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Correcting scaling errors in tomographic images using a nine degree of freedom registration algorithm.

机译:使用九个自由度配准算法校正断层图像中的缩放错误。

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PURPOSE: Clinical imaging systems, especially MR scanners, frequently have errors of a few percent in their voxel dimensions. We evaluate a nine degree of freedom registration algorithm that maximizes mutual information for determining scaling errors. We evaluate it by registering MR and CT images for each of five patients (patient scaling) and by registering MR images of a phantom to a computer model of the phantom (phantom scaling). METHOD: Each scaling method was validated using bone-implanted markers localized in the patient images and also intraoperatively. The root mean square residual in the alignment of the fiducial markers [fiducial registration error (FRE)] was determined without scale correction, with patient scaling, and with phantom scaling. RESULTS: Each scaling method significantly reduced the average FRE (p < 0.05) for MR to CT registration and for MR to physical space registration, indicating that voxel scaling errors were reduced. The greater reduction in scaling errors was achieved using the phantom scaling method. CONCLUSION: We have demonstrated that a nine degree of freedom registration algorithm that maximizes mutual information can significantly reduce scaling errors in MR.
机译:目的:临床成像系统,尤其是MR扫描仪,其体素尺寸经常会出现百分之几的误差。我们评估了九个自由度注册算法,该算法最大化了用于确定缩放错误的互信息。我们通过注册五位患者的MR和CT图像(患者比例),以及将体模的MR图像注册到体模的计算机模型(体模缩放)来对其进行评估。方法:每种缩放方法均使用位于患者图像中以及手术中的骨植入标记物进行验证。基准标记比对中的均方根残差[基准配准误差(FRE)]是在不进行比例校正,患者缩放和幻像缩放的情况下确定的。结果:每种缩放方法都显着降低了MR到CT配准和MR到物理空间配准的平均FRE(p <0.05),这表明体素缩放错误得以减少。使用幻像缩放方法可以更大程度地减少缩放错误。结论:我们已经证明了最大化互信息的九自由度配准算法可以显着减少MR的定标误差。

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