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Issue title: 25th Anniversary Volume. Perspectives in Biorheology II. Festschrift for Syoten Oka
Guest editors: Eiichi Fukada and Takehiko Azuma
Article type: Research Article
Authors: Kon, Kazunoria | Murakami, Junkoa | Takaoka, Kunihirob | Shiga, Takeshia
Affiliations: [a] Department of Physiology, School of Medicine, Ehime University, Shigenobu, Onsen-gun, Ehime, 791-02, Japan | [b] Central Research Laboratory, School of Medicine, Ehime University, Shigenobu, Onsen-gun, Ehime, 791-02, Japan
Abstract: The red cell deformation under oscillatory shear stress was studied. Shear stress was sinusoidally modulated between 8 and 32 dyn/cm2, thus, the extent of cellular deformation altered sinusoidally. At a low modulation frequency (less than 1.8 Hz), intact red cells perfectly responded to the shear stress applied on cells, and they could deform as much as the deformation in stationary shear flow. Above 2 Hz, the cellular deformation could not follow changes in shear stress along up-phase in the shear stress cycle. As decreasing the intracelluar hemoglobin concentration, the cellular response to oscillatory shear stress became better. Treatment of cells with low concentrations of diamide impaired the response of intact cells to oscillatory shear stress, but unaffected the response of partially hemolyzed cells. These data suggest that the cellular response to oscillatory shear stress is determined by the cytoskeletal structure and the intracellular viscosity.
Keywords: Deformability, Erythrocytes, Pulsative Flow, Cytoskeleton
DOI: 10.3233/BIR-1988-251-211
Journal: Biorheology, vol. 25, no. 1-2, pp. 49-56, 1988
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