肾动脉非对称理想化血管模型的计算流体力学研究

Computational fluid dynamics for idealized vessel models of asymmetric renal artery

  • 摘要:
    背景 在胸腹主动脉疾病的腔内治疗中,重建肾动脉至关重要。既往针对肾动脉的计算流体力学分析往往通过支架置入后的理想化三维血管模型进行,这些模型中左右肾动脉形态往往是对称且不符合生理的。
    目的 构建置入多分支支架后的理想化胸腹主动脉三维模型,并基于我国人群的肾动脉解剖条件,探究生理性非对称肾动脉形态对理想化模型双肾动脉内的血液流动所产生的影响。
    方法 根据肾动脉角度及肾动脉支架长度的不同,共构建16种理想化模型,之后通过计算流体力学对这些模型分支血管的平均血流量、血液流动模式和壁面剪切应力进行研究。
    结果 肾动脉角度为95°时的平均血流量大于角度为108°时的平均血流量。肾动脉支架长度为60 mm时的平均血流量大于长度为70 mm时的平均血流量。此外,在肾动脉拐弯处可见血液回流区和低壁面剪切应力区。
    结论 本文构建了肾动脉生理性非对称的理想化多分支支架置入后血管模型,并通过计算流体力学研究发现非对称的肾动脉形态可对肾动脉平均血流量产生影响。在肾动脉理想化模型的构建中,非对称的解剖形态是必要的。

     

    Abstract:
    Background In the endovascular treatment of thoracoabdominal aortic disease, reconstruction of renal arteries is of great importance. Previous computational fluid dynamics analyses on renal arteries often depend on an idealized three-dimensional vascular model after stent implantation, and the left and right renal arteries are symmetric and do not conform to physiological reality.
    Objective To construct three-dimensional models of idealized thoracoabdominal aorta after implantation of a multibranch endograft based on the anatomical morphology of renal arteries in the Chinese population, and investigate the impact of physiologically asymmetric renal artery morphology on blood flow in both renal arteries of the idealized models.
    Methods A total of 16 idealized models were constructed according to the take-off angle and the stent length in the renal artery, followed by the calculation of time-averaged blood flowrate, blood flow patterns, and wall shear stress of branch vessels using computational fluid dynamics.
    Results The time-averaged blood flow in the renal arteries was higher when the angle was 95 ° than when it was 108 °, and was also higher when the length of the renal artery stent was 60 mm than when it was 70 mm. In addition, flow recirculation zones and low wall shear stress could be seen at the bend of the renal artery.
    Conclusion In this study, idealized thoracoabdominal aorta models after a multibranched endograft implantation are constructed, and asymmetric renal artery morphology may affect the time-averaged blood flowrate in renal arteries by using computational fluid dynamics techniques. It is necessary to construct an idealized renal artery model with the asymmetric anatomical morphology of the renal artery.

     

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