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An approach to system optimization for X-Ray photon-counting systems using performance on a detection/localization task

机译:一种在检测/本地化任务中使用性能的X射线光子计数系统系统优化方法

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We address the problem of optimizing data acquisition for photon-counting CT. We formulate a task-driven approach using a clinically relevant task of detection and localization of a lesion in a search region. The appropriate scalar measure of task performance is ALROC, the area under the LROC curve. For hardware optimization, the observer performing the task should operate on the raw (sinogram) data so that the best possible information, independent of the parameters of any particular reconstruction algorithm, is collected. To carry out the task, we use the ideal observer (IO), a numerical observer that yields the maximal ALROC amongst all observers. This differs from the usual numerical observer that operates on the reconstructed data and is designed so that its performance tracks that of a human observer. So while the optimization is carried out in the sinogram domain, the task definition is in the object domain. In this work, we mathematically specialize a previously developed IO to the case of photon-counting transmission tomography. We applied the IO to a 2D simulation of CT with the task of detecting a 3mm lung nodule in a lung region of a 512×512 phantom. The application was to optimize the number of angular acquisitions given a fixed dose. A plot of ALROC vs. angle number peaks at 42 angles. We also plotted ALROC vs. dose (at 105 angles) to characterize the increase in task performance with count level.
机译:我们解决了优化光子计数CT的数据采集的问题。我们使用在搜索区域中的病变检测和定位的临床相关任务制定任务驱动方法。任务性能的适当标量度量是alroc,LROC曲线下的区域。对于硬件优化,执行任务的观察者应该在原始(SINOGRAM)数据上运行,以便收集与任何特定重建算法的参数无关的最佳信息。要执行任务,我们使用理想的观察者(IO),一个数字观察者,产生所有观察者之间的最大ALROC。这与通常在重建数据上操作的数值观察者不同,并且设计成使其性能追踪人类观察者的性能。因此,虽然优化在Sinogram域中执行,但任务定义在对象域中。在这项工作中,我们在数学上专门从前发达的IO到光子计数传输断层扫描的情况。我们将IO施加到CT的2D模拟中,通过检测512×512幻象的肺部区域中的3mm肺结核的任务。应用是优化给定固定剂量的角度采集次数。在42个角度下的ALROC与角数峰值的曲线图。我们还绘制了Alroc vs.剂量(105角),以表征具有计数水平的任务性能的增加。

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