The growing demand within the healthcare sector underscores the need for a sophisticated and efficient monitoring system for healthcare facilities, capturing substantial attention from experts. Many hospitals currently rely on manual assessments to compile patient records, leading to drawbacks such as prolonged measuring times, reduced monitoring accuracy, and heightened labor requirements. This paper presents an innovative solution: a wireless health monitoring system leveraging ARDUINO technology, specifically designed for continuous tracking of patients’ temperature and heart rate. The system has a transmitter, receiver, and a microcontroller. The transmitter consistently broad-casts the physiological parameters namely cardiac rate and thermic metric using few dedicated sensors. These sensors collect data, the microcontroller processes information from the sensors, and the developed data is conveyed to the recipient. This monitoring system not only addresses the drawbacks of manual as–assessments but also provides the capability to seamlessly measure, analyze, and store patients’ physiological parameters. By offering real-time insights, this ARDUINO-based solution contributes to the advancement of healthcare monitoring, promoting efficiency and accuracy in healthcare centers amid the increasing demands of the sector.

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Cost-Effective Wireless Health Monitoring with ARDUINO for Physiological Parameters

  • N. Padmavathy,
  • A. Brameshwar

摘要

The growing demand within the healthcare sector underscores the need for a sophisticated and efficient monitoring system for healthcare facilities, capturing substantial attention from experts. Many hospitals currently rely on manual assessments to compile patient records, leading to drawbacks such as prolonged measuring times, reduced monitoring accuracy, and heightened labor requirements. This paper presents an innovative solution: a wireless health monitoring system leveraging ARDUINO technology, specifically designed for continuous tracking of patients’ temperature and heart rate. The system has a transmitter, receiver, and a microcontroller. The transmitter consistently broad-casts the physiological parameters namely cardiac rate and thermic metric using few dedicated sensors. These sensors collect data, the microcontroller processes information from the sensors, and the developed data is conveyed to the recipient. This monitoring system not only addresses the drawbacks of manual as–assessments but also provides the capability to seamlessly measure, analyze, and store patients’ physiological parameters. By offering real-time insights, this ARDUINO-based solution contributes to the advancement of healthcare monitoring, promoting efficiency and accuracy in healthcare centers amid the increasing demands of the sector.