A NOVEL BCG SENSOR-ARRAY FOR UNOBTRUSIVE CARDIAC MONITORING

Author:

Böhm Anna,Brüser Christoph,Leonhardt Steffen Leonhardt

Abstract

Unobtrusive heart rate monitoring is a popular research topic in biomedical engineering. The reason is that convential methods, e.g. the clinical gold standard electrocardiography, require conductive contact to the human body. Other methods such as ballistocardiography try to record these vital signs without electrodes that are attached to the body. So far, these systems cannot replace routine procedures. Most systems have some drawbacks that cannot be compensated, such as aging of the sensor materials or movement artifacts. In addition, the signal form differs greatly from an ECG, which is an electrical signal. The ballistocardiogram has a mechanical source, which makes it harder to evaluate. We have developed a new sensor array made of near-IR-LEDs to record BCGs. IR-sensors do not age in relevant time scales. Analog filtering was neccesary, because the signal amplitude was very small. The digitized data was then processed by various algorithms to extract beat-to-beat or breath-to-breath intervals. The redundancy of multiple BCG channels was used to provide a robust estimation of beat-to-beat intervals and heart rate. We installed the system beneath a mattress topper of a hospital bed, but any other bed would have been sufficient. The validation of this measurement system shows that it is well suited for BCG recordings. The use of multiple channels has proven to be superior to relying on a single BCG channel.

Publisher

Czech Technical University in Prague - Central Library

Subject

General Engineering

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Improving the QRS detection for one-channel ECG sensor;Technology and Health Care;2019-11-07

2. A Framework of an Unconstrained Sleep Monitoring System;Proceedings of the 2018 6th International Conference on Bioinformatics and Computational Biology;2018-03-12

3. Physiological Signal Monitoring Bed for Infants Based on Load-Cell Sensors;Sensors;2016-03-19

4. Fiber bragg grating sensor based device for simultaneous measurement of respiratory and cardiac activities;Journal of Biophotonics;2016-03-04

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