Development of blood pressure, heart rate and oxygen saturation monitoring system / by Joanne May A. Hericoand Mark Allen D. Sabino.

By: Contributor(s): Material type: TextTextLanguage: English Publication details: Indang, Cavite : 2016. Cavite State University- Main Campus,Description: xv, 113 pages : illustrations ; 28 cmContent type:
  • text
Media type:
  • unmediated
Carrier type:
  • volume
Subject(s): DDC classification:
  • 620.0042  H42 2016
Online resources: Production credits:
  • College of Engineering and Information Technology (CEIT)
Abstract: HERICO, JOANNE MAY A. and SABINO, MARK ALLEN D. Development of a Blood Pressure, Heart Rate, and Oxygen Saturation Monitoring System. Undergraduate Design Project. Bachelor of Science in Electronics and Communication Engineering, Cavite State University, Indang, Cavite. June 2016. Adviser: Engr. Michael T. Costa. The main objective of the project was to develop a blood pressure, heart rate, and oxygen saturation monitoring system. Specifically, it aimed to design and construct the circuit of the system and to develop a program for the system. The system consisted of gizDuino mini328 based on ATMEGA328 as the processing unit. The microcontroller was responsible for the complete operation of the system. It also consisted of a cuff and a finger probe. The blood pressure, heart rate, and oxygen saturation gathered would be displayed and printed. The testing of the system was done at the university infirmary with the assistance of the nurses. This was to ensure the proper evaluation of the system. The evaluation was done at the Engineering Science (ES) Building of the Department of Computer and Electronics Engineering by thirty (30) participants. The adviser and co-adviser also participated in the testing of the system. The system had undergone separate evaluation with the people from the medical field. The total weighted mean for the functionality, usability, and safety of the system was 4.53, 4.85, and 4.73, respectively. Based on this evaluation, the system was said to be functional, usable, and safe to use. The total cost of the design project was PhP 7,312.00.
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Theses / Manuscripts Theses / Manuscripts Ladislao N. Diwa Memorial Library Theses Section Non-fiction 620.0042 H42 2016 (Browse shelf(Opens below)) Link to resource Room use only DP-499 00010988

Design Project (BS Electronics Engineering) Cavite State University

Includes bibliographical references.

College of Engineering and Information Technology (CEIT)

HERICO, JOANNE MAY A. and SABINO, MARK ALLEN D. Development of a Blood Pressure, Heart Rate, and Oxygen Saturation Monitoring System. Undergraduate Design Project. Bachelor of Science in Electronics and Communication Engineering, Cavite State University, Indang, Cavite. June 2016. Adviser: Engr. Michael T. Costa.
The main objective of the project was to develop a blood pressure, heart rate, and oxygen saturation monitoring system. Specifically, it aimed to design and construct the circuit of the system and to develop a program for the system. The system consisted of gizDuino mini328 based on ATMEGA328 as the processing unit. The microcontroller was responsible for the complete operation of the system. It also consisted of a cuff and a finger probe. The blood pressure, heart rate, and oxygen saturation gathered would be displayed and printed. The testing of the system was done at the university infirmary with the assistance of the nurses. This was to ensure the proper evaluation of the system. The evaluation was done at the Engineering Science (ES) Building of the Department of Computer and Electronics Engineering by thirty (30) participants. The adviser and co-adviser also participated in the testing of the system. The system had undergone separate evaluation with the people from the medical field. The total weighted mean for the functionality, usability, and safety of the system was 4.53, 4.85, and 4.73, respectively. Based on this evaluation, the system was said to be functional, usable, and safe to use. The total cost of the design project was PhP 7,312.00.

Submitted copy to the University Library. 02-14-2017 DP-499

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