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  4. Designing a reconfigurable biopotential amplifiers for medical instrumentation course
 
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Designing a reconfigurable biopotential amplifiers for medical instrumentation course

Journal
Conference Proceedings - IEEE International Conference on Systems, Man and Cybernetics
Journal Volume
2014-January
Journal Issue
January
Pages
1186-1191
Date Issued
2014
Author(s)
Kuo Y.-C.
Kuo C.-Y.
Kuo C.-H.
CHUNG-HSIEN KUO  
DOI
10.1109/SMC.2014.6974075
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84938077950&doi=10.1109%2fSMC.2014.6974075&partnerID=40&md5=dfc96b501b8a5116f4704f43bafe69f6
https://scholars.lib.ntu.edu.tw/handle/123456789/611580
Abstract
This paper proposes a reconfigurable biopotential amplifier for a medical instrumentation course in the department of electrical engineering. With the reconfigurable biopotential amplifier, the students are able to measure their biopotential signals such as electromyography, electrocardiography and electrooculography in the class. In addition, reconfigurations of the circuit board can be achieved by forming different combinations of the circuit modules to investigate the effects of employing the amplifiers and filters, as well as to practice the topics of various biopotential signal sources in terms of adjusting the configurations of the circuit board. At the same time, variable resistors are further used to adjust the amplifier gains and frequency conditions. Moreover, a microcontroller is provided for converting the analog signals to digital forms so that the biopotential signals can be displayed and recorded with a computer program. Therefore, the reconfigurable biopotential amplifier is a low cost and compact educational tool. The students can practice this module only with a personal computer which connects a USB node to provide the DC power and serial data communication. In addition to the improvement on the learning achievements for the biopotential signal measurement experiments within the lecture topics in the medical instrumentation course, the reconfigurable biopotential amplifier also benefits the hands-on skills of students for designing the amplifiers and filters in medical instrumentations. ? 2014 IEEE.
Subjects
Cybernetics
Education
Electromyography
Personal computers
Students
Biopotential amplifiers
Educational tools
Instrument designs
Learning achievement
Medical instrumentation
Reconfigurable
Signal measurement
Variable resistors
Biomedical signal processing
Type
conference paper

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