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AEC for scanning digital mammography based on variation of scan velocity.

机译:基于扫描速度变化的AEC扫描数字乳腺摄影。

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摘要

A theoretical evaluation of nonuniform x-ray field distributions in mammography was conducted. An automatic exposure control (AEC) is proposed for a scanning full field digital mammography system. It uses information from the leading part of the detector to vary the scan velocity dynamically, thus creating a nonuniform x-ray field in the scan direction. Nonuniform radiation fields were also created by numerically optimizing the scan velocity profile to each breast's transmission distribution, with constraints on velocity and acceleration. The goal of the proposed AEC is to produce constant pixel signal-to-noise ratio throughout the image. The target pixel SNR for each image could be set based on the breast thickness, breast composition, and the beam quality as to achieve the same contrast-to-noise ratio between images for structures of interest. The results are quantified in terms of reduction in entrance surface air kerma (ESAK) and scan time relative to a uniform x-ray field. The theoretical evaluation was performed on a set of 266 mammograms. The performance of the different methods to create nonuniform fields decreased with increased detector width, from 18% to 11% in terms of ESAK reduction and from 30% to 25% in terms of scan time reduction for the proposed AEC and detector widths from 10 to 60 mm. Some correlation was found between compressed breast thickness and the projected breast area onto the image field. This translated into an increase of the ESAK and decrease of the scan time reduction with breast thickness. Ideally a nonuniform field in two dimensions could reduce the entrance dose by 39% on average, whereas a field nonuniform in only the scanning dimension ideally yields a 20% reduction. A benefit with the proposed AEC is that the risk of underexposing the densest region of the breast can be virtually eliminated.
机译:对乳腺X射线摄影中不均匀的X射线场分布进行了理论评估。提出了一种用于扫描全场数字乳腺摄影系统的自动曝光控制(AEC)。它使用来自探测器前端的信息动态地改变扫描速度,从而在扫描方向上产生不均匀的X射线场。通过对速度和加速度的限制,通过对每个乳房的透射分布进行数值优化扫描速度曲线,还可以创建不均匀的辐射场。提出的AEC的目标是在整个图像中产生恒定的像素信噪比。可以基于乳房厚度,乳房组成和光束质量来设置每个图像的目标像素SNR,以实现感兴趣结构的图像之间的相同的对比度-噪声比。通过减少入射表面空气比释动能(ESAK)和相对于均匀X射线场的扫描时间来量化结果。理论评估是在一组266张乳房X线照片上进行的。对于拟议的AEC和​​将探测器宽度从10减小到10的方法,创建不均匀场的不同方法的性能随着探测器宽度的增加而降低,从减少ESAK的角度来看,从18%降低到11%,从减少的扫描时间从30%降低到25%。 60毫米在压缩的乳房厚度和投影到图像场上的乳房区域之间发现了一些相关性。随着乳房厚度的增加,这意味着ESAK的增加和扫描时间的减少。理想情况下,二维的不均匀场可以平均减少39%的入射剂量,而理想的情况是仅扫描尺寸的不均匀场可以减少20%。建议的AEC的好处在于,可以消除乳房最密集区域曝光不足的风险。

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