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Performance of a feature-based algorithm for 3D-3D registration of CT angiography to cone-beam CT for endovascular repair of complex abdominal aortic aneurysms

机译:基于特征的3D-3D CT血管造影到锥束CT的算法对复杂腹主动脉瘤的腔内修复的性能

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A crucial step in image fusion for intraoperative guidance during endovascular procedures is the registration of preoperative computed tomography angiography (CTA) with intraoperative Cone Beam CT (CBCT). Automatic tools for image registration facilitate the 3D image guidance workflow. However their performance is not always satisfactory. The aim of this study is to assess the accuracy of a new fully automatic, feature-based algorithm for 3D3D registration of CTA to CBCT. The feature-based algorithm was tested on clinical image datasets from 14 patients undergoing complex endovascular aortic repair. Deviations in Euclidian distances between vascular as well as bony landmarks were measured and compared to an intensity-based, normalized mutual information algorithm. The results for the feature-based algorithm showed that the median 3D registration error between the anatomical landmarks of CBCT and CT images was less than 3?mm. The feature-based algorithm showed significantly better accuracy compared to the intensity-based algorithm (p??0.001). A feature-based algorithm for 3D image registration is presented.
机译:在血管内手术期间对术中指导进行图像融合的关键步骤是术前计算机断层扫描血管造影(CTA)与术中锥形束CT(CBCT)的配准。图像配准的自动工具简化了3D图像指导工作流程。但是,它们的性能并不总是令人满意。这项研究的目的是评估CTA到CBCT的3D3D配准的一种全新的,基于特征的全自动算法的准确性。基于特征的算法在14例接受复杂血管内主动脉修复的患者的临床图像数据集上进行了测试。测量了血管和骨标志之间的欧氏距离偏差,并将其与基于强度的归一化互信息算法进行了比较。基于特征的算法的结果表明,CBCT和CT图像的解剖界标之间的中值3D配准误差小于3?mm。与基于强度的算法相比,基于特征的算法显示出明显更好的准确性(p <0.001)。提出了一种基于特征的3D图像配准算法。

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