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W M Ru

Showing results (1-10 of 21) with videos related to

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Journal of Medical Engineering & Technology|December 19, 2002
Experimental method to reveal the effect of rotor magnet size and air gap on artificial heart driving motor torque and efficiencyK X Qian, H Y Yuan, W M Ru, et al.
Medical Engineering & Physics|September 27, 2005
New concepts and new design of permanent maglev rotary artificial heart blood pumpsK X Qian, P Zeng, W M Ru, et al.
Journal of Medical Engineering & Technology|August 30, 2005
A novel permanent maglev rotary LVAD with passive magnetic bearingsK X Qian, H Y Yuan, P Zeng, et al.
Journal of Medical Engineering & Technology|July 10, 2002
Streamlined design of impeller and its effect on pump haemolysisK X Qian, P Zeng, W M Ru, et al.
Journal of Biomaterials Applications|July 9, 2002
Recent progress in developing durable and permanent impeller pumpK X Qian, P Zeng, W M Ru, et al.
Journal of Medical Engineering & Technology|April 25, 2007
An improved design of axially driven permanent maglev centrifugal pump with streamlined impellerK X Qian, P Zeng, W M Ru, et al.
Journal of Medical Engineering & Technology|January 10, 2002
Technical note: a durable impeller pump with rolling bearing and purge systemK X Qian, P Zeng, W M Ru, et al.
Journal of Medical Engineering & Technology|December 19, 2002
A novel impeller TAH using magnetic bearings for load reductionK X Qian, W M Ru, P Zeng, et al.
Journal of Biomaterials Applications|July 23, 2003
A novel permanent maglev impeller TAH: most requirements on blood pumps have been satisfiedK X Qian, P Zeng, W M Ru, et al.
ASAIO Journal (American Society for Artificial Internal Organs : 1992)|September 26, 2002
Axial reciprocation of rotating impeller: a novel approach to preventing thrombosis in centrifugal pumpK X Qian, P Zeng, W M Ru, et al.
Pageof 3

Showing results (1-10 of 21) with videos related to

Sort By:
Pageof 3
Journal of Medical Engineering & Technology|December 19, 2002
Experimental method to reveal the effect of rotor magnet size and air gap on artificial heart driving motor torque and efficiencyK X Qian, H Y Yuan, W M Ru, et al.
Medical Engineering & Physics|September 27, 2005
New concepts and new design of permanent maglev rotary artificial heart blood pumpsK X Qian, P Zeng, W M Ru, et al.
Journal of Medical Engineering & Technology|August 30, 2005
A novel permanent maglev rotary LVAD with passive magnetic bearingsK X Qian, H Y Yuan, P Zeng, et al.
Journal of Medical Engineering & Technology|July 10, 2002
Streamlined design of impeller and its effect on pump haemolysisK X Qian, P Zeng, W M Ru, et al.
Journal of Biomaterials Applications|July 9, 2002
Recent progress in developing durable and permanent impeller pumpK X Qian, P Zeng, W M Ru, et al.
Journal of Medical Engineering & Technology|April 25, 2007
An improved design of axially driven permanent maglev centrifugal pump with streamlined impellerK X Qian, P Zeng, W M Ru, et al.
Journal of Medical Engineering & Technology|January 10, 2002
Technical note: a durable impeller pump with rolling bearing and purge systemK X Qian, P Zeng, W M Ru, et al.
Journal of Medical Engineering & Technology|December 19, 2002
A novel impeller TAH using magnetic bearings for load reductionK X Qian, W M Ru, P Zeng, et al.
Journal of Biomaterials Applications|July 23, 2003
A novel permanent maglev impeller TAH: most requirements on blood pumps have been satisfiedK X Qian, P Zeng, W M Ru, et al.
ASAIO Journal (American Society for Artificial Internal Organs : 1992)|September 26, 2002
Axial reciprocation of rotating impeller: a novel approach to preventing thrombosis in centrifugal pumpK X Qian, P Zeng, W M Ru, et al.
Pageof 3