Diseño e implementación de un sistema de adquisición de señales ecg en tiempo real utilizando la tecnología long term evolution (LTE)

This project makes the acquisition of ECG signal, for measurement and control who present some problems such as overweight, diabetes, substance abuse and in people with congenital heart defects, due to their condition Health require excellent nutrition and proper care in the supply of medications, t...

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Bibliographic Details
Main Author: Gustavo Javier, Guevara Vásconez (author)
Format: bachelorThesis
Language:spa
Published: 2019
Subjects:
Online Access:http://dspace.unach.edu.ec/handle/51000/6202
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Summary:This project makes the acquisition of ECG signal, for measurement and control who present some problems such as overweight, diabetes, substance abuse and in people with congenital heart defects, due to their condition Health require excellent nutrition and proper care in the supply of medications, the inappropriate use of medical prescription or omission of this tends to cause conditions in the patient's body. The acquisition of the ECG signal made through the AD8232 heart allowing the monitoring of the heart rhythm while the patient is resting or performing a daily activity, this signal is processed by an ARDUINO development board based on microcontrollers in order to allow the sign to be displayed, the transmission of the ECG signal by 4G / LTE is carried out by means of a server created by ARDUINO and the coupling of the SIM7100A module. Patient monitoring is carried out using a device that controls electrocardiographic signals. The results obtained are observed on a graphic screen and simultaneously on a web page, at the same time these results stored in a database, at the time a complication is recorded, that is, an abrupt variation of the ECG signal in the system, this will send an alert message to the trusted doctor or the person in charge of patient care, through the LTE network. Behavior tests of the server with different platforms were carried out through variable to the website design, the EMQ X Broker platform based on the MQTT protocol (Message Queue Telemetry Transform) proved to be efficient for projects, an example of the use of this protocol is the Facebook Messenger application for mobile devices. Extensive feasibility saw for the design of prototypes with LTE communication thanks to the fact that they allow greater mobility and large volumes of data transmitted in real-time. The application has allowed me to expand the knowledge of medical technology or telemedicine, which requires great service so that patients are properly treated and have a decent and healthy standard of living.