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技术说明:第一代和第二代光子计数狭缝扫描断层合成系统的比较。

Technical Note: Comparison of first- and second-generation photon-counting slit-scanning tomosynthesis systems.

机构信息

Physics of Medical Imaging, Royal Institute of Technology, AlbaNova University Center, Stockholm, 106 91, Sweden.

Philips Mammography Solutions, Kista, 164 40, Sweden.

出版信息

Med Phys. 2018 Feb;45(2):635-638. doi: 10.1002/mp.12735. Epub 2018 Jan 9.

Abstract

PURPOSE

Digital breast tomosynthesis (DBT) is an emerging tool for breast-cancer screening and diagnostics. The purpose of this study is to present a second-generation photon-counting slit-scanning DBT system and compare it to the first-generation system in terms of geometry and image quality. The study presents the first image-quality measurements on the second-generation system.

METHOD

The geometry of the new system is based on a combined rotational and linear motion, in contrast to a purely rotational scan motion in the first generation. In addition, the calibration routines have been updated. Image quality was measured in the center of the image field in terms of in-slice modulation transfer function (MTF), artifact spread function (ASF), and in-slice detective quantum efficiency (DQE). Images were acquired using a W/Al 29 kVp spectrum at 13 mAs with 2 mm Al additional filtration and reconstructed using simple back-projection.

RESULT

The in-slice 50% MTF was improved in the chest-mammilla direction, going from 3.2 to 3.5 lp/mm, and the zero-frequency DQE increased from 0.71 to 0.77. The MTF and ASF were otherwise found to be on par for the two systems. The new system has reduced in-slice variation of the tomographic angle.

CONCLUSIONS

The new geometry is less curved, which reduces in-slice tomographic-angle variation, and increases the maximum compression height, making the system accessible for a larger population. The improvements in MTF and DQE were attributed to the updated calibration procedures. We conclude that the second-generation system maintains the key features of the photon-counting system while maintaining or improving image quality and improving the maximum compression height.

摘要

目的

数字乳腺断层合成(DBT)是一种新兴的乳腺癌筛查和诊断工具。本研究旨在介绍第二代光子计数狭缝扫描 DBT 系统,并将其与第一代系统在几何形状和图像质量方面进行比较。本研究首次对第二代系统进行了图像质量测量。

方法

新系统的几何形状基于旋转和平移的组合运动,与第一代系统的纯旋转扫描运动形成对比。此外,校准程序已更新。在图像场中心,以切片内调制传递函数(MTF)、伪影扩展函数(ASF)和切片内探测量子效率(DQE)来衡量图像质量。使用 W/Al 29 kVp 光谱在 13 mAs 下以 2mm Al 附加过滤采集图像,并使用简单的反向投影进行重建。

结果

在胸乳方向上,切片内 50% MTF 从 3.2 提高到 3.5 lp/mm,零频率 DQE 从 0.71 提高到 0.77。否则,两种系统的 MTF 和 ASF 都相当。新系统减少了切片内断层角度的变化。

结论

新的几何形状更平坦,减少了切片内断层角度的变化,并增加了最大压缩高度,使系统更适合更大的人群。MTF 和 DQE 的提高归因于更新的校准程序。我们得出结论,第二代系统在保持光子计数系统关键特性的同时,保持或提高了图像质量,并提高了最大压缩高度。

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