Monitoring Real-Time ECG Signals on Mobile Systems

Fuente: arXiv
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Main Author: Yuksel, Beyazit Bestami
Format: Preprint
Published: 2025
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author Yuksel, Beyazit Bestami
author_facet Yuksel, Beyazit Bestami
contents This study focuses on the connection of a development kit that enables real-time monitoring of electrocardiogram (ECG) signals using a mobile system. A software developed on the Visual Studio .NET platform reads real-time ECG signals from the human body through non invasive methods and displays them graphically on the mobile system. ECG electrodes placed on specific areas of the body using the method known as Einthoven's triangle. Subsequently, the software initiates data flow through the serial port, and these data displayed as signal values on the mobile device's screen via a graphical interface. When the monitored ECG signals fall below a certain threshold or reach a critical value, the system provides feedback with an alert based on medical data. The developed system is fully portable. Additionally, the implemented system has the potential to form the basis for a multi-purpose system in the future, such as online patient monitoring, patient location tracking, and even initial intervention using the defibrillation method.
format Preprint
id arxiv_https___arxiv_org_abs_2510_21789
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Monitoring Real-Time ECG Signals on Mobile Systems
Yuksel, Beyazit Bestami
Signal Processing
Human-Computer Interaction
This study focuses on the connection of a development kit that enables real-time monitoring of electrocardiogram (ECG) signals using a mobile system. A software developed on the Visual Studio .NET platform reads real-time ECG signals from the human body through non invasive methods and displays them graphically on the mobile system. ECG electrodes placed on specific areas of the body using the method known as Einthoven's triangle. Subsequently, the software initiates data flow through the serial port, and these data displayed as signal values on the mobile device's screen via a graphical interface. When the monitored ECG signals fall below a certain threshold or reach a critical value, the system provides feedback with an alert based on medical data. The developed system is fully portable. Additionally, the implemented system has the potential to form the basis for a multi-purpose system in the future, such as online patient monitoring, patient location tracking, and even initial intervention using the defibrillation method.
title Monitoring Real-Time ECG Signals on Mobile Systems
topic Signal Processing
Human-Computer Interaction
url https://arxiv.org/abs/2510.21789