Literature DB >> 19675980

Influence of inlet boundary conditions on the local haemodynamics of intracranial aneurysms.

Alberto Marzo1, Pankaj Singh, Philippe Reymond, Nikos Stergiopulos, Umang Patel, Rodney Hose.   

Abstract

Haemodynamics is believed to play an important role in the initiation, growth and rupture of intracranial aneurysms. In this context, computational haemodynamics has been extensively used in an effort to establish correlations between flow variables and clinical outcome. It is common practice in the application of Dirichlet boundary conditions at domain inlets to specify transient velocities as either a flat (plug) profile or a spatially developed profile based on Womersley's analytical solution. This paper provides comparative haemodynamics measures for three typical cerebral aneurysms. Three dimentional rotational angiography images of aneurysms at three common locations, viz. basilar artery tip, internal carotid artery and middle cerebral artery were obtained. The computational tools being developed in the European project @neurIST were used to reconstruct the fluid domains and solve the unsteady Navier-Stokes equations, using in turn Womersley and plug-flow inlet velocity profiles. The effects of these assumptions were analysed and compared in terms of relevant haemodynamic variables within the aneurismal sac. For the aneurysm at the basilar tip geometries with different extensions of the afferent vasculature were considered to study the plausibility of a fully-developed axial flow at the inlet boundaries. The study shows that assumptions made on the velocity profile while specifying inlet boundary conditions have little influence on the local haemodynamics in the aneurysm, provided that a sufficient extension of the afferent vasculature is considered and that geometry is the primary determinant of the flow field within the aneurismal sac. For real geometries the Womersley profile is at best an unnecessary over-complication, and may even be worse than the plug profile in some anatomical locations (e.g. basilar confluence).

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Year:  2009        PMID: 19675980     DOI: 10.1080/10255840802654335

Source DB:  PubMed          Journal:  Comput Methods Biomech Biomed Engin        ISSN: 1025-5842            Impact factor:   1.763


  15 in total

1.  A non-dimensional parameter for classification of the flow in intracranial aneurysms. I. Simplified geometries.

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Review 3.  Multiscale imaging and computational modeling of blood flow in the tumor vasculature.

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Journal:  Ann Biomed Eng       Date:  2012-05-08       Impact factor: 3.934

4.  Intra-aneurysmal pressure and flow changes induced by flow diverters: relation to aneurysm size and shape.

Authors:  I Larrabide; M L Aguilar; H G Morales; A J Geers; Z Kulcsár; D Rüfenacht; A F Frangi
Journal:  AJNR Am J Neuroradiol       Date:  2012-09-27       Impact factor: 3.825

5.  The effect of inlet waveforms on computational hemodynamics of patient-specific intracranial aneurysms.

Authors:  J Xiang; A H Siddiqui; H Meng
Journal:  J Biomech       Date:  2014-10-13       Impact factor: 2.712

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Authors:  Yiemeng Hoi; Bruce A Wasserman; Edward G Lakatta; David A Steinman
Journal:  J Biomech Eng       Date:  2010-12       Impact factor: 2.097

7.  The effects of aortic coarctation on cerebral hemodynamics and its importance in the etiopathogenesis of intracranial aneurysms.

Authors:  Pankaj K Singh; Alberto Marzo; Cristina Staicu; Matt G William; Iain Wilkinson; Patricia V Lawford; Daniel A Rufenacht; Philippe Bijlenga; Alejandro F Frangi; Rodney Hose; Umang J Patel; Stuart C Coley
Journal:  J Vasc Interv Neurol       Date:  2010-01

8.  Effect of inlet velocity profiles on patient-specific computational fluid dynamics simulations of the carotid bifurcation.

Authors:  Ian C Campbell; Jared Ries; Saurabh S Dhawan; Arshed A Quyyumi; W Robert Taylor; John N Oshinski
Journal:  J Biomech Eng       Date:  2012-05       Impact factor: 2.097

9.  @neurIST complex information processing toolchain for the integrated management of cerebral aneurysms.

Authors:  M C Villa-Uriol; G Berti; D R Hose; A Marzo; A Chiarini; J Penrose; J Pozo; J G Schmidt; P Singh; R Lycett; I Larrabide; A F Frangi
Journal:  Interface Focus       Date:  2011-04-06       Impact factor: 3.906

10.  Effects of framing coil shape, orientation, and thickness on intra-aneurysmal flow.

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Journal:  Med Biol Eng Comput       Date:  2013-04-08       Impact factor: 2.602

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