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Noncontact Monitoring of Heart Rate Variability Using a Fiber Optic Sensor

Tao Zhao, Xuelei Fu, Yinghong Zhou, Jing Zhan, Kewei Chen, Zhengying Li

2023IEEE Internet of Things Journal32 citationsDOI

Abstract

Heart rate variability (HRV) is widely investigated to provide early warning signs for cardiovascular diseases (CVDs). However, traditional HRV monitoring methods are inconvenient in daily long-term continuous monitoring due to the uncomfortable direct contact of the devices with the skin. In this work, we present a ballistocardiogram (BCG)-based system for long-term HRV monitoring in a noncontact mode. BCG signals can reflect the mechanical activity of the heart, from which the beat-to-beat interval (BBI) can be extracted for HRV analysis. An effective solution is demonstrated for accurate and steady BCG signal detection using a highly sensitive fiber-optic sensor. A robust heartbeat extraction algorithm based on the deep-learning method is proposed to improve the accuracy of the BBI extraction. Continuous wavelet transform (CWT) is introduced to facilitate feature extraction against the variation of morphological characteristics of BCG signal. The accuracy of BBI estimation presents a median error of 4.4 ms, indicating the effectiveness and feasibility of the proposed system. This work is expected to pave a new and practical pathway for household HRV monitoring during sleep.

Topics & Concepts

Heart rate variabilityComputer scienceFeature extractionHeartbeatWavelet transformContinuous monitoringHeart beatContinuous wavelet transformBallistocardiographyWaveletRemote patient monitoringSignal processingArtificial intelligencePattern recognition (psychology)Warning systemSIGNAL (programming language)Real-time computingHeart rateDiscrete wavelet transformEngineeringTelecommunicationsMedicineRadarBlood pressureOperations managementInternal medicineComputer securityProgramming languageRadiologyNon-Invasive Vital Sign MonitoringHeart Rate Variability and Autonomic ControlECG Monitoring and Analysis
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