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Dive into the research topics where Kozo Naito is active.

Publication


Featured researches published by Kozo Naito.


Asaio Journal | 1994

The Baylor total artificial heart. Flow visualization studies.

Yukihiko Orime; Setsuo Takatani; Kimitaka Tasai; Yasuhisa Ohara; Kozo Naito; Kazumi Mizuguchi; Dirk Meier; Jens T. Wernicke; George Damm; Julie Glueck; George P. Noon; Yukihiko Nosé

To analyze the flow patterns of the left blood chamber of the Baylor total artificial heart (TAH) and to evaluate influences of the inflow valve angle to the flow patterns, flow visualization studies were performed. The inflow valve angle of the left housing was changed by 20 degrees orthogonal to the inflow tube, and comparison studies of the modified and unmodified models were made. For evaluating sectional flow patterns, a laser light was used, the clear transparent housing was scanned segmentally, and flow patterns were recorded on high contrast film for measuring flow velocities. A signal was used that synchronized the timing of the camera shutter to the pusher-plate movement signal. With the modified 20 degree inflow valve direction, there were better closing characteristics of the inflow valve leaflets. At the same time, we could successfully reduce the vortex formation at the inflow port, which may cause thrombus formation. We also have improved the washout during the diastolic phase in not only the bottom area, but in the entire pumping chamber. This flow visualization setup is simple and inexpensive. It is useful not only for validation of global flow patterns, but also for validation of local flow velocities of various blood pumps.


Asaio Journal | 1993

The Baylor-ABI Electromechanical Total Artificial Heart: Accelerated Endurance Testing

Yukihiko Orime; Setsuo Takatani; Yasuhisa Ohara; Kimitaka Tasai; Kozo Naito; Kazumi Mizuguchi; George Damm; Julie Glueck; Summers D; George P. Noon

To test the durability of each part or assembled component of the Baylor-ABI total artificial heart (TAH), the authors performed an endurance test under severe conditions. The TAH was immersed in a saline bath at 42 degrees C, which is 4-5 degrees C higher than normal body temperature. This is an accelerated endurance test because of the elevated temperatures. In this accelerated endurance test loop, the 42 degrees C heated saline was circulated not only in the pump but also outside the pump. During pumping, temperatures of the motor and outside surface of the centerpiece were continuously measured. This testing showed that during almost 4 months of pumping no electromechanical troubles were observed. Both inside (motor) and outside temperatures were stable and the differences in both temperatures were only 3-4 degrees C, demonstrating that heat generation is not a problem. The voltage and current required in this system remained constant, indicating stable and reliable performance. Based on these results, this pump is expected to run continuously over a long duration in a normal physiologic environment. This accelerated endurance test system is very suitable for estimating the influence of heat generation by the actuator of blood pumps. It is also quite useful in validating the durability of various cardiac prosthesis.


Artificial Organs | 1994

The Need for Standardizing the Index of Hemolysis

Kozo Naito; Kazumi Mizuguchi; Yukihiko Nosé


Artificial Organs | 1994

An Ultimate, Compact, Seal‐less Centrifugal Ventricular Assist Device: Baylor C‐Gyro Pump

Yasuhisa Ohara; Kenzo Makinouchi; Yukihiko Orime; Kimitaka Tasai; Kozo Naito; Kazumi Mizuguchi; Takatsugu Shimono; George Damm; Julie Glueck; Setsuo Takatani; George P. Noon; Yukihiko Nosé


Artificial Organs | 2008

Baylor Gyro Pump: A Completely Seal-less Centrifugal Pump Aiming for Long-Term Circulatory Support

Yasuhisa Ohara; Ichiro Sakuma; Kenzo Makinouchi; George Damm; Julie Glueck; Kazumi Mizuguchi; Kozo Naito; Kimitaka Tasai; Yukihiko Orime; Setsuo Takatani; George P. Noon; Yukihiko Nosé


Artificial Organs | 1994

Development and evaluation of antithrombogenic centrifugal pump: the Baylor C-Gyro Pump Eccentric Inlet Port Model.

Yasuhisa Ohara; Kenzo Makinouchi; Julie Glueck; Byron Sutherland; Takatsugu Shimono; Kozo Naito; Kimitaka Tasai; Yukihiko Orime; Setsuo Takatani; Yukihiko Nosé


Artificial Organs | 2008

A Fluid Dynamic Analysis of a Rotary Blood Pump for Design Improvement

J. Treichler; S. E. Rosenow; George Damm; Kozo Naito; Yasuhisa Ohara; Kazumi Mizuguchi; Kenzo Makinouchi; Setsuo Takatani; Yukihiko Nosé


Artificial Organs | 1994

Does Hematocrit Affect In Vitro Hemolysis Test Results? Preliminary Study with Baylor/NASA Prototype Axial Flow Pump

Kazumi Mizuguchi; George Damm; Greg S. Aber; Richard J. Bozeman; Jim W. Bacak; Paul A. Svejkovsky; Yukihiko Orime; Yasuhisa Ohara; Kozo Naito; Kimitaka Tasai; Kenzo Makinouchi; Setsuo Takatani; Yukihiko Nosé; George P. Noon; Michael E. DeBakey


Artificial Organs | 1994

Cardiopulmonary Bypass with Nikkiso and BioMedicus Centrifugal Pumps

Yukihiko Orime; Setsuo Takatani; Tatsuya Sasaki; Takeshi Aizawa; Yasuhisa Ohara; Kozo Naito; Julie Glueck; George P. Noon; Yukihiko Nosé; Michael E. DeBakey


Artificial Organs | 1994

In Vitro and In Vivo Validation Tests for Total Artificial Heart

Yukihiko Orime; Setsuo Takatani; Kimitaka Tasai; Yasuhisa Ohara; Kozo Naito; Kazumi Mizuguchi; Kenzo Makinouchi; Yukihiro Matsuda; Takatsugu Shimono; Julie Glueck; George P. Noon; Yukihiko Nosé

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Yasuhisa Ohara

Baylor College of Medicine

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Yukihiko Nosé

Baylor College of Medicine

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Setsuo Takatani

Baylor College of Medicine

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Kimitaka Tasai

Baylor College of Medicine

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George P. Noon

Baylor College of Medicine

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Julie Glueck

Baylor College of Medicine

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Kazumi Mizuguchi

Baylor College of Medicine

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George Damm

Baylor College of Medicine

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Kenzo Makinouchi

Baylor College of Medicine

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