MODELING THE ARTERIAL-WALL BY FINITE-ELEMENTS

被引:10
|
作者
MOSORA, F [1 ]
HARMANT, A [1 ]
BERNARD, C [1 ]
FOSSION, A [1 ]
POCHET, T [1 ]
JUCHMES, J [1 ]
CESCOTTO, S [1 ]
机构
[1] UNIV LIEGE, APPL HYDRAUL HYDRAUL CONSTRUCT & NAVAL ARCHITECTUR, B-4000 LIEGE, BELGIUM
关键词
AORTA ARTERIAL WALL; FINITE ELEMENT METHOD; YOUNG MODULUS; PRESSURE-DIAMETER MEASUREMENTS; DOG;
D O I
10.3109/13813459309046473
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The mechanical behaviour of the arterial wall was determined theoretically utilizing some parameters of blood flow measured in vivo. Continuous experimental measurements of pressure and diameter were recorded in anesthetized dogs on the thoracic ascending and midabdominal aorta. The pressure was measured by using a catheter, and the diameter firstly, at the same site, by a plethysmograph with mercury gauge and secondly, by a sonomicrometer with ferroelectric ceramic transducers. The unstressed radius and thickness were measured at the end of each experiment in situ. Considering that the viscous component is not important relatively to the nonlinear component of the elasticity and utilizing several equations for Young modulus calculation (thick and thin wall circular cylindrical tube formulas and Bergel's equation) the following values were obtained for this parameter : 0.6 MPa - 2 MPa in midabdominal aorta and 2 MPa - 6.5 MPa in thoracic ascending aorta. The behaviour of the aorta wall was modelled considering an elastic law and using the finite element program ''Lagamine'' working in large deformations. The discretized equilibrium equations are non-linear and a unique axi-symmetric, iso-parametric element of 1 cm in length with 8 knots was used for this bi-dimensional problem. The theoretical estimation of radius vessel, utilizing a constant 5 MPa Young modulus and also a variable one, are in good agreement with the experimental results, showing that this finite element model can be applied to study mechanical properties of the arteries in physiological and pathological conditions.
引用
收藏
页码:185 / 191
页数:7
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