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Voxel-based 2-D/3-D registration of fluoroscopy images and CT scans for image-guided surgery

机译:基于体素的透视图像2-D / 3-D配准和CT扫描用于图像引导手术

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摘要

Registration of intraoperative fluoroscopy images with preoperative 3D CT images can he used for several purposes in image-guided surgery. On the one hand, it can be used to display the position of surgical instruments, which are being tracked by a localizer, in the preoperative CT scan. On the other hand, the registration result can be used to project preoperative planning information or important anatomical structures visible in the CT image on to the fluoroscopy image. For this registration task, a novel voxel-based method in combination with a new similarity measure (pattern intensity) has been developed. The basic concept of the method is explained at the example of 2D/3D registration of a vertebra in an X-ray fluoroscopy image with a 3D CT image. The registration method is described, and the results for a spine phantom are presented and discussed. Registration has been carried out repeatedly with different starting estimates to study the capture range. Information about registration accuracy has been obtained by comparing the registration results with a highly accurate "ground-truth" registration, which has been derived from fiducial markers attached to the phantom prior to imaging. In addition, registration results for different vertebrae have been compared. The results show that the rotation parameters and the shifts parallel to the projection plane can accurately be determined from a single projection. Because of the projection geometry, the accuracy of the height above the projection plane is significantly lower.
机译:术中透视图像与术前3D CT图像的配准可以在图像引导手术中用于多种目的。一方面,它可用于显示术前CT扫描中由定位器跟踪的手术器械的位置。另一方面,配准结果可用于将术前计划信息或CT图像中可见的重要解剖结构投影到荧光检查图像上。对于此配准任务,已开发了一种新颖的基于体素的方法以及新的相似性度量(图案强度)。该方法的基本概念将在X射线透视图像和3D CT图像中椎骨的2D / 3D配准示例中进行说明。描述了配准方法,并介绍和讨论了脊柱体模的结果。已使用不同的起始估算值反复进行注册,以研究捕获范围。通过将配准结果与高度精确的“地面真相”配准进行比较,可以获得有关配准精度的信息,该信息来自于成像前附着在体模上的基准标记。此外,还比较了不同椎骨的注册结果。结果表明,可以从单个投影中准确确定旋转参数和平行于投影平面的位移。由于投影的几何形状,投影平面上方的高度精度明显较低。

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