X-ray space technology transfer for improved mammography screening

Francesco Nardo, I. Kuvvetli, D. Ferreira, S. Massahi, F. Christensen
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Abstract

Breast imaging using monochromatic x-rays promises lower dose and better image quality relative to conventional approaches. It has been proposed that the use of coated mirrors capable of mono-chromatic x-ray hard spectra have the capability of reducing ionizing radiation exposure while also improving image quality during x-ray medical screening procedures. This research study is centered around screening for breast cancer using Digital Mammography (DM) technique. In this work we present a simplified prototype system developed at DTU Space and implemented to validate the proposed Wolter type I design. The experimental setup consists of a source up to 40 keV, a high-resolution roto-translation mechanical support and an advanced high resolution (55 micron), energy-sensitive Si detector with quantum efficiency (20% @22 keV). For testing, phantom objects will be used as samples, allowing for a real-world realistic assessment of the use of space technology for breast screening. In this work, experimental measurements of absorbed dose reduction and contrast-to-noise ratio are reported.
x射线空间技术转让以改进乳房x线摄影筛查
与传统方法相比,使用单色x射线进行乳房成像可以保证更低的剂量和更好的图像质量。有人提出,使用能够获得单色x射线硬光谱的涂层反射镜能够减少电离辐射暴露,同时还能改善x射线医疗筛查过程中的图像质量。本研究围绕使用数字乳房x线摄影(DM)技术筛查乳腺癌展开。在这项工作中,我们提出了一个在DTU空间开发的简化原型系统,并实施以验证提出的Wolter I型设计。实验装置由高达40 keV的源,高分辨率旋转平移机械支架和先进的高分辨率(55微米),量子效率(20% @22 keV)的能量敏感Si探测器组成。在测试中,幻影物体将被用作样本,以便对空间技术用于乳房筛查的使用进行真实的评估。本文报道了吸收剂量减少和对比噪声比的实验测量结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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