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Accurate and precise 2D-3D registration based on X-ray intensity

机译:基于X射线强度的准确,精确的2D-3D配准

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摘要

This paper addresses the problem of estimating the 3D rigid pose of an object from its digitized X-ray projection. We considered the cases of homogeneous (CAD models) and inhomogeneous (attenuation map obtained from computed tomography) X-ray attenuation in an optimization framework based on a mutual information similarity measure. Convergence of object pose recovery is highly precise and obtained with sub-millimeter accuracy for both screen-film and digital radiographs by three major enhancements: (i) special care is given to the model of Parzen distribution used in the mutual information estimator (data pre-sphering in the bivariate case and bandwidth estimation in the univariate case); (ii) a quasi-global optimization scheme based on a modified version of stochastic clustering is used in conjunction with an object mesh resampling stage to reduce variance of the final pose estimator; (iii) nonlinear response to the radiograph is also estimated for screen-film radiographs.
机译:本文解决了根据数字化X射线投影估算对象的3D刚性姿态的问题。我们在基于互信息相似性度量的优化框架中考虑了均质(CAD模型)和不均质(从计算机断层摄影获得的衰减图)X射线衰减的情况。对象姿态恢复的收敛非常精确,并且通过以下三个主要增强功能获得了屏幕胶片和数字X射线照片的亚毫米级精度:(i)特别注意互信息估计器中使用的Parzen分布模型(数据预-在双变量情况下进行球形化,在单变量情况下进行带宽估计); (ii)将基于修改后的随机聚类的准全局优化方案与对象网格重采样阶段结合使用,以减少最终姿态估计器的方差; (iii)对于胶片胶片的射线照相,也估计了对射线照相的非线性响应。

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