Literature DB >> 12122276

Combined MR imaging and numerical simulation of flow in realistic arterial bypass graft models.

Y Papaharilaou1, D J Doorly, S J Sherwin, J Peiro, C Griffith, N Cheshire, V Zervas, J Anderson, B Sanghera, N Watkins, C G Caro.   

Abstract

We report methods for (a) transforming a three-dimensional geometry acquired by magnetic resonance angiography (MRA) in vivo, or by imaging a model cast, into a computational surface representation, (b) use of this to construct a three dimensional numerical grid for computational fluid dynamic (CFD) studies, and (c) use of the surface representation to produce a stereo-lithographic replica of the real detailed geometry, at a scale convenient for detailed magnetic resonance imaging (MRI) flow studies. This is applied to assess the local flow field in realistic geometry arterial bypass grafts. Results from a parallel numerical simulation and MRI measurement of flow in an aorto-coronary bypass graft with various inlet flow conditions demonstrate the strong influence of the graft inlet waveform on the perianastomotic flow field. A sinusoidal and a multi harmonic coronary flow waveform both with a mean Reynolds number (Re) of 100 and a Womersley parameter of 2.7 were applied at the graft inlet. A weak axial flow separation region just distal to the toe was found in sinusoidal flow near end deceleration (Re = 25). At the same location and approximately the same point in the cycle (Re = 30) but in coronary flow, the axial flow separation was stronger and more spatially pronounced. No axial flow separation occurred in steady flow for Re = 100. Numerical predictions indicate a region in the vicinity of the suture line (where there is a local narrowing of the graft) with a wall shear magnitude in excess of five times that associated with fully developed flow at the graft inlet.

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Year:  2002        PMID: 12122276

Source DB:  PubMed          Journal:  Biorheology        ISSN: 0006-355X            Impact factor:   1.875


  3 in total

1.  A model of blood flow in the mesenteric arterial system.

Authors:  Thusitha D S Mabotuwana; Leo K Cheng; Andrew J Pullan
Journal:  Biomed Eng Online       Date:  2007-05-08       Impact factor: 2.819

2.  Flow and wall shear stress in end-to-side and side-to-side anastomosis of venous coronary artery bypass grafts.

Authors:  Thomas Frauenfelder; Evangelos Boutsianis; Thomas Schertler; Lars Husmann; Sebastian Leschka; Dimos Poulikakos; Borut Marincek; Hatem Alkadhi
Journal:  Biomed Eng Online       Date:  2007-09-26       Impact factor: 2.819

3.  Computational model of blood flow in the aorto-coronary bypass graft.

Authors:  Meena Sankaranarayanan; Leok Poh Chua; Dhanjoo N Ghista; Yong Seng Tan
Journal:  Biomed Eng Online       Date:  2005-03-04       Impact factor: 2.819

  3 in total

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