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FORCES INDUCED BY PEAK SYSTOLIC FLOWS IN ASYMMETRIC ENDOVASCULAR GRAFTS

机译:不对称血管内移植物峰值收缩流诱发的力

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摘要

Endovascular repair (EVAR) has emerged as an alternative, less-invasive surgical technique for the treatment of patients diagnosed with abdominal aortic aneurysms (AAAs). The anatomical pathway of blood flow in the abdominal aorta is restored by the implantation of an endovascular graft (EVG), effectively depressurizing the aneurysm and initiating a remodeling process of the diseased aorta. The short-term results of endovascular grafting are promising, but its long-term success has been compromised by the occurrence of graft migration and detachment, which induce endoleaks or incomplete occlusion of the aneurysm from the blood circulation. The forces induced by the blood as it flows through the graft are believed to be a factor of probable cause in the partial detachment from its proximal and distal anchoring points and the migration of the graft downstream. The purpose of this study is to utilize analytical tools to provide an estimation of the forces required to secure the graft proximally when relying only on stresses induced by the flow.
机译:血管内修复(EVAR)已成为一种替代的,微创的手术技术,用于治疗诊断为腹主动脉瘤(AAAs)的患者。通过植入血管内移植物(EVG)可以恢复腹主动脉中血流的解剖路径,从而有效地降低动脉瘤的压力并启动患病主动脉的重塑过程。血管内移植的短期结果是有希望的,但是其长期成功已因移植物迁移和脱离的发生而受到损害,移植物的迁移和脱离会引起内渗或血液循环中动脉瘤的不完全闭塞。血液流经移植物时由血液引起的力被认为是造成其近端和远端锚定点部分脱离以及移植物向下游迁移的可能原因。这项研究的目的是利用分析工具对仅依靠流动引起的应力时向近端固定移植物所需的力进行估算。

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