Ryo Kosaka
タイトル引用先
Methods and apparatus for controlling a continuous flow rotary blood pump
Y Nose, T Shinohara, R Kosaka, H Sumikura
US Patent 6,817,836, 2004
1352004
Methods and apparatus for controlling a continuous flow rotary blood pump
Y Nose, T Shinohara, R Kosaka, H Sumikura
US Patent 7,284,956, 2007
1162007
Improvement of hemocompatibility in centrifugal blood pump with hydrodynamic bearings and semi‐open impeller: in vitro evaluation
R Kosaka, O Maruyama, M Nishida, T Yada, S Saito, S Hirai, T Yamane
Artificial organs 33 (10), 798-804, 2009
242009
Hemocompatibility evaluation with experimental and computational fluid dynamic analyses for a monopivot circulatory assist pump
M Nishida, O Maruyama, R Kosaka, T Yamane, H Kogure, H Kawamura, ...
Artificial Organs 33 (4), 378-386, 2009
232009
Hemocompatibility of a hydrodynamic levitation centrifugal blood pump
T Yamane, O Maruyama, M Nishida, R Kosaka, D Sugiyama, Y Miyamoto, ...
Journal of Artificial Organs 10 (2), 71-76, 2007
212007
Tsukuba remote monitoring system for continuous‐flow artificial heart
R Kosaka, Y Sankai, R Takiya, T Jikuya, T Yamane, T Tsutsui
Artificial organs 27 (10), 897-906, 2003
202003
Feasibility of the optical imaging of thrombus formation in a rotary blood pump by near‐infrared light
D Sakota, T Murashige, R Kosaka, M Nishida, O Maruyama
Artificial organs 38 (9), 733-740, 2014
162014
Enhancement of hemocompatibility of the MERA monopivot centrifugal pump: toward medium‐term use
T Yamane, R Kosaka, M Nishida, O Maruyama, Y Yamamoto, K Kuwana, ...
Artificial organs 37 (2), 217-221, 2013
152013
Operating point control system for a continuous flow artificial heart: in vitro study
R Kosaka, K Yanagi, T Sato, H Ishitoya, S Ichikawa, T Motomura, ...
Asaio Journal 49 (3), 259-264, 2003
132003
In vitro thrombogenesis resulting from decreased shear rate and blood coagulability
O Maruyama, R Kosaka, M Nishida, T Yamane, E Tatsumi, Y Taenaka
The International journal of artificial organs 39 (4), 194-199, 2016
122016
Geometric optimization of a step bearing for a hydrodynamically levitated centrifugal blood pump for the reduction of hemolysis
R Kosaka, T Yada, M Nishida, O Maruyama, T Yamane
Artificial organs 37 (9), 778-785, 2013
122013
Effect of Impeller Geometry on Lift‐Off Characteristics and Rotational Attitude in a Monopivot Centrifugal Blood Pump
M Nishida, K Nakayama, D Sakota, R Kosaka, O Maruyama, Y Kawaguchi, ...
Artificial organs 40 (6), E89-E101, 2016
112016
Optimal bearing gap of a multiarc radial bearing in a hydrodynamically levitated centrifugal blood pump for the reduction of hemolysis
R Kosaka, K Yasui, M Nishida, Y Kawaguchi, O Maruyama, T Yamane
Artificial organs 38 (9), 818-822, 2014
112014
Optimal design of the hydrodynamic multi‐arc bearing in a centrifugal blood pump for the improvement of bearing stiffness and hemolysis level
K Yasui, R Kosaka, M Nishida, O Maruyama, Y Kawaguchi, T Yamane
Artificial organs 37 (9), 768-777, 2013
112013
Online Parameter Identification of Second‐Order Systemic Circulation Model Using the Delta Operator
R Kosaka, Y Sankai, T Jikuya, T Yamane, T Tsutsui
Artificial organs 26 (11), 967-970, 2002
112002
Effect of a bearing gap on hemolytic property in a hydrodynamically levitated centrifugal blood pump with a semi-open impeller
R Kosaka, M Nishida, O Maruyama, T Yambe, K Imachi, T Yamane
Bio-medical materials and engineering 23 (1-2), 37-47, 2013
92013
Antithrombogenic properties of a monopivot magnetic suspension centrifugal pump for circulatory assist
T Yamane, O Maruyama, M Nishida, R Kosaka, T Chida, H Kawamura, ...
Artificial organs 32 (6), 484-489, 2008
92008
Resonant frequency control for artificial heart using online parameter identification
R Kosaka, Y Sankai, T Jikuya, T Yamane, T Tsutsui
Artificial organs 28 (10), 921-926, 2004
92004
Bio-telemetry system and non-invasive sensors for smart artificial heart (SAH)
Y Sankai, H Koguchi, R Takiya, R Kosaka, T Tsutsui, T Jikuya, T Yamane
Asaio Journal 46 (2), 205, 2000
92000
Real‐time observation of thrombus growth process in an impeller of a hydrodynamically levitated centrifugal blood pump by near‐infrared hyperspectral imaging
D Sakota, T Murashige, R Kosaka, T Fujiwara, M Nishida, O Maruyama
Artificial organs 39 (8), 714-719, 2015
82015
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