Sun Zhonghua
Zhonghua Sun, Discipline of Medical Imaging, Department of Imaging and Applied Physics, Curtin University of Technology, GPO Box U1987, Perth, Western Australia 6845, Australia.
World J Radiol. 2009 Dec 31;1(1):63-71. doi: 10.4329/wjr.v1.i1.63.
Endovascular stent graft repair of abdominal aortic aneurysm (AAA) has undergone rapid developments since it was introduced in the early 1990s. Two main types of aortic stent grafts have been developed and are currently being used in clinical practice to deal with patients with complicated or unsuitable aneurysm necks, namely, suprarenal and fenestrated stent grafts. Helical computed tomography angiography has been widely recognized as the method of choice for both pre-operative planning and post-operative follow-up of endovascular repair (EVAR). In addition to 2D axial images, a number of 2D and 3D reconstructions are generated to provide additional information about imaging of the stent grafts in relation to the aortic aneurysm diameter and extent, encroachment of stent wires to the renal artery ostium and position of the fenestrated vessel stents. The purpose of this article is to provide an overview of applications of EVAR of AAA and diagnostic applications of 2D and 3D image visualizations in the assessment of treatment outcomes of EVAR. Interference of stent wires with renal blood flow from the hemodynamic point of view will also be discussed, and future directions explored.
自20世纪90年代初引入以来,腹主动脉瘤(AAA)的血管内支架植入修复技术发展迅速。目前已开发出两种主要类型的主动脉支架移植物,并在临床实践中用于治疗动脉瘤颈部复杂或不适合的患者,即肾上型和开窗型支架移植物。螺旋计算机断层血管造影已被广泛认为是血管内修复术(EVAR)术前规划和术后随访的首选方法。除了二维轴向图像外,还生成了许多二维和三维重建图像,以提供有关支架移植物与主动脉瘤直径和范围、支架金属丝对肾动脉开口的侵犯以及开窗血管支架位置的成像的额外信息。本文的目的是概述AAA的EVAR应用以及二维和三维图像可视化在评估EVAR治疗效果中的诊断应用。还将从血流动力学角度讨论支架金属丝对肾血流的干扰,并探索未来的发展方向。