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Design and evaluation of a grid reciprocation scheme for use in digital breast tomosynthesis

机译:用于数字乳腺断层合成的网格往复方案的设计和评估

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摘要

This work describes a methodology for efficient removal of scatter radiation during digital breast tomosynthesis (DBT). The goal of this approach is to enable grid image obscuration without a large increase in radiation dose by minimizing misalignment of the grid focal point (GFP) and x-ray focal spot (XFS) during grid reciprocation. Hardware for the motion scheme was built and tested on the dual modality breast tomosynthesis (DMT) scanner, which combines DBT and molecular breast tomosynthesis (MBT) on a single gantry. The DMT scanner uses fully isocentric rotation of tube and x-ray detector for maintaining a fixed tube-detector alignment during DBT imaging. A cellular focused copper prototype grid with 80 cm focal length, 3.85 mm height, 0.1 mm thick lamellae, and 1.1 mm hole pitch was tested. Primary transmission of the grid at 28 kV tube voltage was on average 74% with the grid stationary and aligned for maximum transmission. It fell to 72% during grid reciprocation by the proposed method. Residual grid line artifacts (GLAs) in projection views and reconstructed DBT images are characterized and methods for reducing the visibility of GLAs in the reconstructed volume through projection image flat-field correction and spatial frequency-based filtering of the DBT slices are described and evaluated. The software correction methods reduce the visibility of these artifacts in the reconstructed volume, making them imperceptible both in the reconstructed DBT images and their Fourier transforms.
机译:这项工作描述了一种方法,可以有效消除数字乳房断层合成(DBT)期间的散射辐射。该方法的目标是通过使网格往复运动期间的网格焦点(GFP)和X射线焦点(XFS)的未对准最小化,从而在不大幅增加辐射剂量的情况下实现网格图像的模糊处理。该运动方案的硬件是在双模式乳房断层合成(DMT)扫描仪上构建和测试的,该扫描仪将DBT和分子乳房断层合成(MBT)结合在一个机架上。 DMT扫描仪使用管和X射线检测器的完全等中心旋转,以在DBT成像期间保持固定的管-检测器对准。测试了具有80厘米焦距,3.85毫米高,0.1毫米厚的薄片和1.1毫米孔距的蜂窝状铜原型网格。在28 kV管电压下,电网的初次传输平均为74%,其中电网静止且对齐以实现最大传输。所提出的方法在电网往复运动中下降到72%。表征了投影视图和重建的DBT图像中的残留网格线伪影(GLA),并描述和评估了通过投影图像平场校正和基于空间频率的DBT切片过滤来降低重建体积中GLA可见性的方法。软件校正方法降低了这些伪影在重建体积中的可见性,从而使它们在重建的DBT图像及其傅立叶变换中均不可察觉。

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