Effect of flow on the resistance of modelled femoral artery stenoses

Author:

Dodds S R1,Bourne N K2,Chant A D B1

Affiliation:

1. Department of Vascular Surgery, Royal South Hants Hospital, Southampton, UK

2. Department of Physics, Cavendish Laboratory, Cambridge, UK

Abstract

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 (Rf) combined with a variable component (Rv) that increased linearly with flow (Q) such that Rv = SvQ. For stenoses of 68–94 per cent area, Rfincreased from 3·2 to 77·7 milliperipheral resistance units (mPRU), while Sv increased from 0·009 to 0·578 mPRU ml−1 min and Rv was dominant for physiological flow rates. It was concluded that the approximation of a significant stenosis to a fixed resistance is incorrect.

Publisher

Oxford University Press (OUP)

Subject

Surgery

Reference21 articles.

1. The effect on the blood flow of decreasing the lumen of a blood vessel;Mann;Surgery,1938

2. Critical arterial stenosis;May;Surgery,1963

3. Factors affecting flow through a stenosed vessel;Fiddian;Arch Surg,1964

4. The values of series and parallel resistances in steady blood-flow;Weale;Br J Surg,1964

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