Tetrahedral vs. polyhedral mesh size evaluation on flow velocity and wall shear stress for cerebral hemodynamic simulation
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Thomas Redel | Joachim Hornegger | Christof Karmonik | Robert G. Grossman | Y. Jonathan Zhang | Martin Spiegel | Tobias Struffert | Arnd Doerfler | R. Grossman | J. Hornegger | T. Struffert | A. Doerfler | C. Karmonik | T. Redel | M. Spiegel | Y. J. Zhang | Robert G. Grossman
[1] Thomas Redel,et al. Tetrahedral and polyhedral mesh evaluation for cerebral hemodynamic simulation — A comparison , 2009, 2009 Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[2] K. Katada,et al. Magnitude and Role of Wall Shear Stress on Cerebral Aneurysm: Computational Fluid Dynamic Study of 20 Middle Cerebral Artery Aneurysms , 2004, Stroke.
[3] J Laudan,et al. Three-Dimensional Pulsatile Flow Simulation before and after Endovascular Coil Embolization of a Terminal Cerebral Aneurysm , 2001, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[4] M. Fortin,et al. Anisotropic mesh adaptation: towards user‐independent, mesh‐independent and solver‐independent CFD. Part II. Structured grids , 2002 .
[5] M. Fortin,et al. Anisotropic mesh adaptation: towards user‐independent, mesh‐independent and solver‐independent CFD. Part I: general principles , 2000 .
[6] A. Berenstein,et al. The utility of DynaCT in neuroendovascular procedures. , 2006, AJNR. American journal of neuroradiology.
[7] T. Yoshimoto,et al. Computational simulation of therapeutic parent artery occlusion to treat giant vertebrobasilar aneurysm. , 2004, AJNR. American journal of neuroradiology.
[8] Wei Wang,et al. Searching for a mesh-independent sub-grid model for CFD simulation of gas–solid riser flows , 2009 .
[9] M. L. Raghavan,et al. Quantified aneurysm shape and rupture risk. , 2005, Journal of neurosurgery.
[10] C. R. Ethier,et al. Requirements for mesh resolution in 3D computational hemodynamics. , 2001, Journal of biomechanical engineering.
[11] C. Putman,et al. Characterization of cerebral aneurysms for assessing risk of rupture by using patient-specific computational hemodynamics models. , 2005, AJNR. American journal of neuroradiology.
[12] Mark S. Shephard,et al. Boundary layer mesh generation for viscous flow simulations , 2000 .
[13] William E. Lorensen,et al. Marching cubes: A high resolution 3D surface construction algorithm , 1987, SIGGRAPH.
[14] G. Duckwiler,et al. Sensitivity of patient-specific numerical simulation of cerebal aneurysm hemodynamics to inflow boundary conditions. , 2007, Journal of neurosurgery.
[15] H. Meng,et al. Effects of arterial geometry on aneurysm growth: three-dimensional computational fluid dynamics study. , 2004, Journal of neurosurgery.
[16] Rainald Löhner,et al. Efficient simulation of blood flow past complex endovascular devices using an adaptive embedding technique , 2005, IEEE Transactions on Medical Imaging.
[17] Gen Sobue,et al. Contrast-enhanced 2D cine phase MR angiography for measurement of basilar artery blood flow in posterior circulation ischemia. , 2002, AJNR. American journal of neuroradiology.
[18] C Karmonik,et al. Blood Flow in Cerebral Aneurysms: Comparison of Phase Contrast Magnetic Resonance and Computational Fluid Dynamics - Preliminary Experience , 2008, RoFo : Fortschritte auf dem Gebiete der Rontgenstrahlen und der Nuklearmedizin.
[19] Wayne Oaks,et al. Polyhedral Mesh Generation , 2000, IMR.
[20] Gavin W Britz,et al. Prevalence of asymptomatic incidental aneurysms: review of 4568 arteriograms. , 2002, Journal of neurosurgery.
[21] T. Hori,et al. Is the Aspect Ratio a Reliable Index for Predicting the Rupture of a Saccular Aneurysm? , 2001, Neurosurgery.
[22] Alejandro F. Frangi,et al. Efficient pipeline for image-based patient-specific analysis of cerebral aneurysm hemodynamics: technique and sensitivity , 2005, IEEE Transactions on Medical Imaging.
[23] D. Holdsworth,et al. Image-based computational simulation of flow dynamics in a giant intracranial aneurysm. , 2003, AJNR. American journal of neuroradiology.
[24] N. Kitchen,et al. IS ASPECT RATIO A RELIABLE PREDICTOR OF INTRACRANIAL ANEURYSM RUPTURE? , 2004, Neurosurgery.
[25] L. Jou,et al. Wall Shear Stress on Ruptured and Unruptured Intracranial Aneurysms at the Internal Carotid Artery , 2008, American Journal of Neuroradiology.
[26] Rainald Löhner,et al. Generation of non‐isotropic unstructured grids via directional enrichment , 2000 .
[27] Christof Karmonik,et al. A technique for improved quantitative characterization of intracranial aneurysms. , 2004, AJNR. American journal of neuroradiology.