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Detectability comparison between a high energy x-ray phase sensitive and mammography systems in imaging phantoms with varying glandular-adipose ratios

机译:高能X射线相位敏感和乳腺摄影系统在不同体脂比率下的体模成像中的可检测性比较

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摘要

The objective of this study was to demonstrate the potential benefits of using high energy x-rays in comparison with the conventional mammography imaging systems for phase sensitive imaging of breast tissues with varying glandular-adipose ratios.This study employed two modular phantoms simulating the glandular (G) and adipose (A) breast tissue composition in 50G-50A and 70G-30A percentage densities. Each phantom had a thickness of 5 cm with a contrast detail (CD) test pattern embedded in the middle. For both phantoms, the phase contrast images were acquired using a micro-focus x-ray source operated at 120 kVp and 4.5 mAs, with a magnification factor (M) of 2.5 and a detector with a 50 μm pixel pitch. The mean glandular dose delivered to the 50G-50A and 70G-30A phantom sets were 1.33 and 1.3 mGy, respectively. A phase retrieval algorithm based on the phase attenuation duality (PAD) that required only a single phase contrast image was applied. Conventional low energy mammography images were acquired using GE Senographe DS and Hologic Selenia systems utilizing their automatic exposure control (AEC) settings. In addition, the automatic contrast mode (CNT) was also used for the acquisition with the GE system. The AEC mode applied higher dose settings for the 70G-30A phantom set. As compared to the phase contrast images, the dose levels for the AEC mode acquired images were similar while the dose levels for the CNT mode were almost double.The observer study, contrast-to-noise ratio (CNR) and figure of merit (FOM) comparisons indicated a large improvement with the phase retrieved images in comparison to the AEC mode images acquired with the clinical systems for both density levels. As the glandular composition increased, the detectability of smaller discs decreased with the clinical systems, particularly with the GE system, even at higher dose settings. As compared to the CNT mode (double dose) images, the observer study also indicated that the phase retrieved images provided similar or improved detection for all disc sizes except for the disk diameters of 2 mm and 1 mm for the 50G-50A phantom and 3 mm and 0.5 mm for the 70G-30A phantom.This study demonstrated the potential of utilizing a high energy phase sensitive x-ray imaging system to improve lesion detection and reduce radiation dose when imaging breast tissues with varying glandular compositions.
机译:这项研究的目的是证明与传统的乳房X射线照相成像系统相比,使用高能X射线对具有不同腺体-脂肪比的乳腺组织进行相敏成像的潜在优势。本研究采用了两个模拟体模的腺体模型( G)和脂肪(A)乳腺组织成分的密度分别为50G-50A和70G-30A。每个体模的厚度为5厘米,中间嵌入了对比细节(CD)测试图案。对于两个体模,使用在120 kVp和4.5 mAs下操作的微焦点X射线源(放大倍数(M)为2.5)和像素间距为50μm的检测器来获取相衬图像。传送到50G-50A和70G-30A幻像组的平均腺体剂量分别为1.33和1.3 mGy。应用了基于相位衰减对偶性(PAD)的相位检索算法,该算法仅需要单个相位对比图像。使用GE Senographe DS和Hologic Selenia系统并利用其自动曝光控制(AEC)设置,可以获取常规的低能乳腺X光照片。此外,GE系统还使用自动对比模式(CNT)进行采集。 AEC模式为70G-30A幻像装置应用了更高的剂量设置。与相衬图像相比,AEC模式获得的图像的剂量水平相似,而CNT模式获得的剂量水平几乎翻了一倍。观察者研究,对比噪声比(CNR)和品质因数(FOM) )的比较表明,与通过临床系统在两种密度水平下获得的AEC模式图像相比,相位检索图像都有很大的改善。随着腺体成分的增加,较小的椎间盘的可检测性随着临床系统(尤其是GE系统)而下降,即使在更高的剂量设置下也是如此。与CNT模式(双剂量)图像相比,观察者研究还表明,对于50G-50A幻像和2个直径为3 mm的圆盘直径,除了2 mm和1 mm的圆盘直径外,相取回的图像对所有圆盘尺寸都提供了相似或改进的检测。 70G-30A幻影的毫米和0.5毫米。这项研究证明了在对具有不同腺体成分的乳腺组织进行成像时,利用高能相敏X射线成像系统改善病变检测并减少辐射剂量的潜力。

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