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EVALUATION OF PULMONARY ARTERIAL HYPERTENSION USING COMPUTATIONAL FLUID DYNAMICS SIMULATION

机译:应用计算流体动力学模拟评估肺动脉高压

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In silico study of the relationships between flow conditions, arterial surface shear stress, and pressure was investigated in a patient with pulmonary arterial hypertension (PAH), using multi-detector Computed Tomography Angiography (CTA) images and Computational Fluid Dynamics (CFD). The CTA images were converted into 3D models and transferred to CFD software for simulations, allowing for patient-specific comparisons between in silico results with clinical right heart catheterization pressure data. The simulations were performed using two different methods of outlet boundary conditions: zero traction and lumped parameter model (LPM) methods. Outlet pressures were set to a constant value in zero traction method, which can produce flow characteristics solely based on the segmented distal arteries, while the lumped parameter model used a three-element Windkessel lumped model to represent the distal vasculature by accounting for resistance, compliance, and impedance of the vasculature. Considering existing limitations with both approaches, it was found that the lumped parameter Windkessel outlet boundary condition provides a better correlation with the clinical RHC pressure results than the zero traction constant pressure outlet boundary condition.
机译:使用多探测器计算机断层扫描血管造影(CTA)图像和计算流体动力学(CFD),对患有肺动脉高压(PAH)的患者进行了计算机研究,研究了流动状况,动脉表面切应力和压力之间的关系。将CTA图像转换为3D模型并转移到CFD软件中进行仿真,从而可以在计算机模拟结果与临床右心导管压力数据之间进行患者特定的比较。使用两种不同的出口边界条件方法进行了仿真:零牵引力和集总参数模型(LPM)方法。零牵引法将出口压力设定为恒定值,仅可基于远端动脉分段来产生流量特征,而集总参数模型使用三元素Windkessel集总模型通过考虑阻力,顺应性来代表远端脉管和脉管系统的阻抗。考虑到两种方法都存在的局限性,发现与零牵引力恒压出口边界条件相比,集总参数Windkessel出口边界条件与临床RHC压力结果具有更好的相关性。

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