Resistance to blood flow in microvessels in vivo.
- 1 November 1994
- journal article
- abstracts
- Published by Wolters Kluwer Health in Circulation Research
- Vol. 75 (5) , 904-915
- https://doi.org/10.1161/01.res.75.5.904
Abstract
Resistance to blood flow through peripheral vascular beds strongly influences cardiovascular function and transport to tissue. For a given vascular architecture, flow resistance is determined by the rheological behavior of blood flowing through microvessels. A new approach for calculating the contribution of blood rheology to microvascular flow resistance is presented. Morphology (diameter and length), flow velocity, hematocrit, and topological position were determined for all vessel segments (up to 913) of terminal microcirculatory networks in the rat mesentery by intravital microscopy. Flow velocity and hematocrit were also predicted from mathematical flow simulations, in which the assumed dependence of flow resistance on diameter, hematocrit, and shear rate was optimized to minimize the deviation between measured and predicted values. For microvessels with diameters below approximately 40 microns, the resulting flow resistances are markedly higher and show a stronger dependence on hematocrit than previously estimated from measurements of blood flow in narrow glass tubes. For example, flow resistance in 10-microns microvessels at normal hematocrit is found to exceed that of a corresponding glass tube by a factor of approximately 4. In separate experiments, flow resistance of microvascular networks was estimated from direct measurements of total pressure drop and volume flow, at systemic hematocrits intentionally varied from 0.08 to 0.68. The results agree closely with predictions based on the above-optimized resistance but not with predictions based on glass-tube data. The unexpectedly high flow resistance in small microvessels may be related to interactions between blood components and the inner vessel surface that do not occur in smooth-walled tubes.Keywords
This publication has 22 references indexed in Scilit:
- Effect of Diameter Variability along a Microvessel Segment on Pressure DropMicrovascular Research, 1993
- The effects of leukocytes on blood flow in a model skeletal muscle capillary networkMicrovascular Research, 1990
- Red cell distribution at microvascular bifurcationsMicrovascular Research, 1989
- Estimation of red cell flow in microvessels: Consequences of the Baker-Wayland spatial averaging modelMicrovascular Research, 1986
- Analysis of the effects of measured white blood cell entrance times on hemodynamics in a computer model of a microvascular bedPflügers Archiv - European Journal of Physiology, 1985
- Quantitative studies on the influence of leukocytes on the vascular resistance in a skeletal muscle preparationMicrovascular Research, 1984
- In vivo measurements of “apparent viscosity” and microvessel hematocrit in the mesentery of the catMicrovascular Research, 1980
- Methods for the simultaneous measurement of pressure differentials and flow in single unbranched vessels of the microcirculation for rheological studiesMicrovascular Research, 1977
- Hemorheological aspects of the endothelium-plasma interfaceMicrovascular Research, 1974
- Quantitative Studies of Microcirculatory Structure and FunctionCirculation Research, 1974