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在有搏动性心动周期的情况下,不同腔内血栓位置的带支架三层主动脉瘤中层的壁应力。

Wall stress in media layer of stented three-layered aortic aneurysm at different intraluminal thrombus locations with pulsatile heart cycle.

作者信息

Rahmani Shahrokh, Alagheband Mohammad, Karimi Alireza, Alizadeh Mansour, Navidbakhsh Mahdi

机构信息

School of Mechanical Engineering, Iran University of Science and Technology , Tehran , Iran.

出版信息

J Med Eng Technol. 2015 May;39(4):239-45. doi: 10.3109/03091902.2015.1040173. Epub 2015 Apr 23.

Abstract

At the point when the aorta ruptures suddenly, as opposed to as the after-effect of injury, it is for the most part in aortic aneurysm. Aortic aneurysm rupture happens when the wall stress surpasses the strength of the vascular tissue. Intraluminal thrombus (ILT) may have advantages as it can absorb tension and decrease aortic aneurysm wall stress. This study aims to investigate the presence and growth effects of ILT on the wall stress in a stented aneurysm in one heart cycle. A virtual stented aneurysm model with ILT was made to study the flow and wall dynamics using fluid-structure interaction (FSI) analysis. Wall stresses at the center line of media layer of aorta thickness were calculated by two-dimensional axisymmetric finite element analysis. Calculations were executed as thrombus elastic modulus increased from 0.1 to 2 MPa and calculations were repeated as thrombus depth was increased in 10% increment until thrombus filled the whole aneurysm cavity. The von Mises stresses were compared in three sections, namely proximal, aneurysm and distal sections in the abdominal aorta. The wall stress showed its maximum value during a peak flow and pressure and gradually decreased as the pressure and velocity of blood reduced in all three aforementioned sections. As the intraluminal thrombus depth increased from 10% to 100%, the wall stress in distal, proximal and centre of aneurysm during one heart cycle was decreased. Furthermore, increasing the elastic modulus of thrombus from 10% to 100% triggered a reduction in wall stress in proximal, centre of intraluminal thrombus and distal regions during one heart cycle. The achievements of this study may have implications not only for understanding the wall stress in ILT, but also for providing more detailed information about aortic aneurysm with intraluminal thrombus and can help surgeons to do their best.

摘要

当主动脉突然破裂时,与因损伤导致的情况相反,大多是由主动脉瘤引起的。主动脉瘤破裂发生在壁应力超过血管组织强度时。腔内血栓(ILT)可能具有一定优势,因为它可以吸收张力并降低主动脉瘤壁应力。本研究旨在探讨在一个心动周期内ILT对带支架动脉瘤壁应力的存在及生长影响。构建了一个带有ILT的虚拟带支架动脉瘤模型,采用流固耦合(FSI)分析来研究血流和壁动力学。通过二维轴对称有限元分析计算主动脉厚度中层的中心线处的壁应力。随着血栓弹性模量从0.1MPa增加到2MPa进行计算,并随着血栓深度以10%的增量增加重复计算,直到血栓充满整个动脉瘤腔。比较了腹主动脉近端、动脉瘤和远端三个截面的冯·米塞斯应力。在所有上述三个截面中,壁应力在血流峰值和压力时显示出最大值,并随着血液压力和速度的降低而逐渐减小。当腔内血栓深度从10%增加到100%时,一个心动周期内动脉瘤远端、近端和中心的壁应力降低。此外,将血栓弹性模量从10%增加到100%会导致一个心动周期内近端、腔内血栓中心和远端区域的壁应力降低。本研究的成果不仅可能有助于理解ILT中的壁应力,还能为有关腔内血栓性主动脉瘤提供更详细的信息,并有助于外科医生做到最好。

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