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Validation of a Clinical PET Scanner Using Monte Carlo Simulation Code: MCNP5

机译:使用Monte Carlo仿真代码验证临床PET扫描仪:MCNP5

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This paper presents a realistic PET scanner simulation using Monte Carlo code, version MCNP5. The objective of our study was to verify the code used for this simulation by comparing the results obtained from the simulation with those obtained from the measurement did on a real PET scanner. This study will provide a basic benchmark for our further study on PET imaging. We modeled the scanner based on the physical specification of Siemens Biograph True Point PET scanner. We recorded the generated list-mode data which contains all the information needed to model the PET processes for instance coincidence photon detection. To account for the statistical fluctuations occur in the detector and photo multiplier tube, a Gaussian energy blurring model was applied to the energy deposited in the detector. The scatter and attenuation correction to correct the effect of scattered and attenuated events also took into account in this study. All of these post-simulation processes were done using a program developed using mat lab. To validate the simulation, the simulated and measured energy and spatial resolution were compared. We have successfully modeled a PET system based on MCNP5. We also verified that this simulation result in a good agreement data with the real imaging.
机译:本文给出了使用蒙特卡罗程序,版本MCNP5逼真的PET扫描仪模拟。我们研究的目的是验证通过比较从测量一个真正的PET扫描仪没有获得那些从模拟得到的结果用于该模拟的代码。该研究为我们的PET成像进一步的研究提供了一个基本的标准。我们模拟基于西门子的Biograph真正的控PET扫描仪的物理规格的扫描仪。我们记录这包含了所有例如巧合光子探测的PET流程建模所需的信息生成的列表模式数据。为了考虑统计涨落发生在检测器和光电倍增管,高斯能量模糊模型应用于沉积在检测器中的能量。该散射和衰减校正纠正分散,减弱事件的影响也考虑到了这项研究。所有这些后仿真过程的使用使用垫实验室开发的程序进行。为了验证该仿真中,仿真和测量能量和空间分辨率进行比较。我们已成功构建了基于MCNP5 PET系统。我们也验证了这一模拟结果与真实成像有很好的一致性数据。

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