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3D volume reconstruction from serial breast specimen radiographs for mapping between histology and 3D whole specimen imaging

机译:组织学与3D整体样本成像中串行乳房标本射线照相的3D体积重建

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摘要

PURPOSE: In breast imaging, radiological in vivo images, such as x-ray mammography and magnetic resonance imaging (MRI), are used for tumor detection, diagnosis, and size determination. After excision, the specimen is typically sliced into slabs and a small subset is sampled. Histopathological imaging of the stained samples is used as the gold standard for characterization of the tumor microenvironment. A 3D volume reconstruction of the whole specimen from the 2D slabs could facilitate bridging the gap between histology and in vivo radiological imaging. This task is challenging, however, due to the large deformation that the breast tissue undergoes after surgery and the significant undersampling of the specimen obtained in histology. In this work, we present a method to reconstruct a coherent 3D volume from 2D digital radiographs of the specimen slabs. METHODS: To reconstruct a 3D breast specimen volume, we propose the use of multiple target neighboring slices, when deforming each 2D slab radiograph in the volume, rather than performing pairwise registrations. The algorithm combines neighborhood slice information with free-form deformations, which enables a flexible, nonlinear deformation to be computed subject to the constraint that a coherent 3D volume is obtained. The neighborhood information provides adequate constraints, without the need for any additional regularization terms. RESULTS: The volume reconstruction algorithm is validated on clinical mastectomy samples using a quantitative assessment of the volume reconstruction smoothness and a comparison with a whole specimen 3D image acquired for validation before slicing. Additionally, a target registration error of 5 mm (comparable to the specimen slab thickness of 4 mm) was obtained for five cases. The error was computed using manual annotations from four observers as gold standard, with interobserver variability of 3.4 mm. Finally, we illustrate how the reconstructed volumes can be used to map histology images to a 3D specimen image of the whole sample (either MRI or CT). CONCLUSIONS: Qualitative and quantitative assessment has illustrated the benefit of using our proposed methodology to reconstruct a coherent specimen volume from serial slab radiographs. To our knowledge, this is the first method that has been applied to clinical breast cases, with the goal of reconstructing a whole specimen sample. The algorithm can be used as part of the pipeline of mapping histology images to ex vivo and ultimately in vivo radiological images of the breast.
机译:目的:在乳房成像中,用于X射线乳房X线照相术和磁共振成像(MRI)等体内图像的放射学用于肿瘤检测,诊断和尺寸测定。切除后,将样品切成薄片,并采样小子集。染色样品的组织病理学成像用作肿瘤微环境表征的金标准。来自2D板坯的整个样本的3D体积重建可以促进桥接组织学和体内放射成像之间的差距。然而,由于乳房组织在手术后经历的大变形以及组织学中获得的标本的显着缺乏采样,这项任务是具有挑战性的。在这项工作中,我们提出了一种从标本板的2D数字射线照片重建相干3D体积的方法。方法:为了重建3D乳房样本量,我们提出了多个目标相邻切片的使用,当变形在体积中的每个2D板射线照片时,而不是执行成对登记。该算法将邻域切片信息与自由形状变形相结合,这使得能够计算柔性的非线性变形,以计算获得相干3D音量的约束。邻居信息提供了足够的约束,而无需任何其他正则化术语。结果:使用量重建平滑度的定量评估和与在切片之前获得用于验证的整个标本3D图像的定量评估,验证了体积重建算法在临床乳房切除术样品上验证。另外,获得5毫米的目标登记误差(与试样板厚度为4mm)的5例。使用来自四个观察者的手动注释为金标准计算错误,Interobserver可变性为3.4 mm。最后,我们说明了重建的卷如何用于将组织学图像映射到整个样本的3D样本图像(MRI或CT)。结论:定性和定量评估已经说明了利用我们提出的方法来重建从串行板块射线照片重建相干标本体积的益处。据我们所知,这是第一种应用于临床乳房病例的方法,其目标是重建整个标本样本。该算法可以用作将组织学图像映射到exVivo的流水线的一部分,并且最终在乳房的体内放射图像中。

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