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螳螂:间接辐射成像系统的X射线、电子和光学联合蒙特卡罗模拟

MANTIS: combined x-ray, electron and optical Monte Carlo simulations of indirect radiation imaging systems.

作者信息

Badano Aldo, Sempau Josep

机构信息

NIBIB/CDRH Laboratory for the Assessment of Medical Imaging Systems, 12720 Twinbrook Parkway, HFZ-142, Rockville, MD 20857, USA.

出版信息

Phys Med Biol. 2006 Mar 21;51(6):1545-61. doi: 10.1088/0031-9155/51/6/013. Epub 2006 Mar 1.

Abstract

We describe MANTIS (Monte carlo x-rAy electroN opTical Imaging Simulation), a tool for simulating imaging systems that tracks x-rays, electrons and optical photons in arbitrary materials and complex geometries. The x-ray and electron transport and involved physics models are from the PENELOPE package, and the optical transport and corresponding physics models are from DETECT-II and include Fresnel refraction and reflection at material boundaries, bulk absorption and scattering. Complex geometries can be handled with the aid of the geometry routines included in PENELOPE. When x-rays or electrons interact and deposit energy in the scintillator, the code generates a number of optical quanta according to a user-selected model for the conversion process. The optical photons are then tracked until they reach an absorption event, which in some cases contributes to the output signal, or escape from the geometry. We demonstrate the capabilities of this new tool with respect to the statistics of the optical signal detected and to the three-dimensional point-response functions corresponding to columnar phosphor screens.

摘要

我们介绍了MANTIS(蒙特卡罗X射线电子光学成像模拟),这是一种用于模拟成像系统的工具,可在任意材料和复杂几何形状中追踪X射线、电子和光学光子。X射线和电子传输以及相关物理模型来自PENELOPE软件包,光学传输和相应物理模型来自DETECT-II,包括材料边界处的菲涅耳折射和反射、体吸收和散射。借助PENELOPE中包含的几何例程可以处理复杂的几何形状。当X射线或电子在闪烁体中相互作用并沉积能量时,代码会根据用户选择的转换过程模型生成一定数量的光量子。然后追踪光学光子,直到它们发生吸收事件,在某些情况下,该事件会对输出信号有贡献,或者从几何形状中逸出。我们展示了这个新工具在检测到的光信号统计以及对应于柱状荧光屏的三维点响应函数方面的能力。

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