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Enhanced 3-D-reconstruction algorithm for C-arm systems suitable for interventional procedures

机译:适用于介入程序的C臂系统的增强型3-D重建算法

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摘要

Increasingly, three dimensional (3-D) imaging technologies are used in medical diagnosis, for therapy planning, and during interventional procedures. The authors describe the possibilities of fast 3-D-reconstruction of high-contrast objects with high spatial resolution from only a small series of two-dimensional (2-D) planar radiographs. The special problems arising from the intended use of an open, mechanically unstable C-arm system are discussed. For the description of the irregular sampling geometry, homogeneous coordinates are used thoroughly. The well-known Feldkamp algorithm is modified to incorporate corresponding projection matrices without any decomposition into intrinsic and extrinsic parameters. Some approximations to speed up the whole reconstruction procedure and the tradeoff between image quality and computation time are also considered. Using standard hardware the reconstruction of a 256/sup 3/ cube is now possible within a few minutes, a time that is acceptable during interventions. Examples for cranial vessel imaging from some clinical test installations will be shown as well as promising results for bone imaging with a laboratory C-arm system.
机译:三维(3-D)成像技术越来越多地用于医学诊断,治疗计划以及介入程序中。作者描述了仅通过少量的二维(2-D)平面X射线照片对具有高空间分辨率的高对比度对象进行快速3D重建的可能性。讨论了由于使用开放的机械不稳定的C型臂系统而引起的特殊问题。为了描述不规则采样几何,彻底使用了齐次坐标。对著名的Feldkamp算法进行了修改,以合并相应的投影矩阵,而不会将其分解为内部和外部参数。还考虑了一些加快整个重建过程的近似方法,以及在图像质量和计算时间之间的权衡。使用标准硬件,现在可以在几分钟之内重建256 / sup 3 /立方体,这是干预期间可以接受的时间。将展示一些临床测试装置进行颅骨血管成像的示例,以及使用实验室C臂系统进行骨成像的有希望的结果。

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