DocumentCode
3073510
Title
Real-Time Portable Physiological Signal Detection Powered by Thin Acoustic Sensors
Author
Kuan-Wei Chen ; Kuo-Hua Tseng ; Che-Yuan Sun ; Wen-Ching Ko ; Chang-Yi Chen ; Shih-Hao Fan ; Chang-Ho Liou ; Jin-Chen Hsu
Author_Institution
Electron. & Optoelectron. Res. Labs., Ind. Technol. Res. Inst., Hsinchu, Taiwan
fYear
2012
fDate
24-26 Oct. 2012
Firstpage
347
Lastpage
350
Abstract
As the population ages, the portable medical device become a main stream development in the medical technology field. Research has shown that cardiovascular diseases are the major causes of death among all the others. Thus, a device to prevent cardiovascular diseases from happening unexpectedly becomes a stress point on medical technology development. Heart sounds, Electrocardiography, and Pulse Oximeter have been three of the most used non-invasive method for cardiovascular disease detection. However, comparing to the electrodes for the Electrocardiography, a conventional stethoscope and an electronic stethoscope are extremely inconvenient due to their size and weight; which cause those devices to be unsuitable for monitoring the Heart sounds on a long term basis. Therefore, this thesis suggests a newly invented technology called “Real-Time portable Physiological Signal Detection Powered by Thin Acoustic Sensors”, with highly sensitive sensors and circuits that can distinguish and process the characteristic of Heart sounds.
Keywords
cardiovascular system; electrocardiography; medical signal detection; oximetry; cardiovascular disease; electrocardiography; electronic stethoscope; heart sound; medical technology; portable medical device; pulse oximeter; real-time portable physiological signal detection; thin acoustic sensor; Acoustic sensors; Biomedical monitoring; Cardiovascular diseases; Force; Real-time systems; Signal detection;
fLanguage
English
Publisher
ieee
Conference_Titel
Microsystems, Packaging, Assembly and Circuits Technology Conference (IMPACT), 2012 7th International
Conference_Location
Taipei
ISSN
2150-5934
Print_ISBN
978-1-4673-1635-4
Electronic_ISBN
2150-5934
Type
conf
DOI
10.1109/IMPACT.2012.6420257
Filename
6420257
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