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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Grating-based interferometry and hybrid photon counting detectors: Towards a new era in X-ray medical imaging
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Grating-based interferometry and hybrid photon counting detectors: Towards a new era in X-ray medical imaging

机译:基于光栅的干涉测量和混合光子计数检测器:迈向X射线医学成像的新时代

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摘要

Progress in X-ray medical imaging and advances in detector developments have always been closely related. Similarly, a strong connection exists between innovations in synchrotron imaging and their implementation on table-top X-ray tube setups. The transfer of phase-based imaging to X-ray tubes can provide table-top setups with improved contrast between areas of low attenuation differences, by exploiting the unit decrement of the real part of the refractive index. Medical imaging is a potential application for such a system. Originally developed for synchrotron experiments, the novel generation of hybrid photon counting detectors is becoming increasingly popular due to their unique characteristics, such as small pixel size, negligible dark noise, fast counting and adjustable energy thresholds. Furthermore, novel room temperature semiconductor materials such as Cd(Zn)Te can provide higher quantum efficiency. In the first part of this article we review phase-contrast techniques and recent research towards medical applications. In the second part we present results and evaluate the potential of combining a table-top Talbot grating interferometry system with latest generation hybrid photon counting detectors.
机译:X射线医学成像的进展与检测器的发展一直紧密相关。同样,同步加速器成像的创新与其在台式X射线管设置中的实现之间也存在着牢固的联系。通过利用折射率的实部的单位递减,可以将基于相位的成像转移到X射线管,从而为桌面设置提供改善的低衰减差异区域之间的对比度。医学成像是这种系统的潜在应用。最初为同步加速器实验开发的新一代混合光子计数检测器由于其独特的特性(例如像素尺寸小,可忽略的暗噪声,快速计数和可调节的能量阈值)而变得越来越受欢迎。而且,诸如Cd(Zn)Te的新型室温半导体材料可以提供更高的量子效率。在本文的第一部分中,我们回顾了相衬技术和对医学应用的最新研究。在第二部分中,我们介绍结果并评估将台式Talbot光栅干涉仪系统与最新一代的混合光子计数检测器相结合的潜力。

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