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On connecting large vessels to small. The meaning of Murray's law.

The Journal of General Physiology · 1981 · Vol. 78(4) · pp. 431–453
T F Sherman

Abstract

A large part of the branching vasculature of the mammalian circulatory and respiratory systems obeys Murray's law, which states that the cube of the radius of a parent vessel equals the sum of the cubes of the radii of the daughters. Where this law is obeyed, a functional relationship exists between vessel radius and volumetric flow, average linear velocity of flow, velocity profile, vessel-wall shear stress, Reynolds number, and pressure gradient in individual vessels. In homogeneous, full-flow sets of vessels, a relation is also established between vessel radius and the conductance, resistance, and cross-sectional area of a full-flow set.

Groundwater and Watershed AnalysisRADIUSReynolds numberFlow (mathematics)MechanicsPressure gradientShear stressCube (algebra)Pulsatile flowPhysicsAnatomy

MeSH terms

AnimalsArteriesBlood ViscosityCardiovascular Physiological PhenomenaDogsMathematicsModels, BiologicalRespiratory Physiological Phenomena
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References
Blood Flow in Arteries
The American Journal of the Medical Sciences · 1963 · 1,569 citations
THE VISCOSITY OF THE BLOOD IN NARROW CAPILLARY TUBES
American Journal of Physiology-Legacy Content · 1931 · 1,243 citations
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