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Teiji Ukawa
Publication Activity (10 Years)
Years Active: 2010-2013
Publications (10 Years): 0
Top Topics
Log Files
Blood Flow
Endoscopic Video
Distribution Function
Top Venues
EMBC
SMC
Medical Biol. Eng. Comput.
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Publications
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Harutoyo Hirano
,
Tetsuya Horiuchi
,
Abdugheni Kutluk
,
Yuichi Kurita
,
Teiji Ukawa
,
Ryuji Nakamura
,
Noboru Saeki
,
Yukihito Higashi
,
Masashi Kawamoto
,
Masao Yoshizumi
,
Toshio Tsuji
A log-linearized arterial viscoelastic model for evaluation of the carotid artery.
EMBC
(2013)
Hiroki Hirano
,
Tetsuya Horiuchi
,
Harutoyo Hirano
,
Yuichi Kurita
,
Teiji Ukawa
,
Ryuji Nakamura
,
Noboru Saeki
,
Masao Yoshizumi
,
Masashi Kawamoto
,
Toshio Tsuji
Monitoring of peripheral vascular condition using a log-linearized arterial viscoelastic index during endoscopic thoracic sympathectomy.
EMBC
(2013)
Harutoyo Hirano
,
Daisuke Kihara
,
Hiroki Hirano
,
Yuichi Kurita
,
Teiji Ukawa
,
Tsuneo Takayanagi
,
Haruka Morimoto
,
Ryuji Nakamura
,
Noboru Saeki
,
Yukihito Higashi
,
Masashi Kawamoto
,
Masao Yoshizumi
,
Toshio Tsuji
Evaluation of Arterial Stiffness during the Flow-Mediated Dilation Test.
SMC
(2013)
Yoshihiro Sugo
,
Tomoyuki Sakai
,
Mami Terao
,
Teiji Ukawa
,
Ryoichi Ochiai
The comparison of a novel continuous cardiac output monitor based on pulse wave transit time and echo Doppler during exercise.
EMBC
(2012)
Teiji Ukawa
,
Tsuneo Takayanagi
,
Haruka Morimoto
,
Yukihito Higashi
,
Naomi Idei
,
Masao Yoshizumi
,
Toshio Tsuji
Novel non-invasive method of measurement of endothelial function: enclosed-zone flow-mediated dilatation (ezFMD).
Medical Biol. Eng. Comput.
50 (12) (2012)
Harutoyo Hirano
,
Hiromi Maruyama
,
Abdugheni Kutluk
,
Toshio Tsuji
,
Osamu Fukuda
,
Naohiro Ueno
,
Teiji Ukawa
,
Ryuji Nakamura
,
Noboru Saeki
,
Masashi Kawamoto
,
Masao Yoshizumi
Measurement of arterial viscoelastic properties using a foil-type pressure sensor and a photoplethysmography.
ICEEI
(2011)
Abdugheni Kutluk
,
Toshio Tsuji
,
Teiji Ukawa
,
Ryuji Nakamura
,
Noboru Saeki
,
Masao Yoshizumi
,
Masashi Kawamoto
A novel online method to monitor autonomic nervous activity based on arterial wall impedance and heart rate variability.
Medical Biol. Eng. Comput.
48 (4) (2010)