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Contemporary Role of Computational Analysis in Endovascular Treatment for Thoracic Aortic Disease

机译:计算分析在胸主动脉血管内治疗中的当代作用

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摘要

In the past decade, thoracic endovascular aortic repair (TEVAR) has become the primary treatment option in descending aneurysm and dissection. The clinical outcome of this minimally invasive technique is strictly related to an appropriate patient/stent graft selection, hemodynamic interactions, and operator skills. In this context, a quantitative assessment of the biomechanical stress induced in the aortic wall due to the stent graft may support the planning of the procedure. Different techniques of medical imaging, like computed tomography or magnetic resonance imaging, can be used to evaluate dynamics in the thoracic aorta. Such information can also be combined with dedicated patient-specific computer-based simulations, to provide a further insight into the biomechanical aspects. In clinical practice, computational analysis might show the development of aortic disease, such as the aortic wall segments which experience higher stress in places where rupture and dissection may occur. In aortic dissections, the intimal tear is usually located at the level of the sino-tubular junction and/or at the origin of the left subclavian artery. Besides, computational models may potentially be used preoperatively to predict stent graft behavior, virtually testing the optimal stent graft sizing, deployment, and conformability, in order to provide the best endovascular treatment. The present study reviews the current literature regarding the use of computational tools for TEVAR biomechanics, highlighting their potential clinical applications.
机译:在过去的十年中,胸腔内血管主动脉修复术(TEVAR)已成为降主动脉瘤和解剖的主要治疗选择。这种微创技术的临床结果与适当的患者/支架植入物选择,血液动力学相互作用和操作员技能密切相关。在这种情况下,对由于支架移植物引起的在主动脉壁上引起的生物力学应力的定量评估可以支持程序的规划。诸如计算机断层扫描或磁共振成像之类的医学成像的不同技术可用于评估胸主动脉的动力学。此类信息也可以与基于患者的专用计算机模拟相结合,以提供对生物力学方面的进一步了解。在临床实践中,计算分析可能会显示主动脉疾病的发展,例如主动脉壁节段在可能发生破裂和解剖的地方承受较高的压力。在主动脉夹层中,内膜撕裂通常位于窦管交界处和/或左锁骨下动脉的起点。此外,可能会在术前使用计算模型来预测支架植入物的行为,虚拟地测试最佳的支架植入物的尺寸,部署和顺应性,以便提供最佳的血管内治疗。本研究回顾了有关TEVAR生物力学使用计算工具的最新文献,重点介绍了其潜在的临床应用。

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