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Hardware assessment using the multi-module multi-resolution system (M3R): A signal-detection study

机译:使用多模块多分辨率系统(M3R)的硬件评估:信号检测研究

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摘要

The multi-module, multi-resolution system (M3R) is used for hardware assessment in objective, task-based signal detection studies in projection data. A phantom capable of generating multiple realizations of a random textured background is introduced. Measured backgrounds from this phantom are used along with simulated lumpy and uniform backgrounds to investigate signal-to-noise ratio as a function of exposure time. Results are shown to agree with theoretical predictions, exhibiting a power-law like dependence previously seen for studies performed either in simulation or without an imaging system, and help validate the use of simulated lumpy backgrounds in observer studies. A second study looks at signal-detection performance, measured by AUC (area under the receiver operating characteristic curve), in lumpy backgrounds for 20 M3R aperture combinations as a function of lump size and signal size. Observer performance reveals an improvement in AUC for certain ranges of signal and lump combinations through the use of multiplexed, multiple-pinhole apertures, indicating a need for task-specific aperture optimization. The channelized Hotelling observer is used with Laguerre-Gauss channels for both observer studies. Methods for selection of number of channels and channel width are discussed.
机译:多模块,多分辨率系统(M 3 R)用于在投影数据中基于客观,基于任务的信号检测研究中的硬件评估。介绍了一种能够生成随机带纹理的背景的多种实现的体模。从该体模中测得的背景与模拟的块状和均匀背景一起使用,以研究信噪比与曝光时间的关系。结果表明与理论预测相符,表现出幂律,如以前在模拟或不使用成像系统中进行的研究所见的依存关系,并有助于验证在观察者研究中使用模拟的块状背景。第二项研究着眼于信号检测性能,该测量是通过AUC(接收器工作特性曲线下的面积)在20 M 3 supR光圈组合的块状背景下测量的,该测量是团块大小和信号大小的函数。观察者的性能表明,通过使用多路复用的多针孔孔径,可以在某些信号和块组合的特定范围内提高AUC,这表明需要针对特定​​任务进行孔径优化。通道化的Hotelling观测器与Laguerre-Gauss通道一起用于两种观测器研究。讨论了选择通道数和通道宽度的方法。

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