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Numerical Investigation of the Effect of Number of Zones On Fresnel Zone Plates Imaging Performance Under Different Coherence Conditions

机译:不同连贯条件下菲涅耳区平板成像性能的数值研究

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In recent years, integral imaging has received increasing attention as a promising 3D imaging technique with one single exposure. In medical diagnostics, the X-ray integral imaging system potentially has a much shorter exposure time than the conventional computed tomography, reducing the radiation damage to the patient. By replacing the micro-lens array with a micro-Fresnel Zone Plate (FZP) array, the classical visible integral imaging system can be transposed to an X-ray system. However, limited by the micro-scale dimensions of FZP in the array and current manufacturing techniques, the number of zones of FZP is required to be small. This may have an important impact on the FZP imaging performance. Based on the scalar diffraction theory, this paper introduces a simulation method and numerically investigated the effect of the number of zones on the FZP imaging performance under different coherence conditions.
机译:近年来,整体成像已经接受了一个具有单一曝光的有前途的3D成像技术的关注。 在医学诊断中,X射线积分成像系统可能具有比传统的计算机断层摄影更短的曝光时间,从而降低对患者的辐射损伤。 通过用微菲涅耳区板(FZP)阵列用微透镜阵列替换微透镜阵列,经典可见积分成像系统可以转换为X射线系统。 然而,受到阵列和电流制造技术中FZP的微尺度尺寸的限制,FZP的区域的数量是小的。 这可能对FZP成像性能产生重要影响。 基于标量衍射理论,本文介绍了模拟方法,数值研究了不同连贯条件下FZP成像性能对区间数量的影响。

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