Hart, R. et al., “A Magnetically Suspended Implantable Centrifugal Blood Pump,” 3rd Congress of the International Society for Rotary Blood Pumps, Houston, No. 36 (Aug. 24-27, 1995); Abstract Only. |
Yonnet, J.P., “Permanent Magnet Bearings and Couplings,” IEEE Transactions on Magnetics, vol. MAG-17, No. 1, 1169-1173 (1981). |
“A Magnetically Suspended Implantable Centrifugal Pump” Robert M. Hart, Victor G. Filipenco, Robert T.V. Kung, 3rd Congress of the International Society for Rotary Blood Pumps, Houston, 6 viewgraphs, Aug. 1995. |
“A Magnetically Suspended and Hydrostatically Stabilized Centrifugal Blood Pump”, Robert M. Hart, Victor G. Filipenko, and Robert T.V. Kung, Artificial Organs, 20(6):591-596, Jun. 1996. |
“Design considerations for Bearingless Rotary Pumps”, Robert T.V. Kung and Robert M. Hart, Artificial Organs, 21(7):645-650, Jul. 1997. |
Schima, H., et al., “An Implantable Seal-less Centifugal Pump with Integrated Double-Disk Motor” Artificial Organs, 19(7) 639-643, Jul. 1995. |
Yamane, T. et al., “Design of a Centifugal Blood Pump with Magnetic Suspension,” Artificial Organs, 19(7), 625-630, Jul. 1995. |
Proceedings of the Third Congress of the International Society for Rotary Blood Pumps, (ISRP), Houston Texas, Aug. 24-27, 1995, published in Artificial Organs, vol. 20, No. 6, Jun., 1996. |
Khanwilkar, Pratap et al., “Using Hybrid Magnetic Bearings to Completely Suspend the Impleller of a Ventricular Assist Device,” Artificial Organs 20(6):597-604 (1996). |
Tamaka et al., “A New Seal-Less Centrifugal Blood Pump”, Japan Journal of Artifical Organs, 14 (3), pp. 1126-1129, (1985). |
Nishida et al., “Development of the Terumo Capiox Centrifugal Pump and Its Clinical Application to Open Heart Surgery: A Comparative Study with the Roller Pump”, pp. 24-28, (1992). |
Kijima et al., “A Straight Path Centrifugal Blood Pump Concept in the Capiox Centrifugal Pump”, pp. 32-37, (1993). |
Yamane et al. “Fundamental Characteristics of Magnetically Suspended Centrifugal Blood Pump”, pp. 130-131 (1994). |
Kijima et al., “The Margin of Safety in the Use of a Straight Path Centrifugal Blood Pump”, Artifical Organs, 18(9), pp. 680-686, (1994). |
“Implantable Artifical Cardiac Blood Pump Protype Developed”, Medical Equipment Journal of Japan, (May 1994). |
Yamane et al., “Design of a Centrifugal Blood Pump with Magnetic Suspension”, 1 page, Abstract, (Sep. 1994). |
Yamane et al., “Design of a Centrifugal Blood Pump with Magnetic Suspension”, Artifical Organs, 19(7) pp. 625-630, (1995). |
Akamatsu et al., “Recent Studies of the Centifugal Blood Pump with a Magnetically Suspended Impeller”, Artifical Organs, 19(7), pp. 631-634, (1995). |
Yamane “Performance Improvements of a Centrifugal Blood Pump with Mono-Pivit Magnetic-Suspension”, pp. 538-539, (1996). |
Kim et al., “In Vitro Characterization of a Magnetically Suspended Continuous Flow Ventricular Assist Device,” 4535 ASAIO Journal, 41 1995 Jul./Sep. No. 3. |
C. Peter Cho et al.; Eddy Current Loss Calculation in the Permanent Magnet of a Large Horse Power Axial Field Motor; Jun. 14, 1994; Proceedings, Twenty-third Annual Symposium, Incremental Motion Control Systems & Devices, pp. 245-253. |
C. Peter Cho et al.; Cogging Torque Reduction, Axial Force Variation, and Output Torque Effect of a High-Power Density, Axial Field, Brushless, Permanent Magnet Motor; Jun. 6, 1995; Proceedings, Twenty-fourth Annual Sympsium, Incremental Motion Control Systems & Devices, pp. 297-307. |
C. Peter Cho et al.; Feasibility Study of a Novel Integrated Electric Motor/Pump for Underwater Applications; Jun. 6, 1995; Proceedings, Twenty-fourth Annual Symposium, Incremental Motion Control Systems & Devices, pp. 309-316. |
C. Peter Cho et al.; Ongoing Feasibility Study of a Novel Integrated Electric Motor/Pump Concept; Jun. 11, 1996; Proceedings, Twenty-fifth Annual Symposium, Incremental Motion Control Systems & Devices, pp. 51-62. |
C. Peter Cho et al.; Energy Losses in Magnetic Lamination Materials of a Novel Integrated Motor/Pump System; Jul. 22, 1997; Proceedings, Twenty-sixth Annual Symposium, Incremental Motion Control System & Devices, pp. 325-333. |