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Featured researches published by H Kataoka.


Physiological Measurement | 2007

Deformability of human red blood cells exposed to a uniform shear stress as measured by a cyclically reversing shear flow generator

Nobuo Watanabe; Yasuyuki Arakawa; Atsushi Sou; H Kataoka; Katsuhiro Ohuchi; T. Fujimoto; Setsuo Takatani

Red blood cells (RBCs) suspended in a dextran solution were at first loaded with a uniform shear stress of 21, 43 and 64 Pa for the duration of 0, 10, 20, 30, 45 and 60 min, respectively, followed with measurement of the dynamic deformation in terms of stretching and recovery, using a cyclically reversing sinusoidal shear flow with the peak stress of 128 Pa at 2 Hz. The L/W value, where L and W were the major and minor axis length of the RBC images, was derived to compare the effects of the uniform shear stress level and the exposure time. The exposure to the uniform shear stress of 21 Pa for the duration of as long as 60 min caused statistically insignificant L/W change in comparison to the control RBCs with L/W of 4.6 +/- 0.1. The exposure to 43 and 64 Pa for longer than 45 and 20 min, respectively, induced statistically significant change in the maximal L/W when compared to that of 21 Pa (p < 0.05). The composition of the maximal L/W values varied depending on the stress level and exposure time; with 21 Pa, the majority of cells exhibited the maximal L/W larger than 4.0 and few cells less than 2.0, whereas with the increase in the stress level to 43 and 64 Pa, cells having less than 2.0 exceeded 50%. Cyclic reversing shear flow is a useful means to measure dynamic deformation capability of RBCs which may be sub-hemolytically sheared without lysis.


Biophysical Journal | 2006

Dynamic deformation and recovery response of red blood cells to a cyclically reversing shear flow: Effects of frequency of cyclically reversing shear flow and shear stress level.

Nobuo Watanabe; H Kataoka; Toshitaka Yasuda; Setsuo Takatani


Artificial Organs | 2006

Computational Fluid Dynamics Analysis of the Pediatric Tiny Centrifugal Blood Pump (TinyPump).

Kazuyuki Kido; Hideo Hoshi; Nobuo Watanabe; H Kataoka; Katsuhiro Ohuchi; Junichi Asama; Tadahiko Shinshi; Masaharu Yoshikawa; Setsuo Takatani


Artificial Organs | 2005

Quantification of the Secondary Flow in a Radial Coupled Centrifugal Blood Pump Based on Particle Tracking Velocimetry

Nobuo Watanabe; Takaya Masuda; Tomoya Iida; H Kataoka; T. Fujimoto; Setsuo Takatani


Artificial Organs | 2005

Measurement of the Rotor Motion and Corresponding Hemolysis of a Centrifugal Blood Pump With a Magnetic and Hydrodynamic Hybrid Bearing

H Kataoka; Yuichi Kimura; Hajime Fujita; Setsuo Takatani


Artificial Organs | 2006

Influence of radial clearance and rotor motion to hemolysis in a journal bearing of a centrifugal blood pump.

H Kataoka; Yuichi Kimura; Hajime Fujita; Setsuo Takatani


Archive | 2006

Edible film for oral hygiene

H Kataoka; Yoshio Kitamura; Hideaki Takebe; Koji Tsukuda; 好司 佃; 好生 北村; 英日 武部; 弘之 片岡


Archive | 2005

Bearing and blood pump

Jiyunzou Hachina; H Kataoka; Setsuo Takatani; 純三 八名; 弘之 片岡; 節雄 高谷


Biorheology | 2005

Effects of shear stress and exposure time on RBC deformability as evaluated using an oscillatory Couette flow method

Watanabe N; Y Arakawa; A Sou; H Kataoka; Toshitaka Yasuda; T. Fujimoto; Setsuo Takatani; Nobuo Watanabe


Asaio Journal | 2006

MEASUREMENT AND SIMULATION OF HEMOLYSIS IN A HYDRODYNAMIC BEARING OF A CENTRIFUGAL BLOOD PUMP

H Kataoka; Setsuo Takatani

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Setsuo Takatani

Tokyo Medical and Dental University

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Nobuo Watanabe

Tokyo Medical and Dental University

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Hideo Hoshi

Tokyo Medical and Dental University

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Makoto Nakamura

Tokyo Medical and Dental University

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K Ohuchi

Suzuka University of Medical Science

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T. Fujimoto

Shibaura Institute of Technology

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Tohru Sakamoto

Tokyo Medical and Dental University

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Katsuhiro Ohuchi

Tokyo Medical and Dental University

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Tadahiko Shinshi

Tokyo Institute of Technology

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