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A Preliminary Study of Fast Virtual Stent-Graft Deployment: Application to Stanford Type B Aortic Dissection Regular Paper

机译:快速虚拟支架部署的初步研究:在斯坦福大学B主动脉解剖常规纸上的应用

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Aortic dissection is the result of blood intruding into the layers of the aortic wall creating a duplicate channel along the aortic course. This considerably changes aortic morphology and thereby alters blood flow, inducing severe pathological conditions. Endovascular stent-graft placement has become an accepted treatment option for complicated Stanford type B aortic dissection. Stent-graft deployment aims to cover the primary entry, preventing most of the inflow to the false lumen, thereby promoting false lumen thrombosis and true lumen expansion. In recent years the application of this treatment has increased continuously. However, a fast and reasonable prediction for the released stent-graft and the resulting aortic remodelling prior to intervention is still lacking. In this paper, we propose a preliminary study on the fast virtual stent-graft deployment algorithm based on contact mechanics, spring analogy and deformable meshes. By virtually releasing a stent-graft in a patient-specific model of an aortic dissection type Stanford B, we simulate the interaction between the expanding stent-graft and the vessel wall (with low computational cost), and estimate the post-interventional configuration of the true lumen. This preliminary study can be finished within minutes and the results present good consistency with the post-interventional computed tomography angiography. It therefore confirms the feasibility and rationality of this algorithm, encouraging further research on this topic, which may provide more accurate results and could assist in medical decision-making.
机译:主动脉夹层是血液侵入到主动脉壁的层层中,沿着主动脉课程产生重复通道。这显着改变主动脉形态,从而改变血流量,诱导严重的病理条件。血管内支架移植放置已成为复杂的斯坦福大学B主动脉夹层的可接受的治疗选择。支架移植部署旨在覆盖主要进入,防止大部分流入假腔,从而促进假腔血栓形成和真正的流明膨胀。近年来,这种治疗的应用不断增加。然而,仍然缺乏对释放支架移植物的快速合理的预测和所产生的主动脉重塑。在本文中,我们提出了基于接触机械,弹簧类比和可变形网格的快速虚拟支架展开算法的初步研究。通过实际上释放在主动脉夹层型斯坦福B的患者特异性模型中的支架 - 移植物,我们模拟了膨胀支架 - 移植物和血管壁之间的相互作用(具有低计算成本),并估计介入的后介入配置真正的腔。该初步研究可以在几分钟内完成,结果与介入后计算机断层造影血管造影具有良好的一致性。因此,确认了该算法的可行性和合理性,鼓励对本主题的进一步研究,这可能提供更准确的结果,并可以协助医疗决策。

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