Presentation 2015-01-29
Influence of blood flow on temperature rise in phantom caused by focusing ultrasound
Kota FUKASAWA, Kazuma SHIMIZU, Yuichi HATANO, Takenobu TSUCHIYA, Nobuyuki ENDOH,
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Abstract(in English) Thermal effect by ultrasound in human body has been researched for the safety of ultrasound diagnostic equipments. We measured temperature distribution in the tissue phantom to research thermal effect. However, inside of human body exists bones and blood vessel. We consider that temperature distribution in human body caused by ultrasound was influenced by thermal effect by blood flow. In this paper, we measured the temperature distribution in tissue phantom has a mimicking blood vessel irradiated focusing ultrasound. It was observed that temperature rise in tissue phantom was reduced by water flow.
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Keyword(in English) Thermal effect / Temperature rise / Infrared imaging / Tissue phantom / Blood flow
Paper # US2014-85
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Committee US
Conference Date 2015/1/21(1days)
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Registration To Ultrasonics (US)
Language JPN
Title (in Japanese) (See Japanese page)
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Title (in English) Influence of blood flow on temperature rise in phantom caused by focusing ultrasound
Sub Title (in English)
Keyword(1) Thermal effect
Keyword(2) Temperature rise
Keyword(3) Infrared imaging
Keyword(4) Tissue phantom
Keyword(5) Blood flow
1st Author's Name Kota FUKASAWA
1st Author's Affiliation Department of Electrical, Electronics and Information, Faculty of Engineering, Kanagawa University()
2nd Author's Name Kazuma SHIMIZU
2nd Author's Affiliation Department of Electrical, Electronics and Information, Faculty of Engineering, Kanagawa University
3rd Author's Name Yuichi HATANO
3rd Author's Affiliation Department of Electrical, Electronics and Information, Faculty of Engineering, Kanagawa University
4th Author's Name Takenobu TSUCHIYA
4th Author's Affiliation Department of Electrical, Electronics and Information, Faculty of Engineering, Kanagawa University
5th Author's Name Nobuyuki ENDOH
5th Author's Affiliation Department of Electrical, Electronics and Information, Faculty of Engineering, Kanagawa University
Date 2015-01-29
Paper # US2014-85
Volume (vol) vol.114
Number (no) 422
Page pp.pp.-
#Pages 4
Date of Issue