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http://dx.doi.org/10.4283/JMAG.2014.19.3.255

Fuzzy Simulation of a Multi-electronic Acupuncture System and Clip-type Pulsimeter Equipped with a Magnetic Sensing Hall Device  

Hong, You-Sik (Dept. of Computing Information and Engineering, Sangji University)
Rhee, Jin-Kyu (Western Seoul Center, Korea Basic Science Institute)
Kim, Han-Kyu (SMIC Co. Ltd.)
Son, Il-Ho (SMIC Co. Ltd.)
Yoon, Woo-Sung (SMIC Co. Ltd.)
Lee, Nam-Kyu (Dept. of Oriental Biomedical Engineering, Sangji University)
Park, Do-Young (Dept. of Oriental-Western Biomedical Engineering, Sangji University)
Kim, Keun-Ho (Dept. of Oriental-Western Biomedical Engineering, Sangji University)
Kim, Yong-Jin (Dept. of Oriental Biomedical Engineering, Sangji University)
Khajidmaa, P. (Dept. of Oriental Biomedical Engineering, Sangji University)
Lee, Sang-Suk (Dept. of Oriental Biomedical Engineering, Sangji University)
Publication Information
Abstract
A portable clip-type pulsimeter equipped with a magnetic sensing Hall device has been developed to raise the accuracy of oriental disease diagnosis and therapy by convergence of magnetism and oriental medicine. To improve accuracy and reliability of conventional pulsimeter due to subjective analysis of the pulse wave and measuring position dependency of the arterial pulse sensor, the fuzzy algorithm was applied to analyze the strong- and weak-pulse wave symptom. Optimal time for electronic acupuncture was calculated using fuzzy rules and interference were drawn from objective data in view of pre-treatment. Moreover, the electrical characteristics of the pain parts that respond to acupuncture point were applied in view of post-treatment to propose the scientific pulse wave algorithm and simulation experiment.
Keywords
permanent magnet; fuzzy rule; pulse wave detection system; systolic peak amplitude; BMI; notch time;
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Times Cited By KSCI : 3  (Citation Analysis)
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