首页> 外文会议>ASME Fluids Engineering Division Meeting >CFD EVALUATION OF BLOOD FLOW IN AN IMPROVED BLALOCK-TAUSSIG SHUNT USING PATIENT SPECIFIC GEOMETRIES
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CFD EVALUATION OF BLOOD FLOW IN AN IMPROVED BLALOCK-TAUSSIG SHUNT USING PATIENT SPECIFIC GEOMETRIES

机译:使用患者特定几何形状改进的Blalock-Taussig中血流的CFD评估

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Blalock-Taussig (BT) Shunt is a palliative surgical procedure used during a Norwood surgery on a newborn baby suffering from cyanotic heart defects. The BT Shunt can increase blood flow in patients' pulmonary artery which can ease the "Blue Baby Syndrome." Currently used BT Shunts do not produce a balanced flow distribution to the pulmonary arteries (PAs) which can cause high wall shear stress (WSS) and blood flow separation resulting in blood clots. A modified BT Shunt was designed to partially solve this problem. In our previous work [1], the modified BT Shunt was shown by numerical simulations to have the ability to better control the flow distribution between Innominate Artery (1A) and PA with lower and gradually varying WSS and with improved flow balance to the pulmonary artery at the T-junction of the shunt. The goal of this paper is to computationally evaluate the flow in the modified BT shunt model between innominate and pulmonary artery using a patient specific aorta model. The simulations are performed using the commercial CFD software ANSYS Fluent. The improved modified BT shunt is connected between IA and PA. A change in the length of the shunt can be made to fit it under different conditions of actual patients. In numerical simulations, a full geometry of patient's aorta is considered. Results for different lengths of the shunt are compared to determine the length that generates the lowest WSS and improved flow distribution to the PAs. It was found that the length of nearly 26mm creates lower WSS and flow rate difference between the two sides of PA at the T-junction attachment of the shunt. A sophisticated computational model was created using SolidWorks and Blender software to create the realistic geometry which included the IA, PA and modified BT shunt. The numerical simulations provide details of the flow field including velocity and pressure field, WSS, and blood damage. Several parameters in shunt design weigh heavily in reducing the thrombosis. This study demonstrates how CFD can be effectively utilized in the design of a medical device such as BT shunt to improve the clinical outcomes in patients.
机译:布莱洛克 - 陶西格(BT)分流是从紫绀型心脏缺陷新生儿苦难诺伍德手术过程中使用的一种姑息性外科手术。该BT分流可以提高患者的肺动脉血流可缓解‘蓝婴综合症’。目前使用的BT分流器不产生平衡的流动分布到肺动脉(PA),这可能会导致高壁剪应力(WSS),并导致血液凝块的血液流动分离。一种改进的BT分流被设计成部分地解决这个问题。在我们以前的工作[1],改性的BT分流通过数值模拟显示具有的能力,以更好地控制无名动脉(1A)和PA之间的流量分配具有较低和逐渐变化的WSS和具有改进的流量平衡到肺动脉在分流的T形接头。本文的目的是计算评估无名和使用患者特定的模型主动脉肺动脉间的修改BT分流模型的流程。仿真使用商业CFD软件ANSYS FLUENT执行。所述经改进的改性BT分流连接IA和PA之间。在分流器的长度的变化可以进行以适应它实际患者的不同的条件下。在数值模拟,患者主动脉的一个完整的几何形状被认为是。结果分流器的不同的长度进行比较,以确定产生所述最低WSS和改善的流动分布到PA的长度。结果发现,几乎26毫米的长度创建下WSS和在分流的T形接头附着流动PA的两侧之间率差。一个复杂的计算模型,利用SolidWorks和搅拌机软件创建其中包括IA,PA和修改BT分流现实几何创建。数值模拟提供流场的详细信息,包括速度和压力场,WSS,和血液的损伤。在分流设计中的几个参数有很大的影响在减少血栓形成。这项研究表明,如何CFD可以在医疗设备的设计可以有效地利用诸如BT分流,以改善患者的临床结果。

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