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Towards component-based validation of GATE: aspects of the coincidence processor

机译:走向基于组件的GATE验证:重合处理器的各个方面

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摘要

GATE is public domain software widely used for Monte Carlo simulation in emission tomography. Validations of GATE have primarily been performed on a whole-system basis, leaving the possibility that errors in one sub-system may be offset by errors in others. We assess the accuracy of the GATE PET coincidence generation sub-system in isolation, focusing on the options most closely modeling the majority of commercially available scanners.Independent coincidence generators were coded by teams at Toshiba Medical Research Unit (TMRU) and UC Davis. A model similar to the Siemens mCT scanner was created in GATE. Annihilation photons interacting with the detectors were recorded. Coincidences were generated using GATE, TMRU and UC Davis code and results compared to “ground truth” obtained from the history of the photon interactions. GATE was tested twice, once with every qualified single event opening a time window and initiating a coincidence check (the “multiple window method”), and once where a time window is opened and a coincidence check initiated only by the first single event to occur after the end of the prior time window (the “single window method”). True, scattered and random coincidences were compared. Noise equivalent count rates were also computed and compared.The TMRU and UC Davis coincidence generators agree well with ground truth. With GATE, reasonable accuracy can be obtained if the single window method option is chosen and random coincidences are estimated without use of the delayed coincidence option. However in this GATE version, other parameter combinations can result in significant errors.
机译:GATE是公共领域的软件,广泛用于放射层析成像中的蒙特卡洛模拟。 GATE的验证主要是在整个系统上进行的,因此存在一个子系统中的错误可能被另一个子系统中的错误抵消的可能性。我们独立评估GATE PET巧合发生子系统的准确性,重点是最接近大多数商用扫描仪建模的选项。独立巧合发生器由东芝医学研究部门(TMRU)和加州大学戴维斯分校的团队进行编码。在GATE中创建了类似于Siemens mCT扫描仪的模型。记录了与探测器相互作用的灭光子。巧合是使用GATE,TMRU和UC Davis代码生成的,其结果与从光子相互作用的历史记录中获得的“地面真相”进行了比较。对GATE进行了两次测试,一次是对每个合格的单个事件打开一个时间窗口并启动重合检查(“多窗口方法”),一次是对打开时间窗口并仅由第一个单个事件开始进行重合检查进行一次测试。在上一个时间窗口结束之后(“单窗口方法”)。比较了真实的,分散的和随机的巧合。还计算并比较了噪声当量计数率。TMRU和UC Davis符合发生器与地面实况非常吻合。使用GATE,如果选择了单窗口方法选项,并且在不使用延迟重合选项的情况下估计了随机重合,则可以获得合理的精度。但是,在此GATE版本中,其他参数组合可能会导致重大错误。

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