Modeling plaque fissuring and dissection during balloon angioplasty intervention

被引:61
作者
Gasser, T. Christian
Holzapfel, Gerhard A.
机构
[1] Royal Inst Technol, Sch Engn Sci, Dept Solid Mech, SE-10044 Stockholm, Sweden
[2] Graz Univ Technol, Inst Biomech, Ctr Biomed Engn, A-8010 Graz, Austria
关键词
artery; atherosclerotic plaque; balloon angioplasty; cohesive zone model; dissection; FEM; plaque fissuring;
D O I
10.1007/s10439-007-9258-1
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Balloon angioplasty intervention is traumatic to arterial tissue. Fracture mechanisms such as plaque fissuring and/or dissection occur and constitute major contributions to the lumen enlargement. However, these types of mechanically-based traumatization of arterial tissue are also contributing factors to both acute procedural complications and chronic restenosis of the treatment site. We propose physical and finite element models, which are generally useable to trace fissuring and/or dissection in atherosclerotic plaques during balloon angioplasty interventions. The arterial wall is described as an anisotropic, heterogeneous, highly deformable, nearly incompressible body, whereas tissue failure is captured by a strong discontinuity kinematics and a novel cohesive zone model. The numerical implementation is based on the partition of unity finite element method and the interface element method. The later is used to link together meshes of the different tissue components. The balloon angioplasty-based failure mechanisms are numerically studied in 3D by means of an atherosclerotic-prone human external iliac artery, with a type V lesion. Image-based 3D geometry is generated and tissue-specific material properties are considered. Numerical results show that in a primary phase the plaque fissures at both shoulders of the fibrous cap and stops at the lamina elastica interna. In a secondary phase, local dissections between the intima and the media develop at the fibrous cap location with the smallest thickness. The predicted results indicate that plaque fissuring and dissection cause localized mechanical trauma, but prevent the main portion of the stenosis from high stress, and hence from continuous tissue damage.
引用
收藏
页码:711 / 723
页数:13
相关论文
共 69 条
[1]   THE MORPHOLOGY OF CORONARY ARTERIAL DISSECTION OCCURRING SUBSEQUENT TO ANGIOPLASTY AND ITS INFLUENCE ON ACUTE COMPLICATIONS [J].
AGARWAL, R ;
KAUL, U ;
DEV, V ;
SHARMA, S ;
VENUGOPAL, P .
INTERNATIONAL JOURNAL OF CARDIOLOGY, 1991, 31 (01) :59-64
[2]   An analysis of strong discontinuities in multiplicative finite strain plasticity and their relation with the numerical simulation of strain localization in solids [J].
Armero, F ;
Garikipati, K .
INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 1996, 33 (20-22) :2863-2885
[3]   3-D reconstruction of tissue components for atherosclerotic human arteries using ex vivo high-resolution MRI [J].
Auer, M ;
Stollberger, R ;
Regitnig, P ;
Ebner, F ;
Holzapfel, GA .
IEEE TRANSACTIONS ON MEDICAL IMAGING, 2006, 25 (03) :345-357
[4]   TEAR OR DISSECTION AFTER CORONARY ANGIOPLASTY - MORPHOLOGIC CORRELATES OF AN ISCHEMIC COMPLICATION [J].
BLACK, AJR ;
NAMAY, DL ;
NIEDERMAN, AL ;
LEMBO, NJ ;
ROUBIN, GS ;
DOUGLAS, JS ;
KING, SB .
CIRCULATION, 1989, 79 (05) :1035-1042
[5]   THE STRENGTH OF THE AORTIC MEDIA AND ITS ROLE IN THE PROPAGATION OF AORTIC DISSECTION [J].
CARSON, MW ;
ROACH, MR .
JOURNAL OF BIOMECHANICS, 1990, 23 (06) :579-588
[6]   THE MECHANISM OF BALLOON ANGIOPLASTY [J].
CASTANEDAZUNIGA, WR ;
FORMANEK, A ;
TADAVARTHY, M ;
VLODAVER, Z ;
EDWARDS, JE ;
ZOLLIKOFER, C ;
AMPLATZ, K .
RADIOLOGY, 1980, 135 (03) :565-571
[7]   TRANSMURAL ORGANIZATION OF THE ARTERIAL MEDIA - THE LAMELLAR UNIT REVISITED [J].
CLARK, JM ;
GLAGOV, S .
ARTERIOSCLEROSIS, 1985, 5 (01) :19-34
[8]   THE THERMODYNAMICS OF ELASTIC MATERIALS WITH HEAT CONDUCTION AND VISCOSITY [J].
COLEMAN, BD ;
NOLL, W .
ARCHIVE FOR RATIONAL MECHANICS AND ANALYSIS, 1963, 13 (03) :167-178
[9]   High resolution magnetic resonance imaging of atherosclerosis and the response to balloon angioplasty [J].
Coulden, RA ;
Moss, H ;
Graves, MJ ;
Lomas, DJ ;
Appleton, DS ;
Weissberg, PL .
HEART, 2000, 83 (02) :188-191
[10]  
CRIPPS TR, 1991, BRIT HEART J, V66, P3