.nih.gov/pubmed/37794872
http://dx.doi.org/10.1093/ehjdh/ztad046
_version_ 1785114688507346944
author Serfözö, Peter Daniel
Sandkühler, Robin
Blümke, Bibiana
Matthisson, Emil
Meier, Jana
Odermatt, Jolein
Badertscher, Patrick
Sticherling, Christian
Strebel, Ivo
Cattin, Philippe C
Eckstein, Jens
author_facet Serfözö, Peter Daniel
Sandkühler, Robin
Blümke, Bibiana
Matthisson, Emil
Meier, Jana
Odermatt, Jolein
Badertscher, Patrick
Sticherling, Christian
Strebel, Ivo
Cattin, Philippe C
Eckstein, Jens
author_sort Serfözö, Peter Daniel
collection PubMed
description AIMS: It has been demonstrated that several cardiac pathologies, including myocardial ischaemia, can be detected using smartwatch electrocardiograms (ECGs). Correct placement of bipolar chest leads remains a major challenge in the outpatient population. METHODS AND RESULTS: In this feasibility trial, we propose an augmented reality–based smartphone app that guides the user to place the smartwatch in predefined positions on the chest using the front camera of a smartphone. A machine-learning model using MobileNet_v2 as the backbone was trained to detect the bipolar lead positions V1–V6 and visually project them onto the user’s chest. Following the smartwatch recordings, a conventional 10 s, 12-lead ECG was recorded for comparison purposes. All 50 patients participating in the study were able to conduct a 9-lead smartwatch ECG using the app and assistance from the study team. Twelve patients were able to record all the limb and chest leads using the app without additional support. Bipolar chest leads recorded with smartwatch ECGs were assigned to standard unipolar Wilson leads by blinded cardiologists based on visual characteristics. In every lead, at least 86% of the ECGs were assigned correctly, indicating the remarkable similarity of the smartwatch to standard ECG recordings. CONCLUSION: We have introduced an augmented reality–based method to independently record multichannel smartwatch ECGs in an outpatient setting.
format Online
Article
Text
id pubmed-10545517
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-105455172023-10-04 An augmented reality–based method to assess precordial electrocardiogram leads: a feasibility trial Serfözö, Peter Daniel Sandkühler, Robin Blümke, Bibiana Matthisson, Emil Meier, Jana Odermatt, Jolein Badertscher, Patrick Sticherling, Christian Strebel, Ivo Cattin, Philippe C Eckstein, Jens Eur Heart J Digit Health Original Article AIMS: It has been demonstrated that several cardiac pathologies, including myocardial ischaemia, can be detected using smartwatch electrocardiograms (ECGs). Correct placement of bipolar chest leads remains a major challenge in the outpatient population. METHODS AND RESULTS: In this feasibility trial, we propose an augmented reality–based smartphone app that guides the user to place the smartwatch in predefined positions on the chest using the front camera of a smartphone. A machine-learning model using MobileNet_v2 as the backbone was trained to detect the bipolar lead positions V1–V6 and visually project them onto the user’s chest. Following the smartwatch recordings, a conventional 10 s, 12-lead ECG was recorded for comparison purposes. All 50 patients participating in the study were able to conduct a 9-lead smartwatch ECG using the app and assistance from the study team. Twelve patients were able to record all the limb and chest leads using the app without additional support. Bipolar chest leads recorded with smartwatch ECGs were assigned to standard unipolar Wilson leads by blinded cardiologists based on visual characteristics. In every lead, at least 86% of the ECGs were assigned correctly, indicating the remarkable similarity of the smartwatch to standard ECG recordings. CONCLUSION: We have introduced an augmented reality–based method to independently record multichannel smartwatch ECGs in an outpatient setting. Oxford University Press 2023-07-27 /pmc/articles/PMC10545517/ /pubmed/37794872 http://dx.doi.org/10.1093/ehjdh/ztad046 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of the European Society of Cardiology. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Original Article
Serfözö, Peter Daniel
Sandkühler, Robin
Blümke, Bibiana
Matthisson, Emil
Meier, Jana
Odermatt, Jolein
Badertscher, Patrick
Sticherling, Christian
Strebel, Ivo
Cattin, Philippe C
Eckstein, Jens
An augmented reality–based method to assess precordial electrocardiogram leads: a feasibility trial
title An augmented reality–based method to assess precordial electrocardiogram leads: a feasibility trial
title_full An augmented reality–based method to assess precordial electrocardiogram leads: a feasibility trial
title_fullStr An augmented reality–based method to assess precordial electrocardiogram leads: a feasibility trial
title_full_unstemmed An augmented reality–based method to assess precordial electrocardiogram leads: a feasibility trial
title_short An augmented reality–based method to assess precordial electrocardiogram leads: a feasibility trial
title_sort augmented reality–based method to assess precordial electrocardiogram leads: a feasibility trial
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10545517/
https://www.ncbi.nlm.nih.gov/pubmed/37794872
http://dx.doi.org/10.1093/ehjdh/ztad046
work_keys_str_mv AT serfozopeterdaniel anaugmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial
AT sandkuhlerrobin anaugmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial
AT blumkebibiana anaugmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial
AT matthissonemil anaugmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial
AT meierjana anaugmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial
AT odermattjolein anaugmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial
AT badertscherpatrick anaugmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial
AT sticherlingchristian anaugmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial
AT strebelivo anaugmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial
AT cattinphilippec anaugmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial
AT ecksteinjens anaugmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial
AT serfozopeterdaniel augmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial
AT sandkuhlerrobin augmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial
AT blumkebibiana augmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial
AT matthissonemil augmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial
AT meierjana augmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial
AT odermattjolein augmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial
AT badertscherpatrick augmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial
AT sticherlingchristian augmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial
AT strebelivo augmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial
AT cattinphilippec augmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial
AT ecksteinjens augmentedrealitybasedmethodtoassessprecordialelectrocardiogramleadsafeasibilitytrial