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Thrombus prediction in adult and pediatric pulsatile ventricular assist devices: The role of experimental fluid dynamics

机译:成人和小儿搏动性心室辅助装置中的血栓预测:实验流体动力学的作用

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Ventricular assist devices (VADs) are actively used for congestive heart failure and myocarditis patients but clinical issues, such as thrombosis, still remain as work continues toward development as destination therapy devices. As Penn State continues to develop smaller generation VADs, the role of experimental fluid dynamics has increased as the capability to predict thrombus deposition using wall shear estimates has improved based on animal studies. These experimental data are leading towards the development of computational simulations to identify areas not easily visualized experimentally. Particle image velocimetry, an optical measurement technique, has been adapted and the resulting velocity data, post-processed, to extract wall shear rates throughout different areas of adult (50cc) and pediatric (12cc) VADs. The results indicate areas susceptible to thrombosis and where subsequent VAD design changes have improved the flow with adequate wall shear. The role of experimental fluid dynamic measurements have greatly improved our ability to predict areas of thrombus deposition leading to improved VAD designs, provide a foundation for computer simulations with correlations to in vivo animal testing.
机译:心室辅助设备(VAD)积极地用于充血性心力衰竭和心肌炎患者,但是随着目标治疗设备的不断发展,诸如血栓形成等临床问题仍然存在。随着宾夕法尼亚州立大学继续发展更小一代的VADs,基于动物研究,随着使用壁剪切估计值预测血栓沉积的能力得到提高,实验流体动力学的作用也日益增强。这些实验数据正在导致计算仿真的发展,以识别不易通过实验可视化的区域。粒子图像测速技术是一种光学测量技术,已进行了调整,对所得的速度数据进行了后处理,以提取成人(50cc)和儿童(12cc)VAD不同区域的壁切速率。结果表明易受血栓形成的区域,随后的VAD设计更改已通过适当的壁剪切力改善了流量。实验性流体动力学测量的作用极大地提高了我们预测血栓沉积区域的能力,从而改善了VAD设计,为与体内动物测试相关的计算机模拟奠定了基础。

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