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Simulation analysis of airflow alteration in the trachea following the vascular ring surgery based on CT images using the computational fluid dynamics method

机译:计算流体力学方法基于CT图像的血管环手术后气管内气流变化的模拟分析

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This study presents a computational fluid dynamics (CFD) model to simulate the three-dimensional airflow in the trachea before and after the vascular ring surgery (VRS). The simulation was based on CT-scan images of the patients with the vascular ring diseases. The surface geometry of the tracheal airway was reconstructed using triangular mesh by the Amira software package. The unstructured tetrahedral volume meshes were generated by the ANSYS ICEM CFD software package. The airflow in the tracheal airway was solved by the ESI CFD-ACE+ software package. Numerical simulation shows that the pressure drops across the tracheal stenosis before and after the surgery were 0.1789 and 0.0967 Pa, respectively, with the inspiratory inlet velocity 0.1 m/s. Meanwhile, the improvement percentage by the surgery was 45.95%. In the expiratory phase, by contrast, the improvement percentage was 40.65%. When the inspiratory velocity reached 1 m/s, the pressure drop became 4.988 Pa and the improvement percentage was 43.32%. Simulation results further show that after treatment the pressure drop in the tracheal airway was significantly decreased, especially for low inspiratory and expiratory velocities. The CFD method can be applied to quantify the airway pressure alteration and to evaluate the treatment outcome of the vascular ring surgery under different respiratory velocities.
机译:这项研究提出了一种计算流体动力学(CFD)模型,以模拟血管环手术(VRS)之前和之后气管中的三维气流。该模拟基于血管环疾病患者的CT扫描图像。通过Amira软件包使用三角网格重建气管气道的表面几何形状。非结构化的四面体网格是由ANSYS ICEM CFD软件包生成的。气管气道中的气流已通过ESI CFD-ACE +软件包解决了。数值模拟表明,术前和术后气管狭窄的压降分别为0.1789和0.0967 Pa,吸气入口速度为0.1 m / s。同时,手术改善率是45.95%。相比之下,在呼气阶段,改善百分比为40.65%。当吸气速度达到1 m / s时,压降为4.988 Pa,改善百分比为43.32%。模拟结果进一步表明,治疗后气管气道的压降显着降低,尤其是对于低吸气和呼气速度。 CFD方法可用于量化气道压力变化并评估不同呼吸速度下血管环手术的治疗效果。

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