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A fast and robust technique for 3D-2D registration of CT to single plane X-ray fluoroscopy

机译:将CT进行3D-2D配准的快速可靠技术,用于单平面X射线荧光透视检查

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The application of 3D-2D image registration can be enormously helpful for different clinical purposes, such as image-guided surgery and the kinematic analysis of bones in knee and ankle joints. A limitation of this approach is the need to recalculate the voxel values in the 3D volume for every iteration of the registration procedure prior to generating a digitally reconstructed radiograph. In this paper we propose a new multi-phase 3D-2D image registration algorithm which uses partial 3D volumes to estimate out-of-plane rotations. In our proposed algorithm, only one full 3D update is used to generate a 2D projection during the registration procedure. Experimental results show that our proposed method can provide a registration accuracy similar to the commonly used approach which employs 3D updates at every iteration. As a result of reducing the number of 3D updates, the proposed approach reduces the time required to carry out the registration by a factor of 10-20 without any accompanying loss of registration accuracy.
机译:3D-2D图像配准的应用对于不同的临床目的非常有用,例如图像引导手术以及膝盖和踝关节骨骼的运动学分析。这种方法的局限性在于,在生成数字重建的射线照片之前,需要针对注册过程的每次迭代重新计算3D体积中的体素值。在本文中,我们提出了一种新的多阶段3D-2D图像配准算法,该算法使用部分3D体积来估计平面外旋转。在我们提出的算法中,在注册过程中仅使用一个完整的3D更新来生成2D投影。实验结果表明,我们提出的方法可以提供与常用方法相似的配准精度,该方法在每次迭代中均采用3D更新。由于减少了3D更新的数量,因此所提出的方法将执行注册所需的时间减少了10到20倍,而不会因此而降低注册精度。

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