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Fourier synthesis image reconstruction by use of one-dimensional position-sensitive detectors

机译:一维位置敏感检测器的傅里叶合成图像重建

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摘要

An improvement of Fourier synthesis optics for hard x-ray imaging is described, and the basic performance of the new optics is confirmed through numerical simulations. The original concept of the Fourier synthesis imager utilizes nonposition-sensitive hard x-ray detectors coupled to individual bigrid modulation collimators. The improved concept employs a one-dimensional position-sensitive detector (such as a CdTe strip detector) instead of the second grid layer of each bigrid modulation collimator. This improves the imaging performance in several respects over the original design. One performance improvement is a two-fold increase in the average transmission, from 1/4 to 1/2. The second merit is that both the sine and cosine components can be derived from a single grid-detector module, and hence the number of imaging modules can be halved. Furthermore, it provides information along the depth direction simultaneously. This in turn enables a three-dimensional imaging hard x-ray microscope for medical diagnostics, incorporating radioactive tracers. A conceptual design of such a microscope is presented, designed to provide a field of view of 4 mm and a spatial resolution of 400 μm.
机译:描述了一种用于硬X射线成像的傅立叶合成光学器件的改进,并通过数值模拟证实了新光学器件的基本性能。傅里叶合成成像仪的原始概念使用了非位置敏感的硬X射线检测器,该检测器与各个Bigrid调制准直仪耦合。改进的概念采用一维位置敏感检测器(例如CdTe条形检测器),而不是每个Bigrid调制准直器的第二栅格层。与原始设计相比,这可以在多个方面提高成像性能。性能改进之一是平均传输速率从1/4到1/2增长了两倍。第二个优点是,正弦和余弦分量都可以从单个栅格检测器模块导出,因此成像模块的数量可以减半。此外,它同时沿深度方向提供信息。反过来,这使三维成像硬X射线显微镜能够用于医学诊断,并带有放射性示踪剂。提出了这种显微镜的概念设计,其设计为提供4 mm的视场和400μm的空间分辨率。

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  • 来源
    《Applied optics》 |2003年第20期|共10页
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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
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