Effect of erythrocyte aggregation on velocity profiles in venules
- 1 January 2001
- journal article
- research article
- Published by American Physiological Society in American Journal of Physiology-Heart and Circulatory Physiology
- Vol. 280 (1) , H222-H236
- https://doi.org/10.1152/ajpheart.2001.280.1.h222
Abstract
A recent whole organ study in cat skeletal muscle showed that the increase in venous resistance seen at reduced arterial pressures is nearly abolished when the muscle is perfused with a nonaggregating red blood cell suspension. To explore a possible underlying mechanism, we tested the hypothesis that red blood cell aggregation alters flow patterns in vivo and leads to blunted red blood cell velocity profiles at reduced shear rates. With the use of fluorescently labeled red blood cells in tracer quantities and a video system equipped with a gated image intensifier, we obtained velocity profiles in venous microvessels (45–75 μm) of rat spinotrapezius muscle at centerline velocities between 0.3 and 14 mm/s (pseudoshear rates 3–120 s−1) under normal (nonaggregating) conditions and after induction of red blood cell aggregation with Dextran 500. Profiles are nearly parabolic (Poiseuille flow) over this flow rate range in the absence of aggregation. When aggregation is present, profiles are parabolic at high shear rates and become significantly blunted at pseudoshear rates of 40 s−1 and below. These results indicate a possible mechanism for increased venous resistance at reduced flows.Keywords
This publication has 33 references indexed in Scilit:
- Diameter changes in skeletal muscle venules during arterial pressure reductionAmerican Journal of Physiology-Heart and Circulatory Physiology, 2000
- Erythrocyte aggregation tendency and cellular properties in horse, human, and rat: a comparative studyAmerican Journal of Physiology-Heart and Circulatory Physiology, 1997
- Ultrasound backscattering from non-aggregating and aggregating erythrocytes-a reviewPublished by Elsevier ,1997
- Decreased hydrodynamic resistance in the two-phase flow of blood through small vertical tubes at low flow rates.Circulation Research, 1991
- On-line volume flow rate and velocity profile measurement for blood in microvesselsMicrovascular Research, 1974
- Velocity distribution and other characteristics of steady and pulsatile blood flow in fine glass tubes1Biorheology, 1970
- Shear-dependent interaction of plasma proteins with erythrocytes in blood rheologyAmerican Journal of Physiology-Legacy Content, 1970
- Shear Dependence of Effective Cell Volume as a Determinant of Blood ViscosityScience, 1970
- Interactions among erythrocytes under shear.Journal of Applied Physiology, 1970
- Detailed Characteristics of the Flow of Blood In VitroTransactions of the Society of Rheology, 1963