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[Erythrocyte deformability: critical evaluation of the study methods].

L. Vettore, A. Molino, Federica Benini

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Abstract

The rheological behavior of red cells in macrocirculation and in capillaries is briefly described. The following methods measuring red cell deformability are critically evaluated: a. degree of red cell 'packing' after centrifugation; b. single erythrocyte passage through microchannels (micropipette technique, rigidometer); c. filtration techniques of washed red cells; d. polymicroviscosimetry (paper filtration, filtrometer) and viscosimetry (ektacytometer). It is considered the adequacy of each method in assessing the different factors responsible for the variations of red cell deformability (internal viscosity, surface area/volume ratio, viscoelastic properties of the membrane.

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What this paper is about

The rheological behavior of red cells in macrocirculation and in capillaries is briefly described. The following methods measuring red cell deformability are critically evaluated: a. degree of red cell 'packing' after centrifugation; b. single erythrocyte passage through microchannels (micropipette technique, rigidometer); c. filtration techniques of washed red cells; d. polymicroviscosimetry (paper filtration, filtrometer) and viscosimetry (ektacytometer). It is considered the adequacy of each method in assessing the different factors responsible for the variations of red cell deformability (internal viscosity, surface area/volume ratio, viscoelastic properties of the membrane.

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Available abstract

The rheological behavior of red cells in macrocirculation and in capillaries is briefly described. The following methods measuring red cell deformability are critically evaluated: a. degree of red cell 'packing' after centrifugation; b. single erythrocyte passage through microchannels (micropipette technique, rigidometer); c. filtration techniques of washed red cells; d. polymicroviscosimetry (paper filtration, filtrometer) and viscosimetry (ektacytometer). It is considered the adequacy of each method in assessing the different factors responsible for the variations of red cell deformability (internal viscosity, surface area/volume ratio, viscoelastic properties of the membrane.

Key concepts: Pipette, Erythrocyte deformability, Red Cell, Centrifugation, Filtration (mathematics), Red blood cell, Microcirculation, Rheology

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