about
Particle imaging velocimetry evaluation of intracranial stents in sidewall aneurysm: hemodynamic transition related to the stent designRadial Shock Wave Devices Generate Cavitation.Computational fluid dynamics with stents: quantitative comparison with particle image velocimetry for three commercial off the shelf intracranial stents.Methodologies to assess blood flow in cerebral aneurysms: current state of research and perspectives.Luminescence from cavitation bubbles deformed in uniform pressure gradients.Virtual-versus-Real Implantation of Flow Diverters: Clinical Potential and Influence of Vascular Geometry.Geometrical deployment for braided stent.Universal scaling law for jets of collapsing bubbles.Efficient and reproducible mammalian cell bioprocesses without probes and controllers?Effect of flow diverter porosity on intraaneurysmal blood flowEnergy partition at the collapse of spherical cavitation bubblesHemodynamic transition driven by stent porosity in sidewall aneurysmsHow Flow Reduction Influences the Intracranial Aneurysm Occlusion: A Prospective 4D Phase-Contrast MRI Study
P50
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P50
description
onderzoeker
@nl
researcher, ORCID id # 0000-0002-4782-2170
@en
name
M Farhat
@ast
M Farhat
@en
M Farhat
@es
M Farhat
@nl
type
label
M Farhat
@ast
M Farhat
@en
M Farhat
@es
M Farhat
@nl
prefLabel
M Farhat
@ast
M Farhat
@en
M Farhat
@es
M Farhat
@nl
P106
P1153
7006404634
P31
P496
0000-0002-4782-2170