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Approaches for treatment of aortic arch aneurysm, a numerical study
Asaph Nardi,
Idit Avrahami
Department of Mechanical Engineering and Mechatronics
Research output
:
Contribution to journal
›
Article
›
peer-review
26
Scopus citations
Overview
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Dive into the research topics of 'Approaches for treatment of aortic arch aneurysm, a numerical study'. Together they form a unique fingerprint.
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Keyphrases
Chimney
100%
Wall Shear Stress
100%
Aortic Arch Aneurysm
100%
Disturbed Flow
66%
Aortic Arch
66%
High Risk
33%
Blood Pressure
33%
Treatment Strategy
33%
Hybrid Method
33%
Hemodynamic Parameters
33%
Manufacturing Cost
33%
Flow Pattern
33%
Endovascular Techniques
33%
Manufacturing Time
33%
Risk Rate
33%
Emergency Case
33%
Chimney Stent Graft
33%
Stent-graft
33%
Endograft
33%
Flow Dynamics
33%
Computational Fluid Dynamics Modeling
33%
Arch Vessels
33%
Time-dependent Flow
33%
Hemodynamic Function
33%
Hemodynamic Performance
33%
Velocity Vector
33%
Geometric Model
33%
Directed Flow
33%
Vector Flow
33%
Low Pressure Drop
33%
Recirculating Flow
33%
Pressure-shear
33%
Hybrid Stent Graft
33%
Shear Velocity
33%
Wall Shear Stress Distribution
33%
Graft Hybridization
33%
Fluid Domain
33%
Physiological Flow
33%
Vortical Flow
33%
Flow Regions
33%
Engineering
Numerical Study
100%
Arch
100%
Wall Shear Stress
66%
Grafts
33%
Stent-Graft
33%
Computational Fluid Dynamics
16%
Dynamic Method
16%
Manufacturing Cost
16%
Geometric Model
16%
Pressure Drop
16%
Flow Dynamics
16%
Hemodynamic Performance
16%
Shear Stress Distribution
16%
Fluid Domain
16%
Flow Region
16%
Manufacturing Time
16%
Velocity Vector
16%
Boundary Condition
16%
Flow Distribution
16%
Medicine and Dentistry
Aneurysm
100%
Aortic Arch
100%
Hemodynamic
60%
Stent-Graft
40%
Graft (Surgery)
40%
Health Care Cost
20%
Blood Pressure
20%
Pharmacology, Toxicology and Pharmaceutical Science
Aneurysm
100%
Stent-Graft
66%