Alexander D C, Pierpaoli C, Basser P J, Gee J C
Department of Computer Science, University College London, UK.
IEEE Trans Med Imaging. 2001 Nov;20(11):1131-9. doi: 10.1109/42.963816.
We address the problem of applying spatial transformations (or "image warps") to diffusion tensor magnetic resonance images. The orientational information that these images contain must be handled appropriately when they are transformed spatially during image registration. We present solutions for global transformations of three-dimensional images up to 12-parameter affine complexity and indicate how our methods can be extended for higher order transformations. Several approaches are presented and tested using synthetic data. One method, the preservation of principal direction algorithm, which takes into account shearing, stretching and rigid rotation, is shown to be the most effective. Additional registration experiments are performed on human brain data obtained from a single subject, whose head was imaged in three different orientations within the scanner. All of our methods improve the consistency between registered and target images over naïve warping algorithms.
我们探讨了将空间变换(或“图像扭曲”)应用于扩散张量磁共振图像的问题。在图像配准过程中对这些图像进行空间变换时,必须妥善处理它们所包含的方向信息。我们给出了针对高达12参数仿射复杂度的三维图像全局变换的解决方案,并指出如何扩展我们的方法以用于更高阶变换。使用合成数据给出并测试了几种方法。其中一种方法,即考虑了剪切、拉伸和刚体旋转的主方向保存算法,被证明是最有效的。我们还对从一名受试者获取的人脑数据进行了额外的配准实验,该受试者的头部在扫描仪内以三种不同方向成像。与简单的扭曲算法相比,我们所有的方法都提高了配准图像与目标图像之间的一致性。