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A scatter correction method for contrast-enhanced dual-energy digital breast tomosynthesis

机译:对比增强的双能数字乳腺断层合成的散射校正方法

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摘要

Contrast-enhanced dual energy digital breast tomosynthesis (CE-DE-DBT) is designed to image iodinated masses while suppressing breast anatomical background. Scatter is a problem, especially for high energy acquisition, in that it causes severe cupping artifact and iodine quantitation errors. We propose a patient specific scatter correction (SC) algorithm for CE-DE-DBT. The empirical algorithm works by interpolating scatter data outside the breast shadow into an estimate within the breast shadow. The interpolated estimate is further improved by operations that use an easily obtainable (from phantoms) table of scatter-to-primary-ratios (SPR) - a single SPR value for each breast thickness and acquisition angle. We validated our SC algorithm for two breast emulating phantoms by comparing SPR from our SC algorithm to that measured using a beam-passing pinhole array plate. The error in our SC computed SPR, averaged over acquisition angle and image location, was about 5%, with slightly worse errors for thicker phantoms. The SC projection data, reconstructed using OS-SART, showed a large degree of decupping. We also observed that SC removed the dependence of iodine quantitation on phantom thickness. We applied the SC algorithm to a CE-DE-mammographic patient image with a biopsy confirmed tumor at the breast periphery. In the image without SC, the contrast enhanced tumor was masked by the cupping artifact. With our SC, the tumor was easily visible. An interpolation-based SC was proposed by () for cone-beam CT (CBCT), but our algorithm and application differ in several respects. Other relevant SC techniques include Monte-Carlo and convolution-based methods for CBCT, storage of a precomputed library of scatter maps for DBT, and patient acquisition with a beam-passing pinhole array for breast CT. Our SC algorithm can be accomplished in clinically acceptable times, requires no additional imaging hardware or extra patient dose and is easily transportable between sites.
机译:对比增强的双能数字乳腺断层合成术(CE-DE-DBT)旨在成像碘化肿块,同时抑制乳房解剖背景。散射是一个问题,尤其是对于高能量采集而言,会引起严重的拔罐伪影和碘定量误差。我们提出了针对CE-DE-DBT的患者特定散射校正(SC)算法。经验算法通过将乳腺阴影外的散射数据插值到乳腺阴影内的估计中来工作。通过使用易于获得的(从幻像表)散点图至主动脉比值(SPR)表(每个乳房厚度和采集角度的单个SPR值)的操作,可以进一步改善内插估计值。通过将来自SC算法的SPR与使用通过光束的针孔阵列板所测量的SPR进行比较,我们验证了针对两种仿真乳房假体的SC算法。在我们的SC计算的SPR中,在采集角度和图像位置上平均的误差约为5%,对于较厚的体模,误差稍差一些。使用OS-SART重建的SC投影数据显示出很大程度的衰减。我们还观察到,SC消除了碘定量对体模厚度的依赖性。我们将SC算法应用于CE-DE乳腺X线摄影的患者图像,并在活检组织的乳房周围发现了肿瘤。在没有SC的图像中,拔罐伪影掩盖了对比度增强的肿瘤。使用我们的SC,可以轻松看到肿瘤。 ()针对锥束CT(CBCT)提出了基于插值的SC,但是我们的算法和应用在几个方面有所不同。其他相关的SC技术包括用于CBCT的Monte-Carlo和基于卷积的方法,用于DBT的预先计算的散点图库的存储,以及用于胸部CT的束流针孔阵列的患者采集。我们的SC算法可以在临床可接受的时间内完成,不需要额外的成像硬件或额外的患者剂量,并且可以在站点之间轻松运输。

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