Li Fen, Zhu Yating, Song Hui, Zhang Hongpeng, Chen Lingfeng, Guo Wei
College of Mechanical and Vehicle Engineering, Taiyuan University of Technology, Taiyuan 030024, China.
Institute of Applied Mechanics, Taiyuan University of Technology, Taiyuan 030024, China.
Bioengineering (Basel). 2023 Jan 27;10(2):164. doi: 10.3390/bioengineering10020164.
The modular inner branched stent-graft (MIBSG), a novel interventional therapy, has demonstrated good effects in the endovascular treatment of aortic arch pathologies, especially those involving the supra-aortic branches. Nevertheless, the long-term efficacy of the MIBSG and in-depth quantitative evaluation of postoperative outcomes remain to be examined. Moreover, the regularity of postoperative vascular remodeling induced by MIBSG implantation has yet to be explored. To address these questions, we constructed four models (normal, preoperative, 1 week postoperative, and 6 months postoperative) based on a single patient case to perform computational fluid dynamics simulations. The morphological and hemodynamic characteristics, including the velocity profile, flow rate distribution, and hemodynamic parameter distribution (wall shear stress and its derivative parameters), were investigated. After MIBSG implantation, the morphology of the supra-aortic branches changed significantly, and the branch point moved forward to the proximal ascending aorta. Moreover, the curvature radius of the aortic arch axis continued to change. These changes in morphology altered the characteristics of the flow field and wall shear stress distribution. As a result, the local forces exerted on the vessel wall by the blood led to vessel remodeling. This study provides insight into the vascular remodeling process after MIBSG implantation, which occurs as a result of the interplay between vascular morphological characteristics and blood flow characteristics.
模块化内分支支架型人工血管(MIBSG)是一种新型介入治疗方法,已在主动脉弓病变的血管内治疗中显示出良好效果,尤其是涉及主动脉弓上分支的病变。然而,MIBSG的长期疗效以及术后结果的深入定量评估仍有待研究。此外,MIBSG植入术后诱导的血管重塑规律尚未得到探索。为了解决这些问题,我们基于单个患者病例构建了四个模型(正常、术前、术后1周和术后6个月),以进行计算流体动力学模拟。研究了形态学和血流动力学特征,包括速度剖面、流量分布以及血流动力学参数分布(壁面剪应力及其衍生参数)。MIBSG植入后,主动脉弓上分支的形态发生了显著变化,分支点向前移至升主动脉近端。此外,主动脉弓轴的曲率半径持续变化。这些形态学变化改变了流场特征和壁面剪应力分布。结果,血液作用于血管壁的局部力导致了血管重塑。本研究深入探讨了MIBSG植入术后的血管重塑过程,这一过程是血管形态特征与血流特征相互作用的结果。