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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Simulation and experimental study of the angle-dependent sensitivity of the thick pinhole used for gamma imaging
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Simulation and experimental study of the angle-dependent sensitivity of the thick pinhole used for gamma imaging

机译:γ成像中厚针孔角度相关灵敏度的模拟和实验研究

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The angle-dependent sensitivity of rotationally symmetric thick pinholes used for gamma imaging was investigated using a geometric algorithm and Monte Carlo numerical simulations for the thick pinholes with different structural parameters. The effect of the pinhole diameter, the thickness of the straight-hole portion, and the half conical angle were analyzed. The point source was demonstrated to be a feasible replacement for the homogeneous plane source through theoretical deduction, numerical calculations, and experimental measurements of the angle-dependent sensitivity. A small quasi-point source was established based on a 10K curie level Co-60 gamma ray source in the experimental measurement of the angle-dependent sensitivity. The image position remained unchanged and image distortion was avoided by rotating the thick pinhole around the pinhole center. The experimental result was in good agreement with the theoretical calculation, indicating the potential of this measurement method.
机译:使用几何算法和具有不同结构参数的厚针孔的蒙特卡洛数值模拟,研究了用于伽马成像的旋转对称厚针孔的角度依赖性灵敏度。分析了针孔直径,直孔部分的厚度和半圆锥角的影响。通过理论推论,数值计算和与角度相关的灵敏度的实验测量,证明了点源可以替代均匀平面源。在与角度相关的灵敏度的实验测量中,基于10K居里能级Co-60γ射线源建立了一个小的准点源。图像位置保持不变,并通过围绕针孔中心旋转厚的针孔来避免图像失真。实验结果与理论计算吻合良好,表明了该测量方法的潜力。

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