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首页> 外文期刊>Medical Physics >Dual-energy digital mammography for calcification imaging: scatter and nonuniformity corrections.
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Dual-energy digital mammography for calcification imaging: scatter and nonuniformity corrections.

机译:用于钙化成像的双能数字乳腺摄影:散射和不均匀校正。

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Mammographic images of small calcifications, which are often the earliest signs of breast cancer, can be obscured by overlapping fibroglandular tissue. We have developed and implemented a dual-energy digital mammography (DEDM) technique for calcification imaging under full-field imaging conditions using a commercially available aSi:H/CsI:Tl flat-panel based digital mammography system. The low- and high-energy images were combined using a nonlinear mapping function to cancel the tissue structures and generate the dual-energy (DE) calcification images. The total entrance-skin exposure and mean-glandular dose from the low- and high-energy images were constrained so that they were similar to screening-examination levels. To evaluate the DE calcification image, we designed a phantom using calcium carbonate crystals to simulate calcifications of various sizes (212-425 microm) overlaid with breast-tissue-equivalent material 5 cm thick with a continuously varying glandular-tissue ratio from 0% to 100%. We report on the effects of scatter radiation and nonuniformity in x-ray intensity and detector response on the DE calcification images. The nonuniformity was corrected by normalizing the low- and high-energy images with full-field reference images. Correction of scatter in the low- and high-energy images significantly reduced the background signal in the DE calcification image. Under the current implementation of DEDM, utilizing the mammography system and dose level tested, calcifications in the 300-355 microm size range were clearly visible in DE calcification images. Calcification threshold sizes decreased to the 250-280 microm size range when the visibility criteria were lowered to barely visible. Calcifications smaller than approximately 250 microm were usually not visible in most cases. The visibility of calcifications with our DEDM imaging technique was limited by quantum noise, not system noise.
机译:乳腺小钙化的乳腺X线照片通常是乳腺癌的最早征兆,可通过重叠的纤维腺组织来掩盖。我们已经开发并实施了双能量数字乳房X线摄影(DEDM)技术,用于使用基于市场的aSi:H / CsI:Tl平板数字乳房X线摄影系统在全场成像条件下进行钙化成像。使用非线性映射功能将低能量和高能量图像进行组合,以取消组织结构并生成双能量(DE)钙化图像。低能量和高能量图像的总入口皮肤暴露量和平均腺体剂量受到限制,使其与筛查水平相似。为了评估DE钙化图像,我们设计了一种使用碳酸钙晶体的模型,以模拟各种尺寸(212-425微米)的钙化,这些钙化覆盖有5 cm厚的乳腺组织当量材料,腺体组织比率从0%到0%不断变化。 100%。我们报告了散射辐射和X射线强度和检测器对DE钙化图像响应的不均匀性的影响。通过使用全场参考图像对低能和高能图像进行归一化来校正不均匀性。低能量和高能量图像中散射的校正显着降低了DE钙化图像中的背景信号。在DEDM的当前实施方式下,利用乳房X线照相系统和所测试的剂量水平,在DE钙化图像中清晰可见300-355微米大小范围内的钙化。当可见性标准降低到几乎不可见时,钙化阈值大小将减小到250-280微米。在大多数情况下,通常看不到小于约250微米的钙化层。我们的DEDM成像技术对钙化的可见性受量子噪声而非系统噪声的限制。

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