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PIV Analysis of Stented Haemodynamics in the Descending Aorta

机译:降主动脉支架血流动力学的PIV分析

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Cardiovascular diseases (CVD) are the leading cause of death in the developed world and aortic aneurysm is a key contributor. Aortic aneurysms typically occur in the thoracic aorta and can extend into the descending aorta. The Frozen Elephant Trunk stent (FET) is one of the leading treatments for the aneurysms extending into the descending aorta. This study focuses on the in-vitro experimentation of a stented descending aorta, investigating the haemodynamics in a compliant phantom. A silicone phantom of the descending aorta was manufactured using a lost core casting method. A PVC stent was manufactured using the same mould core. Particle Image Velocimetry (PIV) was used for pulsatile studies, focusing specifically on the passive fixation at the distal end of the FET. The results showed an apparent expansion in the diastolic period that was identified to be a collapse in the lateral plane. Flow recirculation regions were identified during the collapse. The collapse was attributed to low upstream and high downstream pressures causing a vacuum effect. The findings may imply a potential risk introduced by the FET stent that requires further investigation.
机译:心血管疾病(CVD)是发达国家的主要死亡原因,而主动脉瘤是关键因素。主动脉瘤通常发生在胸主动脉中,并且可以延伸到降主动脉中。冷冻大象躯干支架(FET)是延伸到降主动脉的动脉瘤的主要治疗方法之一。这项研究的重点是支架式降主动脉的体外实验,研究顺应性模型中的血流动力学。使用失芯铸造法制造降主动脉的硅树脂模型。使用相同的模芯制造PVC支架。粒子图像测速(PIV)用于搏动研究,特别侧重于FET远端的被动固定。结果表明,舒张期明显扩张,这被认为是侧向塌陷。在坍塌过程中确定了回流区域。塌方归因于低的上游压力和高的下游压力导致真空效应。这些发现可能暗示FET支架会带来潜在的风险,需要进一步调查。

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