George W Woodruff School of Mechanical Engineering, Georgia Institute of Technology, 315 Ferst Drive, Atlanta, GA 30332, USA.
Ann Biomed Eng. 2010 Apr;38(4):1377-87. doi: 10.1007/s10439-010-9916-6. Epub 2010 Jan 20.
Identification of an appropriate stress-free reference configuration is critically important in providing a reasonable prediction of the intramural stress distribution when performing biomechanical analyses on arteries. The stress-free state is commonly approximated as a radially cut ring that typically opens into a nearly circular sector, relieving much of the circumferential residual strains that exist in the traction-free configuration. An opening angle is often used to characterize this sector. In this study, we first present experimental results showing significant residual deformations in the longitudinal direction of two commonly studied arteries in the pig: the common carotid artery and the left anterior descending coronary artery. We concluded that a radially cut ring cannot completely describe the stress-free state of the arteries. Instead, we propose the use of a longitudinal opening angle, in conjunction with the traditional circumferential opening angle, to experimentally quantify the stress-free state of an artery. Secondly, we propose a new kinematic model to account for the addition of longitudinal residual strains through employing the longitudinal opening angle and performed a stress analysis. We found that with the inclusion of longitudinal residual strains in the stress analysis, the predicted circumferential stress gradient was decreased by 3-fold and the predicted longitudinal stress gradient was increased by 5.7-fold. Thus, inclusion of longitudinal residual strains has a significant effect on the predicted stress distribution in arteries.
在对血管进行生物力学分析时,确定合适的无应力参考构型对于合理预测壁内应力分布至关重要。无应力状态通常近似为径向切开的圆环,通常会打开成近乎圆形的扇形,从而释放了在无牵引力构型中存在的大部分周向残余应变。通常使用张开角来描述这个扇形。在这项研究中,我们首先展示了实验结果,这些结果表明在猪的两种常见研究动脉(颈总动脉和左前降支冠状动脉)中存在明显的纵向残余变形。我们得出结论,径向切开的圆环不能完全描述动脉的无应力状态。相反,我们建议使用纵向张开角,结合传统的周向张开角,来实验量化动脉的无应力状态。其次,我们提出了一种新的运动学模型,通过使用纵向张开角来考虑纵向残余应变的影响,并进行了应力分析。我们发现,在应力分析中包含纵向残余应变后,预测的周向应力梯度降低了 3 倍,预测的纵向应力梯度增加了 5.7 倍。因此,包含纵向残余应变对预测动脉中的应力分布有显著影响。