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Textile-based Wearable to Monitor Heart Activity in Paediatric Population: A Pilot Study

Nasim Montazeri Ghahjaverestan, Diana Balmer‐Minnes, Behrad TaghiBeyglou, Bastien Moineau, Gabriela Villaça Chaves, Milad Alizadeh-Meghrazi, Barbara Cifra, Aamir Jeewa, Azadeh Yadollahi

2023CJC Pediatric and Congenital Heart Disease11 citationsDOIOpen Access PDF

Abstract

Background: Cardiac monitoring for children with heart disease still employs common clinical techniques that require visits to hospital either in an ambulatory or inpatient setting. Frequent cardiac monitoring, such as heart rate monitoring, can limit children's physical activity and quality of life. The main objective of this study is to evaluate the performance of a textile-based device (SKIIN) in measuring heart rate (HR) in different tasks: lying down, sitting, standing, exercising, and cooling down. Methods: Twenty participants including healthy children and children with heart disease were included in this study. The difference between the HRs recorded by the SKIIN was compared with a reference electrocardiogram collection by normalized root mean squared error. Participants completed a questionnaire on their experience wearing the textile device with additional parental feedback on the textile device collected. Results: > 0.05). The normalized root mean squared error was 3.8% ± 3.0% and 3.6% ± 3.7% for healthy and the heart disease groups, respectively. All participants found the textile device non-irritating and easy to wear. Conclusions: This study provides proof of concept that HR can be robustly and conveniently monitored by smart textiles, with similar accuracy to standard-of-care devices.

Topics & Concepts

SittingHeart rateMedicineAmbulatoryBody surface areaPopulationHeart diseaseWearable computerBody positionHeart rate monitorWearable technologyPhysical therapyPhysical medicine and rehabilitationCardiologySurgeryInternal medicineComputer scienceBlood pressurePathologyEnvironmental healthEmbedded systemNon-Invasive Vital Sign MonitoringAdvanced Sensor and Energy Harvesting MaterialsMobile Health and mHealth Applications
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