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3D pulmonary CT image registration with a standard lung atlas

机译:使用标准肺图谱进行3D肺部CT图像配准

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Abstract: A 3D anatomic atlas can be used to analyze pulmonary structures in CT images. To use an atlas to guide segmentation processing, the image being analyzed must be aligned and registered with the atlas. We have developed a 3D surface- based registration technique to register pulmonary CT volumes. To demonstrate the method, we have constructed an atlas from a CT image volume of a normal human male. The atlas is registered to new images in two steps: (1) a global transformation, and (2) a local elastic transformation. In the local transformation, the image and atlas volumes are divided into small subimages called cubes. The similarity between cubes in the image and atlas is measured to find the best match displacement vectors. These displacement vectors are processed using Burr's dynamic model to give a smoothed deformation vector for each voxel in the image. This method has been tested by three intra-subject registrations and three inter-subject registrations from four different normal human subjects. The results show that lung surface-based registration can register the internal lobar fissures from the atlas to the image within about 2.73 $POM 2.05 mm for intra- subject registration, and 5.96 $POM 4.99 mm for inter-subject registration. This registration can be used as an initialization for additional segmentation processing. !21
机译:摘要:3D解剖图谱可用于分析CT图像中的肺部结构。要使用地图集指导分割处理,必须将要分析的图像对齐并与地图集对齐。我们已经开发了一种基于3D表面的配准技术来配准肺部CT量。为了证明该方法,我们从正常男性的CT图像体积中构建了一个地图集。该图集通过两个步骤注册到新图像:(1)全局变换,和(2)局部弹性变换。在局部变换中,图像和图集的体积被分为称为立方体的小子图像。测量图像中的立方体与图集之间的相似度,以找到最佳匹配的位移矢量。使用Burr动力学模型处理这些位移矢量,以为图像中的每个体素提供平滑的变形矢量。该方法已通过来自四个不同正常人类受试者的三个受试者内注册和三个受试者间注册进行了测试。结果表明,基于肺表面的配准可以将内部肺叶裂痕从图集配准到图像内,对于受试者内配准,在约2.73 $ POM 2.05 mm之内,对于受试者间配准,在5.96 $ POM 4.99 mm之内。该注册可以用作其他分段处理的初始化。 !21

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