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Prism-array lenses for energy filtering in medical x-ray imaging

机译:用于医学X射线成像中能量过滤的棱镜阵列透镜

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Conventional energy filters for x-ray imaging are based on absorbing materials which attenuate low energy photons, sometimes combined with an absorption edge, thus also discriminating towards photons of higher energies. These filters are fairly inefficient, in particular for photons of higher energies, and other methods for achieving a narrower bandwidth have been proposed. Such methods include various types of monochromators, based on for instance mosaic crystals or refractive multi-prism x-ray lenses (MPL's). Prism-array lenses (PAL's) are similar to MPL's, but are shorter, have larger apertures, and higher transmission. A PAL consists of a number of small prisms arranged in columns perpendicular to the optical axis. The column height decreases along the optical axis so that the projection of lens material is approximately linear with a Fresnel phase-plate pattern superimposed on it. The focusing effect is one dimensional, and the lens is chromatic. Hence, unwanted energies can be blocked by placing a slit in the image plane of a desired energy. We present the first experimental and theoretical results on an energy filter based on a silicon PAL. The study includes an evaluation of the spectral shaping properties of the filter as well as a quantification of the achievable increase in dose efficiency compared to standard methods. Previously, PAL's have been investigated with synchrotron radiation, but in this study a medical imaging setup, based on a regular x-ray tube, is considered.
机译:用于X射线成像的常规能量过滤器基于吸收材料,该材料会衰减低能光子,有时会与吸收边相结合,因此也可以区分为高能光子。这些滤波器是相当低效的,特别是对于较高能量的光子而言,已经提出了用于实现较窄带宽的其他方法。这些方法包括各种类型的单色仪,例如基于镶嵌晶体或折射多棱镜X射线透镜(MPL)。棱镜阵列透镜(PAL)与MPL相似,但更短,具有更大的光圈和更高的透射率。 PAL由许多小棱镜组成,这些小棱镜排列成垂直于光轴的列。列高度沿光轴减小,因此透镜材料的投影近似线性,并带有叠加在其上的菲涅耳相板图案。聚焦效果是一维的,透镜是彩色的。因此,可以通过在期望能量的像平面上放置一个狭缝来阻止不需要的能量。我们介绍了基于硅PAL的能量滤波器的第一个实验和理论结果。与标准方法相比,该研究包括对滤光片光谱成形特性的评估以及对剂量效率可实现的增加的量化。以前,已经用同步加速器辐射对PAL进行了研究,但是在这项研究中,考虑了基于常规X射线管的医学成像装置。

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