Key result
Rabbit microvascular volume flow scales with diameter to the 4th power, supporting constant pressure gradients.
Why the study?
The relationship between blood volume flow and vessel diameter in the precapillary microvasculature and the validity of Murray's law versus the principle of constant longitudinal pressure gradient was uncertain.
Effect estimate: correlation coefficient 0.97
In the precapillary microvasculature, volume flow depends on diameter to the 4th power, supporting the principle of constant longitudinal pressure gradient over minimum work.
Supports constant pressure gradient model in rabbit microvasculature; leaves open human translation and clinical relevance.
Volume flow was estimated from axial erythrocyte velocity measurements in 30 mesenteric microvessels of 6 rabbits and was compared to Murray's law predictions. The diameters of capillaries and precapillary arterioles ranged between 5.6 and 12 microm. The significant pulsating flow component existing in these microvessels was taken into account by measuring instantaneous axial blood velocity throughout the course of a cardiac cycle and then averaging over the period. In addition, the effect of the velocity profile variation with diameter was taken into account, for the first time, by using a profile factor function. According to Murray's law, the relation between blood volume flow and diameter is governed by a 'cube' law. Curve fitting to volume flow and diameter data pairs for rabbits, showed a dependence of volume flow on diameter raised to the 4th power (with a correlation coefficient equal to 0.97). The above result supports the hypothesis that, in the precapillary part of microvasculature, the principle of constant longitudinal pressure gradient rather than the principle of minimum work may be valid.
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Aristotle G. Koutsiaris (2005) studied this question. Axial erythrocyte velocity measurements vs. Murray's law predictions was evaluated on Relation between blood volume flow and diameter (correlation coefficient 0.97). Volume flow in the precapillary mesenteric microvasculature of rabbits depended on diameter raised to the 4th power (correlation coefficient 0.97), supporting a constant pressure gradient.
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