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Simulation of Breast Anatomy: Bridging the Radiology-Pathology Scale Gap

机译:乳房解剖学模拟:弥合放射病理学量表的差距

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We have developed an efficient simulation of breast anatomy over a range of spatial scales, covering tissue details seen in both radiology and pathology images. The simulation is based on recursive partitioning using octrees, and is performed in two stages. First, the macro- and meso-scale anatomical features are simulated: breast outline, skin, and the matrix of tissue compartments and subcompartments, outlined by Cooper's ligaments. These compartments are labeled as adipose or fibroglandular, according to the desired overall glandularity and the realistic distribution of dense tissue. Second, pathology images are generated to match selected region within the breast, by filling the region with simulated cells (adipocytes, ductal epithelium and myoepithelium, lymphocytes, and fibro-blasts) and collagen fibers. Matched synthetic images can support discovery and virtual trials of image-based biomarkers for specific pathology findings. Our proof-of-concept is presented and further optimizations of the simulation discussed.
机译:我们已经开发了一种有效的模拟乳房解剖结构的空间尺度范围,涵盖了在放射学和病理学图像中都可以看到的组织细节。该模拟基于使用八叉树的递归分区,并且分两个阶段执行。首先,模拟宏观和中尺度的解剖特征:乳房轮廓,皮肤以及由Cooper韧带勾勒的组织隔室和子隔室的基质。根据所需的总体腺性和致密组织的实际分布,将这些隔室标记为脂肪或纤维腺。其次,通过用模拟细胞(脂肪细胞,导管上皮和肌上皮,淋巴细胞和成纤维细胞)和胶原纤维填充该区域,生成病理图像以匹配乳房内的选定区域。匹配的合成图像可以支持针对特定病理学发现的基于图像的生物标记物的发现和虚拟试验。提出了我们的概念验证,并讨论了仿真的进一步优化。

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