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Adaption of 3D Models to 2D X-Ray Images during Endovascular Abdominal Aneurysm Repair

机译:血管内腹部动脉瘤修复过程中3D模型对2D X射线图像的适应

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Endovascular aneurysm repair (EVAR) has been gaining popularity over open repair of abdominal aortic aneurysms (AAAs) in the recent years. This paper describes a distortion correction approach to be applied during the EVAR cases. In a novel workflow, models (meshes) of the aorta and its branching arteries generated from preoperatively acquired computed tomography (CT) scans are overlayed with interven-tionally acquired fluoroscopic images. The overlay provides an arterial roadmap for the operator, with landmarks (LMs) marking the ostia, which are critical for stent placement. As several endovascular devices, such as angiographic catheters, are inserted, the anatomy may be distorted. The distortion reduces the accuracy of the overlay. To overcome the mismatch, the aortic and the iliac meshes are adapted to a device seen in uncontrasted intraoperative fluoroscopic images using the skeleton-based as-rigid-as-possible (ARAP) method. The deformation was evaluated by comparing the distance between an ostium and the corresponding LM prior to and after the deformation. The central positions of the ostia were marked in digital subtraction angiography (DSA) images as ground truth. The mean Euclidean distance in the image plane was reduced from 19.81±17.14 mm to 4.56±2.81 mm.
机译:近年来,血管内动脉瘤修补术(EVAR)优于腹主动脉瘤(AAAs)的开放修补术。本文介绍了一种在EVAR案例中要应用的失真校正方法。在一种新颖的工作流程中,从术前采集的计算机断层扫描(CT)扫描生成的主动脉及其分支动脉的模型(网格)将被介入采集的荧光透视图像覆盖。覆盖层为操作员提供了一条动脉路线图,其中的路标(LM)标记了孔口,这对于支架的放置至关重要。当插入几个血管内装置(例如血管造影导管)时,解剖结构可能会变形。失真会降低覆盖的准确性。为了克服这种不匹配,使用基于骨骼的尽可能高的硬性(ARAP)方法,将主动脉和mesh骨网适应于在未造影的术中透视图像中看到的设备。通过比较变形前后孔口与相应LM之间的距离来评估变形。在数字减影血管造影(DSA)图像中,将口的中心位置标记为地面真相。图像平面中的平均欧几里得距离从19.81±17.14 mm减少到4.56±2.81 mm。

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