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On-line PET monitoring of radiotherapy beams: image reconstruction and Monte Carlo simulations of detector geometries

机译:在线PET放射治疗束监测:图像重建和检测器几何形状的蒙特卡洛模拟

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摘要

The image reconstruction algorithm and design considerations for an annihilation gamma-ray coincidence detection camera are presented. The imaging system is designed to provide fast, on-line monitoring of the positron-emitting activity created by narrow gamma-ray, proton, or heavy-ion radiotherapy beams in tissue for determining total dose, performing range verification for charged particles, and for determining the oxygen content as a function of depth. A model of the detection system was developed and implemented using Monte Carlo techniques. Simulations based on this model are compared with experimental results from a prototype system and are used to study the detection efficiency and imaging characteristics of the system, while parameters such as scintillation crystal spacing, length, and separation are varied. In addition the effects of intercrystal shielding, extended activity distributions, and attenuation on detection efficiency and image reconstruction are presented. Simulation results suggest that the detection geometry which optimizes the sensitivity and spatial resolution utilizes tightly packed, narrow, uncoupled scintillation crystals with no intercrystal shielding. The one-dimensional reconstruction algorithm requires that the angular acceptance be minimized to reduce blurring for extended activity distributions. It is also shown that the depth-of-interaction blurring effect present in annular Positron Emission Tomography imaging systems may be removed through the calibration procedure and the one-dimensional image reconstruction algorithm used for this system.
机译:提出了an灭伽玛射线重合检测相机的图像重建算法和设计注意事项。该成像系统旨在对组织中的窄伽马射线,质子或重离子放射治疗束产生的正电子发射活动进行快速在线监测,以确定总剂量,对带电粒子进行范围验证以及对确定氧气含量与深度的关系。使用蒙特卡洛技术开发并实施了检测系统模型。将基于该模型的仿真与原型系统的实验结果进行比较,并用于研究系统的检测效率和成像特性,同时改变诸如闪烁晶体间距,长度和分离度等参数。此外,还提出了晶间屏蔽,扩展的活性分布以及衰减对检测效率和图像重建的影响。仿真结果表明,优化灵敏度和空间分辨率的检测几何结构利用了紧密堆积,狭窄,未耦合的闪烁晶体,而没有晶间屏蔽。一维重建算法要求将角度接受度最小化,以减少扩展活动分布的模糊。还显示出可以通过校准程序和用于该系统的一维图像重建算法来消除环形正电子发射断层扫描成像系统中存在的相互作用深度模糊效应。

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