Use of Motor Current in Flow Rate Measurement for the Magnetically Suspended Centrifugal Blood Pump
- 1 May 1997
- journal article
- Published by Wiley in Artificial Organs
- Vol. 21 (5) , 396-401
- https://doi.org/10.1111/j.1525-1594.1997.tb00736.x
Abstract
Indirect measurement of the flow rate of a centrifugal blood pump using the driving motor current was studied. The pump flow rate can be expressed as a function of the motor current under a given motor speed in the absence of energy loss resulting from uncertain mechanical contact friction. The magnetically suspended centrifugal blood pump (MSCP), developed by the collaboration of Kyoto University and NTN Inc., was suitable for the application of this measuring method because the impeller is suspended magnetically inside the pump housing without any mechanical contact. The effect of fluid viscosity on the pump performance was investigated in detail, and it was possible to estimate the pump flow rate and the pressure difference through the pump (from inlet port to outlet port) accurately by monitoring the motor current and speed when the kinematic viscosity of working fluids was known. The kinematic viscosity of working fluids can also be measured with the MSCP. The motor current and motor speed were monitored in a chronic animal experiment, and the estimated flow rate and pressure difference showed good correlation with directly measured data.Keywords
This publication has 8 references indexed in Scilit:
- A New Magnetically Suspended Centrifugal Pump: In Vitro and Preliminary In Vivo AssessmentArtificial Organs, 1996
- Development of a Magnetically Suspended Centrifugal Pump as a Cardiac Assist Device for Long-Term ApplicationAsaio Journal, 1996
- Design of a Centrifugal Blood Pump with Magnetic SuspensionArtificial Organs, 1995
- An Implantable Seal‐less Centrifugal Pump with Integrated Double‐Disk MotorArtificial Organs, 1995
- Improvement in Antithrombogenicity in a Centrifugal Pump With Self Wash-Out Structure for Long-Term UseAsaio Journal, 1995
- Recent Studies of the Centrifugal Blood Pump with a Magnetically Suspended ImpellerArtificial Organs, 1995
- The Next Generation Baylor C‐Gyro Pump: Antithrombogenic “Free Impeller” Design for Long‐Term Centrifugal VADArtificial Organs, 1994
- Centrifugal Blood Pump with a Magnetically Suspended ImpellerArtificial Organs, 1992