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Study of the behavior of different guidewire shapes in a patient-specific numerical model for transcatheter aortic valve implantation

机译:经导管主动脉瓣植入的患者特定数值模型中不同导线形状的行为研究

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Transcatheter Aortic Valve Implantation is a miniinvasive procedure to replace aortic valves. The approach consists in delivering a fully collapsible bioprosthesis to the native valve site through a catheter. Stiff guidewires are required to deliver, stabilize and deploy the prosthesis by fitting in the left ventricular apex but they can also damage the ventricular wall of the patient. Nowadays, guidewires of different sizes, stiffness and shapes are available. In order to find the most appropriate guidewire for each patient, modelling could provide a better understanding of the interactions between the guidewire and the patient's left ventricle walls. Our objective was to explore the influence of guidewire shape on the contact conditions using numerical simulations. We have developed a Finite Element model to simulate the stiff guidewire inserted into the left ventricle. The model was solved using the ANSYS software with an implicit resolution scheme. We explored different shapes for the distal end of the guidewire. We observed the distribution of the contact forces. An adequate curvature size resulted in smaller maximum pressure.
机译:经导管主动脉瓣植入术是一种微创手术,可替代主动脉瓣。该方法包括通过导管将完全可折叠的生物假体递送至天然瓣膜部位。需要坚硬的导丝通过安装在左心尖中来递送,稳定和展开假体,但它们也可能损坏患者的心室壁。如今,可以使用不同尺寸,刚度和形状的导丝。为了找到适合每个患者的最合适的导丝,建模可以更好地理解导丝和患者左心室壁之间的相互作用。我们的目标是使用数值模拟探索导丝形状对接触条件的影响。我们已经开发了有限元模型来模拟插入左心室的硬导丝。使用具有隐式解决方案的ANSYS软件对模型进行了求解。我们探索了导丝远端的不同形状。我们观察了接触力的分布。适当的曲率尺寸会导致较小的最大压力。

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