Back to search

Flow of hardened red blood cell suspensions through narrow tubes

Data up to Jan 2025

Published1979
Citations8
References18

Total Citations Per Year

Abstract

References (18)

THE VISCOSITY OF THE BLOOD IN NARROW CAPILLARY TUBES

1931 • 1,182 citations

Transport characteristics of suspension: VIII. A note on the viscosity of Newtonian suspensions of uniform spherical particles

1965 • 1,110 citations

THE SUSPENSION STABILITY OF THE BLOOD

1929 • 902 citations

Blood Viscosity: Influence of Erythrocyte Deformation

1967 • 273 citations

The Fahraeus effect

1971 • 246 citations

The contribution of normal and pathologic erythrocytes to blood rheology.

1971 • 62 citations

The wall effect in capillary instruments: an improved analysis suitable for application to blood and other particulate suspensions

1962 • 55 citations

Apparent Viscosity of Coarse, Concentrated Suspensions in Tube Flow

1970 • 38 citations

Concentration changes of suspensions of rigid spheres flowing through tubes

1968 • 37 citations

Flow of suspensions through tubes—X

1972 • 34 citations

Flow of red blood cell suspensions through narrow tubes

1977 • 17 citations

Changes in hematocrit for blood flow in narrow tubes.

1969 • 16 citations

Effet Fahraeus et effet Fahraeus-Lindqvist: résultats expérimentaux et modèles théoriques

1976 • 15 citations

The flow of Suspensions through tubes

1968 • 13 citations

Erythrocyte flexibility, hemoconcentration and blood flow resistance in glass capillaries with diameters between 6 and 50 microns.

1969 • 9 citations

Concentration Reduction and Dilatant Flow Behavior in Suspensions of Hardened Human Red Cells

1973 • 7 citations

A semi-empirical model for flow of blood and other particulate suspensions through narrow tubes

1975 • 6 citations

A semi-empirical model for flow of blood and other particulate suspensions through narrow tubes

1975 • 4 citations

Cited By (0)

No citing papers found in database

Flow of hardened red blood cell suspensions through narrow tubes (1979) – Microvascular Research | Metascience Observatory Explorer