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Scattered Radiation Emission Imaging: Principles and Applications

机译:散射辐射成像:原理与应用

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Imaging processes built on the Compton scattering effect have been under continuing investigation since it was first suggested in the 50s. However, despite many innovative contributions, there are still formidable theoretical and technical challenges to overcome. In this paper, we review the state-of-the-art principles of the so-called scattered radiation emission imaging. Basically, it consists of using the cleverly collected scattered radiation from a radiating object to reconstruct its inner structure. Image formation is based on the mathematical concept of compounded conical projection. It entails a Radon transform defined on circular cone surfaces in order to express the scattered radiation flux density on a detecting pixel. We discuss in particular invertible cases of such conical Radon transforms which form a mathematical basis for image reconstruction methods. Numerical simulations performed in two and three space dimensions speak in favor of the viability of this imaging principle and its potential applications in various fields.
机译:自从50年代首次提出以来,就一直在继续研究基于康普顿散射效应的成像过程。但是,尽管做出了许多创新性的贡献,但是仍然需要克服巨大的理论和技术挑战。在本文中,我们回顾了所谓的散射辐射发射成像的最新原理。基本上,它包括使用从辐射物体中巧妙收集的散射辐射来重建其内部结构。图像形成基于复合圆锥投影的数学概念。它需要在圆锥表面上定义一个Radon变换,以表示检测像素上的散射辐射通量密度。我们特别讨论了这种锥形Radon变换的可逆情况,这些情况构成了图像重建方法的数学基础。在两个和三个空间维度上进行的数值模拟证明了这种成像原理的可行性及其在各个领域的潜在应用。

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