Development and Calibration of a PATCH Device for Monitoring Children’s Heart Rate and Acceleration

Author:

ARMSTRONG BRIDGET1,WEAVER R. GLENN1,MCANINCH JONAS2,SMITH MICHAL T.1,PARKER HANNAH1,LANE ABBI D.1,WANG YUAN3,PATE RUSSELL R.1,RAHMAN MAFRUDA2,MATOLAK DAVID W.2,CHANDRASHEKHAR M. V. S.2

Affiliation:

1. Department of Exercise Science, University of South Carolina, Columbia, SC

2. Department of Electrical Engineering, University of South Carolina, Columbia, SC

3. Epidemiology and Biostatistics at the University of South Carlina, Columbia, SC

Abstract

ABSTRACT Introduction Current wearables that collect heart rate and acceleration were not designed for children and/or do not allow access to raw signals, making them fundamentally unverifiable. This study describes the creation and calibration of an open-source multichannel platform (PATCH) designed to measure heart rate and acceleration in children ages 3–8 yr. Methods Children (N = 63; mean age, 6.3 yr) participated in a 45-min protocol ranging in intensities from sedentary to vigorous activity. Actiheart-5 was used as a comparison measure. We calculated mean bias, mean absolute error (MAE) mean absolute percent error (MA%E), Pearson correlations, and Lin’s concordance correlation coefficient (CCC). Results Mean bias between PATCH and Actiheart heart rate was 2.26 bpm, MAE was 6.67 bpm, and M%E was 5.99%. The correlation between PATCH and Actiheart heart rate was 0.89, and CCC was 0.88. For acceleration, mean bias was 1.16 mg and MAE was 12.24 mg. The correlation between PATCH and Actiheart was 0.96, and CCC was 0.95. Conclusions The PATCH demonstrated clinically acceptable accuracies to measure heart rate and acceleration compared with a research-grade device.

Publisher

Ovid Technologies (Wolters Kluwer Health)

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