TEMPERATURE BASED BREATHING FREQUENCY DETECTOR

September 2023
Vol-9, Issue-5
Paper ID: 21653
ISSN: 2395-4396
Downloads: 0

Abstract & Details

Research Area
BIOMEDICAL ENGINEERING
Keywords
Breathing rate thermistor temperature inhalation and exhalation frequency.
Abstract
Breathing rate measurement is an essential component of effective health monitoring. A deviation from normal breathing can be a sign of a number of medical disorders, including respiratory problems of the heart and metabolism. The COVID-19 pandemic has underscored the need for remote health monitoring solutions, emphasizing the urgency of accessible and affordable breath analysis tools. Our project aims to develop a thermistor-based breath analysis system for real-time monitoring and assessment of breathing patterns. By strategically placing a thermistor near the nose, we capture temperature fluctuations during inhalation and exhalation. This temperature data is collected and transmitted via a Node MCU to a computer for processing. In Python, we employ a real-time data processing script that not only visualizes the temperature changes as a live breath graph but also calculates the breaths per minute (BPM). We determine BPM by identifying peak temperature values within a specified time window, thereby offering insights into the user's breathing rate. To distinguish between normal and abnormal breathing patterns, we establish a BPM threshold range (12-20 BPM) for normal. Any deviation from this range is labeled as abnormal. This system offers the potential for early detection of respiratory issues or sleep disorders. It can be used for remote patient monitoring and can serve as a valuable tool in healthcare and wellness applications. This tool may be used to identify irregular breathing patterns and sleeping disorders.

Author Information

# Name Institute / Affiliation
1 VEDHAVARSHINI P BANNARI AMMAN INSTITUTE OF TECHNOLOGY
2 SHRUTHI SRI N BANNARI AMMAN INSTITUTE OF TECHNOLOGY
3 Dr. HEMALATHA K BANNARI AMMAN INSTITUTE OF TECHNOLOGY

How to Cite

Use the following formats to cite this article in your research.

APA Style
P, VEDHAVARSHINI, N, SHRUTHI SRI, & K, Dr. HEMALATHA (2023). TEMPERATURE BASED BREATHING FREQUENCY DETECTOR. International Journal of Advance Research and Innovative Ideas In Education, 9(5), 1062-1067.
MLA Style
P, VEDHAVARSHINI, et al. "TEMPERATURE BASED BREATHING FREQUENCY DETECTOR." International Journal of Advance Research and Innovative Ideas In Education, vol. 9, no. 5, 2023, pp. 1062-1067.
IEEE Style
VEDHAVARSHINI P, SHRUTHI SRI N, and Dr. HEMALATHA K, "TEMPERATURE BASED BREATHING FREQUENCY DETECTOR," International Journal of Advance Research and Innovative Ideas In Education, vol. 9, no. 5, pp. 1062-1067, 2023.
Vancouver Style
P VEDHAVARSHINI, N SHRUTHI SRI, K Dr. HEMALATHA. TEMPERATURE BASED BREATHING FREQUENCY DETECTOR. International Journal of Advance Research and Innovative Ideas In Education. 2023;9(5):1062-1067.
Harvard Style
P, VEDHAVARSHINI, N, SHRUTHI SRI, & K, Dr. HEMALATHA (2023) 'TEMPERATURE BASED BREATHING FREQUENCY DETECTOR', International Journal of Advance Research and Innovative Ideas In Education, 9(5), pp. 1062-1067.
Chicago Style
P, VEDHAVARSHINI, SHRUTHI SRI N, and Dr. HEMALATHA K. "TEMPERATURE BASED BREATHING FREQUENCY DETECTOR." International Journal of Advance Research and Innovative Ideas In Education 9, no. 5 (2023): 1062-1067.
Turabian Style
P, VEDHAVARSHINI, SHRUTHI SRI N, and Dr. HEMALATHA K. "TEMPERATURE BASED BREATHING FREQUENCY DETECTOR." International Journal of Advance Research and Innovative Ideas In Education 9, no. 5 (2023): 1062-1067.

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