Abstract
An accurate model of the pressure-flow relationship of a stenosis is necessary for the correct interpretation of haemodynamic measurements. Modelled femoral artery stenoses were tested in vitro and the pressure drop:flow ratio (resistance) was most accurately represented by a fixed component (R(f)) combined with a variable component (R(v)) that increased linearly with flow (Q) such that R(v) = S(v)Q. For stenoses of 68-94 per cent area, R(f) increased from 3.2 to 77.7 milliperipheral resistance units (mPRU), while S(v) increased from 0.009 to 0.578 mPRU ml-1 min and R(v) was dominant for physiological flow rates. It was concluded that the approximation of a significant stenosis to a fixed resistance is incorrect.
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CITATION STYLE
Dodds, S. R., Bourne, N. K., & Chant, A. D. B. (1996). Effect of flow on the resistance of modelled femoral artery stenoses. British Journal of Surgery, 83(7), 957–961. https://doi.org/10.1002/bjs.1800830723
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