首页> 外文会议>Physic of Medical Imaging pt.2; Progress in Biomedical Optics and Imaging; vol.6 no.22 >Dual-energy digital mammography for calcification imaging: Improvement by post-image processing
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Dual-energy digital mammography for calcification imaging: Improvement by post-image processing

机译:用于钙化成像的双能数字乳腺X线摄影:通过图像后处理进行改进

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Overlapping fibroglandular tissue structures may obscure small calcifications, essential to the early detection of breast cancer. Dual-energy digital mammography (DEDM), where separate low- and high-energy images are acquired and synthesized to cancel the tissue structures, may improve the ability to detect and visualize calcifications amidst fibroglandular structures. We have developed and implemented a DEDM technique under full-field imaging conditions using a commercially available flat-panel based digital mammography system. We have developed techniques to suppress residual structures due to scatter contamination and non-uniformity in the x-ray field and detector response in our DEDM implementation. The total mean-glandular dose from the low- and high-energy images was constrained to be similar to screening examination levels. The low- and high-energy images were combined using a calibrated nonlinear (cubic) mapping function to generate the calcification images. To evaluate the dual-energy calcification images, we have designed a special phantom with calcium carbonate crystals to simulate calcifications of different sizes superimposed with a 5 cm thick breast-tissue-equivalent material with a continuously varying glandular-tissue ratio from 0.0 to 1.0. The suppression of tissue-structure background by dual-energy imaging comes with the cost of increased noise in the dual-energy images. We report on the effects ,of different image processing techniques on the dual-energy image signal and noise levels. The effects of image processing on the calcification contrast-to-noise ratios are also presented.
机译:重叠的纤维腺组织结构可能会掩盖小钙化,这对于早期发现乳腺癌至关重要。双能量数字乳腺X线摄影术(DEDM)可获取并合成单独的低能量和高能量图像以消除组织结构,这可能会提高在纤维腺结构中检测和可视化钙化的能力。我们已经开发并实施了DEDM技术,该技术是使用市售的基于平板的数字乳房X线摄影系统在全场成像条件下进行的。我们已经开发了抑制由于散射污染和X射线场中的不均匀性以及DEDM实施中的检测器响应而导致的残留结构的技术。低能量和高能量图像的总腺平均剂量被约束为与筛查检查水平相似。使用校准的非线性(立方)映射函数将低能量和高能量图像合并以生成钙化图像。为了评估双能钙化图像,我们设计了带有碳酸钙晶体的特殊体模,以模拟大小不同的钙化,并叠加了5 cm厚的乳腺组织当量材料,腺体组织比从0.0到1.0不断变化。通过双能成像来抑制组织结构背景的代价是在双能图像中增加了噪声。我们报告了不同图像处理技术对双能图像信号和噪声水平的影响。还介绍了图像处理对钙化反差比的影响。

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