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Experimental Fluid Mechanics of Pulsatile Artificial Blood Pumps.

Authors :
Deutsch, Steven
Tarbell, John M.
Manning, Keefe B.
Rosenberg, Gerson
Fontaine, Arnold A.
Source :
Annual Review of Fluid Mechanics; 2006, Vol. 38, p65-86, 22p
Publication Year :
2006

Abstract

The fluid mechanics of artificial blood pumps has been studied since the early 1970s in an attempt to understand and mitigate hemolysis and thrombus formation by the device. Pulsatile pumps are characterized by inlet jets that set up a rotational "washing" pattern during filling. Strong regurgitant jets through the closed artificial heart valves have Reynolds stresses on the order of 10,000 dynes/cm² and are the most likely cause of red blood cell damage and platelet activation. Although the flow in the pump chamber appears benign, low wall shear stresses throughout the pump cycle can lead to thrombus formation at the wall of the smaller pumps (10-50 cc). The local fluid mechanics is critical. There is a need to rapidly measure or calculate the wall shear stress throughout the device so that the results may be easily incorporated into the design process. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00664189
Volume :
38
Database :
Complementary Index
Journal :
Annual Review of Fluid Mechanics
Publication Type :
Academic Journal
Accession number :
20024355
Full Text :
https://doi.org/10.1146/annurev.fluid.38.050304.092022