146 results on '"Makinouchi, Kenzo"'
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2. Free Impeller: A New Antithrombogenic and Atraumatic Design for Long-Term Centrifugal Ventricular Assist Device
3. Development of an Implantable Centrifugal Ventricular Assist Device (CVAD)
4. Impeller Inner Diameter in a Miniaturized Centrifugal Blood Pump
5. Inlet Port Positioning for a Miniaturized Centrifugal Blood Pump
6. Impeller Design for a Miniaturized Centrifugal Blood Pump
7. Particles Released From the Gyro C1E3 During Simulated Extracorporeal Circulation
8. Feasibility of a Tiny Gyro Centrifugal Pump as an Implantable Ventricular Assist Device
9. Evaluation of Platelet Adhesion and Activation on Materials for an Implantable Centrifugal Blood Pump
10. The Simple In Vitro Thrombogenic Test: Modified Methods for Same Priming Pumps
11. Quantitative Approach to Control Spinning Stability of the Impeller in the Pivot Bearing-Supported Centrifugal Pump
12. Mapping of Pump Efficiency on the Pressure-Flow Curve of a Centrifugal Blood Pump
13. Comparison of the Gyro C1E3 and Bio Medicus Centrifugal Pump Performances During Cardiopulmonary Bypass
14. Reconsideration of Total Erythrocyte Destruction Phenomenon
15. The Hemolysis Test of the Gyro C1E3 Pump in Pulsatile Mode
16. Hemolytic Effect of Surface Roughness of an Impeller in a Centrifugal Blood Pump
17. In Vitro Thrombogenic Evaluation of Centrifugal Pumps
18. Hemolytic Effects of Surface Roughness of a Pump Housing in a Centrifugal Blood Pump
19. Vibration Assessment for Thrombus Formation in the Centrifugal Pump
20. Eccentric Inlet Port of the Pivot Bearing Supported Gyro Centrifugal Pump
21. Material of the Double Pivot Bearing System in the Gyro C1E3 Centrifugal Pump
22. Mechanical White Blood Cell Damage in Rotary Blood Pumps
23. Hydraulic Assessment of the Floating Impeller Phenomena in a Centrifugal Pump
24. Effect of Surface Roughness on Hemolysis in a Pivot Bearing Supported Gyro Centrifugal Pump (C1E3)
25. Hemolytic Characteristics of a Pivot Bearing Supported Gyro Centrifugal Pump (C1E3) Simulating Various Clinical Applications
26. Safety Margin of Magnetic Coupling Distance in Decoupling of a Pivot Bearing-Supported Gyro Centrifugal Pump (C1E3)
27. Pump Power Loss and Heat Generation in a Pivot Bearing-Supported Gyro Centrifugal Pump (C1E3)
28. New Method of Evaluating Sublethal Damage to Erythrocytes by Blood Pumps
29. Development of a Pivot Bearing Supported Sealless Centrifugal Pump for Ventricular Assist
30. The Effect of the Impeller-Driver Magnetic Coupling Distance on Hemolysis in a Compact Centrifugal Pump
31. Modification of a Pivot Bearing System on a Compact Centrifugal Pump
32. Eccentric Inlet Port of the Pivot Bearing Supported Gyro Centrifugal Pump
33. The Simple In Vitro Thrombogenic Test: Modified Methods for Same Priming Pumps
34. Vibration Assessment for Thrombus Formation in the Centrifugal Pump
35. Mechanical White Blood Cell Damage in Rotary Blood Pumps
36. Hydraulic Assessment of the Floating Impeller Phenomena in a Centrifugal Pump
37. Long Term Ex Vivo Bovine Experiments with the Gyro C1E3 Centrifugal Blood Pump
38. Development of an Antithrombogenic and Antitraumatic Blood Pump: The Gyro C1E3
39. Protein adsorption onto ceramic surfaces
40. Recent Advances in the Gyro Centrifugal Ventricular Assist Device
41. Biocompatibility of alumina ceramic and polyethylene as materials for pivot bearings of a centrifugal blood pump
42. Comparison of the Gyro C1E3 and BioMedicus Centrifugal Pump Performances During Cardiopulmonary Bypass
43. Effect of Surface Roughness on Hemolysis in a Centrifugal Blood Pump
44. Total Erythrocyte Destruction Time: The New Index for the Hemolytic Performance of Rotary Blood Pumps
45. Initial Clinical Experience with the Baylor‐Nikkiso Centrifugal Pump
46. Flow Pattern Analysis of the Baylor Total Artificial Heart
47. Does Hematocrit Affect In Vitro Hemolysis Test Results? Preliminary Study with Baylor/NASA Prototype Axial Flow Pump
48. Development and Evaluation of Antithrombogenic Centrifugal Pump: The Baylor C–Gyro Pump Eccentric Inlet Port Model
49. Successful Thermal Management of a Totally Implantable Ventricular Assist System
50. Internal Hydraulic Loss in a Seal-less Centrifugal Gyro Pump
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