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Layer-specific hyperelastic and viscoelastic characterization of human descending thoracic aortas

机译:人工后期胸部主动脉的层特异性高速和粘弹性表征

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A layer-specific hyperelastic and viscoelastic characterization of human descending thoracic aortas was experimentally performed. Healthy aortas from twelve beating heart donors with an average age of 49.4 years, were received from Transplant Quebec. Axial and circumferential strips were prepared from the specimens. They were dissected into intima, media and adventitia layers. Measurements of the opening angles were used to identify the circumferential residual stresses. Uniaxial tensile tests on axial and circumferential strips, together with the Gasser-Ogden-Holzapfel material model, were used to characterize the hyperelastic behaviour of the three aortic layers for each donor. Uniaxial harmonic excitations at different frequency, superimposed to initial stretch values, were used to characterize the viscoelastic behaviour. The storage modulus and the loss tangent were obtained for each layer in both directions; comparison to intact aortic wall was also performed. The generalized Maxwell model, within the framework of nonlinear viscoelasticity with internal variables, was used to obtain the constitutive material parameters. Results showed a positive correlation (p < 0.05 for circumferential media and adventitia) between stiffness and donor age for the three layers of the aorta in both axial and circumferential directions. A significant increase (around 50%) of the storage modulus (i.e. dynamic stiffness) was observed between the quasi-static value and loading at 1 Hz frequency, while further increase in frequency marginally affected its value. The loss tangent was only slightly influenced by the stretch value, which justified the use of the viscoelastic model adopted. Finally, similar loss tangent values were found for the three aortic layers.
机译:实验进行了人降序的层下行胸部主动脉的层特异性的超痉挛性和粘弹性表征。从移植魁北克省收到12岁12次击败心脏捐赠者的健康主动脉,平均为49.4岁。从标本制备轴向和周向条带。他们被解剖到内部,媒体和患有者层。开口角度的测量用于识别周向残余应力。轴向和周向条带上的单轴拉伸试验与Gasser-Ogden-holzapfel材料模型一起用于表征每个供体的三个主动脉层的高速行为。不同频率的单轴谐波激发叠加到初始拉伸值,用于表征粘弹性行为。在两个方向上为每层获得储存模量和损耗切线;还进行了完整主动脉壁的比较。在具有内部变量的非线性粘弹性框架内的广义麦克斯韦模型用于获得本构体参数。结果表明,在轴向和圆周方向上的三层主动脉的刚度和供体年龄之间的阳性相关性(用于圆周介质和外膜的P <0.05)。在准静态值和1 Hz频率下加载时,观察到储存模量(即动态刚度)的显着增加(即50%),而频率进一步增加频率略微影响其价值。损失切线仅受拉伸值的略微影响,这有证明了采用的粘弹性模型的使用。最后,发现了三个主动脉层的类似损失切线值。

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