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Rotation Invariance Principles in 2D/3D Registration

机译:2D / 3D配准中的旋转不变性原理

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摘要

2D/3D patient-to-computed tomography (CT) registration is a method to determine a transformation that maps two coordinate systems by comparing a projection image rendered from CT to a real projection image. Applications include exact patient positioning in radiation therapy, calibration of surgical robots, and pose estimation in computer-aided surgery. One of the problems associated with 2D/3D registration is the fact that finding a registration includes solving a minimization problem in six degrees-of-freedom (dof) in motion. This results in considerable time expenses since for each iteration step at least one volume rendering has to be computed. We show that by choosing an appropriate world coordinate system and by applying a 2D/2D registration method in each iteration step, the number of iterations can be grossly reduced from n~6 to n~5. Here, n is the number of discrete variations around a given coordinate. Depending on the configuration of the optimization algorithm, this reduces the total number of iterations necessary to at least 1/3 of it's original value. The method was implemented and extensively tested on simulated X-ray images of a pelvis. We conclude that this hardware-independent optimization of 2D/3D registration is a step towards increasing the acceptance of this promising method for a wide number of clinical applications.
机译:2D / 3D患者到计算机断层扫描(CT)配准是一种通过将从CT渲染的投影图像与实际投影图像进行比较来确定映射两个坐标系的变换的方法。应用包括放射治疗中的精确患者定位,手术机器人的校准以及计算机辅助手术中的姿势估计。与2D / 3D配准相关的问题之一是,找到配准包括解决运动中的六个自由度(dof)的最小化问题。这导致相当可观的时间开销,因为对于每个迭代步骤,必须计算至少一个体积渲染。我们表明,通过选择合适的世界坐标系并在每个迭代步骤中应用2D / 2D配准方法,迭代次数可以从n〜6减少到n〜5。在此,n是围绕给定坐标的离散变化数。根据优化算法的配置,这会将所需的迭代总数减少到其原始值的至少1/3。该方法已实现并在骨盆的模拟X射线图像上进行了广泛测试。我们得出的结论是,这种独立于硬件的2D / 3D注册优化是迈向增加这一有前途的方法在众多临床应用中的接受程度的一步。

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