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Carotid artery stenting simulation: from patient-specific images to finite element analysis

(2011) MEDICAL ENGINEERING & PHYSICS. 33(3). p.281-289
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NUMERICAL SIMULATIONS, SUPERELASTIC BEHAVIOR, SHAPE-MEMORY ALLOYS, NITINOL STENT, ENDARTERECTOMY, BIFURCATION, MECHANICS, STENOSIS, TRIAL, Finite element analysis (FEA), Patient-specific model, Carotid artery stenting (CAS)

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Chicago
Auricchio, Ferdinando, Michele Conti, Matthieu De Beule, Gianluca De Santis, and Benedict Verhegghe. 2011. “Carotid Artery Stenting Simulation: From Patient-specific Images to Finite Element Analysis.” Medical Engineering & Physics 33 (3): 281–289.
APA
Auricchio, F., Conti, M., De Beule, M., De Santis, G., & Verhegghe, B. (2011). Carotid artery stenting simulation: from patient-specific images to finite element analysis. MEDICAL ENGINEERING & PHYSICS, 33(3), 281–289.
Vancouver
1.
Auricchio F, Conti M, De Beule M, De Santis G, Verhegghe B. Carotid artery stenting simulation: from patient-specific images to finite element analysis. MEDICAL ENGINEERING & PHYSICS. 2011;33(3):281–9.
MLA
Auricchio, Ferdinando, Michele Conti, Matthieu De Beule, et al. “Carotid Artery Stenting Simulation: From Patient-specific Images to Finite Element Analysis.” MEDICAL ENGINEERING & PHYSICS 33.3 (2011): 281–289. Print.
@article{1082708,
  author       = {Auricchio, Ferdinando and Conti, Michele and De Beule, Matthieu and De Santis, Gianluca and Verhegghe, Benedict},
  issn         = {1350-4533},
  journal      = {MEDICAL ENGINEERING \& PHYSICS},
  keyword      = {NUMERICAL SIMULATIONS,SUPERELASTIC BEHAVIOR,SHAPE-MEMORY ALLOYS,NITINOL STENT,ENDARTERECTOMY,BIFURCATION,MECHANICS,STENOSIS,TRIAL,Finite element analysis (FEA),Patient-specific model,Carotid artery stenting (CAS)},
  language     = {eng},
  number       = {3},
  pages        = {281--289},
  title        = {Carotid artery stenting simulation: from patient-specific images to finite element analysis},
  url          = {http://dx.doi.org/10.1016/j.medengphy.2010.10.011},
  volume       = {33},
  year         = {2011},
}

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