Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Vital Block and Vital Sign Server for ECG and Vital Sign Monitoring in a Portable u-Vital System

View through CrossRef
An important function in the future healthcare system involves measuring a patient’s vital signs, transmitting the measured vital signs to a smart device or a management server, analyzing it in real-time, and informing the patient or medical staff. Internet of Medical Things (IoMT) incorporates information technology (IT) into patient monitoring device (PMD) and is developing traditional measurement devices into healthcare information systems. In the study, a portable ubiquitous-Vital (u-Vital) system is developed and consists of a Vital Block (VB), a small PMD, and Vital Sign Server (VSS), which stores and manages measured vital signs. Specifically, VBs collect a patient’s electrocardiogram (ECG), blood oxygen saturation (SpO2), non-invasive blood pressure (NiBP), body temperature (BT) in real-time, and the collected vital signs are transmitted to a VSS via wireless protocols such as WiFi and Bluetooth. Additionally, an efficient R-point detection algorithm was also proposed for real-time processing and long-term ECG analysis. Experiments demonstrated the effectiveness of measurement, transmission, and analysis of vital signs in the proposed portable u-Vital system.
Title: Vital Block and Vital Sign Server for ECG and Vital Sign Monitoring in a Portable u-Vital System
Description:
An important function in the future healthcare system involves measuring a patient’s vital signs, transmitting the measured vital signs to a smart device or a management server, analyzing it in real-time, and informing the patient or medical staff.
Internet of Medical Things (IoMT) incorporates information technology (IT) into patient monitoring device (PMD) and is developing traditional measurement devices into healthcare information systems.
In the study, a portable ubiquitous-Vital (u-Vital) system is developed and consists of a Vital Block (VB), a small PMD, and Vital Sign Server (VSS), which stores and manages measured vital signs.
Specifically, VBs collect a patient’s electrocardiogram (ECG), blood oxygen saturation (SpO2), non-invasive blood pressure (NiBP), body temperature (BT) in real-time, and the collected vital signs are transmitted to a VSS via wireless protocols such as WiFi and Bluetooth.
Additionally, an efficient R-point detection algorithm was also proposed for real-time processing and long-term ECG analysis.
Experiments demonstrated the effectiveness of measurement, transmission, and analysis of vital signs in the proposed portable u-Vital system.

Related Results

Inter-beat and intra-beat ECG interval analysis based on state space and hidden markov models
Inter-beat and intra-beat ECG interval analysis based on state space and hidden markov models
Analyse des intervalles ECG inter- et intra-battement sur des modèles d'espace d'état et de Markov cachés Les maladies cardiovasculaires sont l'une des principales ...
Complex Deep Learning Models for Denoising of Human Heart ECG signals
Complex Deep Learning Models for Denoising of Human Heart ECG signals
Effective and powerful methods for denoising real electrocardiogram (ECG) signals are important for wearable sensors and devices. Deep Learning (DL) models have been used extensive...
Self-Supervised Electrocardiograph De-noising
Self-Supervised Electrocardiograph De-noising
Abstract The electrocardiogram (ECG) records heart-beats and is potentially life-saving. However, the ECG signals (e.g., recorded by the standard ECG monitoring sys...
How Third Party Observers Respond to Overheard Service Failures: Implications for Frontline Service Employees and the Firm
How Third Party Observers Respond to Overheard Service Failures: Implications for Frontline Service Employees and the Firm
Frontline service employees and unhappy customers have generally been the main focus of the service failures research. It is established that service failures are difficult to prev...
Development of AI-based method to detect the subtle ECG deviations from the population ECG norm
Development of AI-based method to detect the subtle ECG deviations from the population ECG norm
Abstract Funding Acknowledgements Type of funding sources: Public grant(s) – National budget only. Main funding source(s): Natio...
How Can We Identify the Best Implantation Site for an ECG Event Recorder?
How Can We Identify the Best Implantation Site for an ECG Event Recorder?
ZELLERHOFF, C., et al.: How Can We Identify the Best Implantation Site for an ECG Event Recorder? The aim of this study was to show how to find the preferable implantation site for...
A novel fetal ecg signal extraction from maternal ecg signal using conditional generative adversarial networks (CGAN)
A novel fetal ecg signal extraction from maternal ecg signal using conditional generative adversarial networks (CGAN)
Fetal Electrocardiogram (ECG) signal extraction from non-invasive abdominal ECG signal is one of the important clinical practices followed to observe the fetal health state. Inform...
A Fetal ECG Monitoring System Based on the Android Smartphone
A Fetal ECG Monitoring System Based on the Android Smartphone
In this paper, a fetal electrocardiogram (ECG) monitoring system based on the Android smartphone was proposed. We designed a portable low-power fetal ECG collector, which collected...

Back to Top