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GEANT4 simulation of a 3D Compton imaging device

机译:3D康普顿成像设备的GEANT4仿真

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摘要

A 3D brain imaging device based on Compton scattering is investigated with a GEANT4 Monte-Carlo simulation. The proposed device relies on a novel 3D imaging technique which, contrary to other approaches like Compton cameras, does not require any backprojection procedure. We study the attainable sensitivity in the detection of density variations as a function of the beam energy, the depth inside the object and size and density of the inclusions. At midbrain position a resolution of about 2 mm and a contrast of 12% are obtained. In addition the simulation indicates that a complete brain scan at 600 keV beam energy would result in an effective dose of about 1 mSv.
机译:使用GEANT4蒙特卡洛模拟研究了基于Compton散射的3D脑成像设备。所提出的设备依赖于新颖的3D成像技术,与其他方法(如康普顿相机)相反,该方法不需要任何反投影过程。我们研究了在检测作为光束能量,物体内部深度以及夹杂物的尺寸和密度的函数的密度变化时可获得的灵敏度。在中脑位置,分辨率约为2毫米,对比度为12%。另外,模拟表明以600 keV的束能量进行完整的脑部扫描将产生约1 mSv的有效剂量。

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