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Biophysical aspects of blood flow in the microvasculature

Cardiovascular Research · 1996 · Vol. 32(4) · pp. 654–667
Axel R. PriesTimothy W. SecombP. Gaehtgens

Abstract

The main function of the microvasculature is transport of materials. Water and solutes are carried by blood through the microvessels and exchanged, through vessel walls, with the surrounding tissues. This transport function is highly dependent on the architecture of the microvasculature and on the biophysical behavior of blood flowing through it. For example, the hydrodynamic resistance of a microvascular network, which determines the overall blood flow for a given perfusion pressure, depends on the number, size and arrangement of microvessels, the passive and active mechanisms governing their diameters, and on the apparent viscosity of blood flowing in them. Suspended elements in blood, especially red blood cells, strongly influence the apparent viscosity, which varies with several factors, including vessel diameter, hematocrit and blood flow velocity. The distribution of blood flows and red cell fluxes within a network, which influences the spatial pattern of mass transport, is determined by the mechanics of red cell motion in individual diverging bifurcations. Here, our current understanding of the biophysical processes governing blood flow in the microvasculature is reviewed, and some directions for future research are indicated.

Blood properties and coagulationErythrocyte Function and PathophysiologyLipid metabolism and disordersHematocritBlood flowBlood viscosityHemorheologyMicrocirculationRed blood cellBiophysicsPerfusionMechanicsChemistry

MeSH terms

AnimalsErythrocyte DeformabilityHematocritHumansMammalsMicrocirculationHemorheology

Funding

  • Deutsche Forschungsgemeinschaft
  • National Institutes of Health
Citations
507
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92%
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References
Handbook of Physiology—The Cardiovascular System
Critical Care Medicine · 1985 · 1,154 citations
THE VISCOSITY OF THE BLOOD IN NARROW CAPILLARY TUBES
American Journal of Physiology-Legacy Content · 1931 · 1,243 citations
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