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Semiempirical simulation of x-ray detectors for imaging applications

机译:用于成像应用的X射线探测器的半经验模拟

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Purpose: The Monte Carlo (MC) simulation is widely used to design and test complex physical phenomena. This paper presents a simulator of x-ray detector for imaging applications by providing a simple component that can be embedded into a MC code and allowing developers to focus their attention on the primary goals without hanging in the quality of the final output image. Methods: A simplified semiempirical model of x-ray detector was developed and implemented starting from the definition of absorber material and developing scintillator and photoconductor screens and detectors. The validation was done by comparing a Hamamatsu C10900D digital flat panel with a simulation of the same detector using the presented model: MTF, nNPS, and NEQ. Results: The results of validation tests shown excellent agreement of the simulation with respect to the experimental data. The simulation was fast and efficient even in older computers (2004) and it was excellent in newer multicore computers (2010). Conclusions: Comparisons between experimental data and simulations shown that the simulator is able to mimic the output of a real imaging system, and it can have many applications in fields such as industry, medical physics, and teaching.
机译:目的:蒙特卡洛(MC)仿真被广泛用于设计和测试复杂的物理现象。本文通过提供一个可以嵌入到MC代码中的简单组件,并允许开发人员将注意力集中在主要目标上,而又不影响最终输出图像的质量,提出了一种用于成像应用的X射线检测器模拟器。方法:从定义吸收体材料,开发闪烁体和光电导体屏和探测器开始,开发并实现了简化的X射线探测器半经验模型。通过将Hamamatsu C10900D数字平板与使用所提供的模型(MTF,nNPS和NEQ)对相同检测器的仿真进行比较,从而完成了验证。结果:验证测试的结果表明,仿真与实验数据非常吻合。即使在较旧的计算机(2004年)中,该模拟也是快速而有效的,而在较新的多核计算机中(2010年),该仿真也非常出色。结论:实验数据与仿真之间的比较表明,该仿真器能够模拟真实成像系统的输出,并且可以在工业,医学物理学和教学等领域中得到许多应用。

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