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Volumn 8, Issue 10, 2015, Pages 1281-1296

Biomechanical Modeling to Improve Coronary Artery Bifurcation Stenting: Expert Review Document on Techniques and Clinical Implementation

(23)  Antoniadis, Antonios P a,b,c   Mortier, Peter d,e   Kassab, Ghassan f   Dubini, Gabriele g   Foin, Nicolas h   Murasato, Yoshinobu i   Giannopoulos, Andreas A a,b   Tu, Shengxian j   Iwasaki, Kiyotaka k   Hikichi, Yutaka l   Migliavacca, Francesco g   Chiastra, Claudio g,m   Wentzel, Jolanda J m   Gijsen, Frank m   Reiber, Johan H C n   Barlis, Peter o   Serruys, Patrick W p   Bhatt, Deepak L a   Stankovic, Goran q   Edelman, Elazer R a,r   more..

d FEops   (Belgium)

Author keywords

bifurcation; biomechanical stress; coronary artery disease; endothelial shear stress; stent(s)

Indexed keywords

ADVERSE OUTCOME; ARTICLE; BIOMECHANICS; COMPUTER SIMULATION; CORONARY BIFURCATION LESION; CORONARY STENTING; GEOMETRY; HEMODYNAMICS; HUMAN; IN VITRO STUDY; IN-STENT RESTENOSIS; NONHUMAN; PERCUTANEOUS CORONARY INTERVENTION; PRIORITY JOURNAL; STENT THROMBOSIS; ANATOMIC MODEL; ANIMAL; BIOLOGICAL MODEL; COMPUTER AIDED DESIGN; COMPUTER ASSISTED THERAPY; CORONARY ARTERY BLOOD FLOW; CORONARY ARTERY DISEASE; CORONARY BLOOD VESSEL; DEVICES; PATHOLOGY; PATHOPHYSIOLOGY; PROSTHESIS DESIGN; STENT; TRANSLUMINAL CORONARY ANGIOPLASTY; TREATMENT OUTCOME;

EID: 84940388438     PISSN: 19368798     EISSN: 18767605     Source Type: Journal    
DOI: 10.1016/j.jcin.2015.06.015     Document Type: Review
Times cited : (96)

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