articleTop 10% cited
Toward a biomechanical tool to evaluate rupture potential of abdominal aortic aneurysm: identification of a finite strain constitutive model and evaluation of its applicability
Journal of Biomechanics · 2000 · Vol. 33(4) · pp. 475–482
Madhavan L. Raghavan(University of Pittsburgh)David A. Vorp✉(University of Pittsburgh)
Aortic aneurysm repair treatmentsElasticity and Material ModelingAortic Disease and Treatment ApproachesHyperelastic materialAbdominal aortic aneurysmFinite element methodConstitutive equationPopulationIsotropyParametric statisticsStress (linguistics)Structural engineeringApplied mathematics
MeSH terms
Aorta, AbdominalAortic RuptureBiomechanical PhenomenaHumansModels, CardiovascularRegression AnalysisFinite Element Analysis
Citations
578
FWCI
5.25
field-weighted impact
References
31
Percentile
95%
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Citations per year
Cited by
In vivo analysis of mechanical wall stress and abdominal aortic aneurysm rupture risk
Journal of Vascular Surgery · 2002 · 493 citations
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Journal of Vascular Surgery · 2003 · 708 citations
References
Elasticity of soft tissues in simple elongation
American Journal of Physiology-Legacy Content · 1967 · 1,003 citations
Mechanical wall stress in abdominal aortic aneurysm: Influence of diameter and asymmetry
Journal of Vascular Surgery · 1998 · 423 citations
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