Gagne Robert M, Boswell Jonathan S, Myers Kyle J
Center for Devices and Radiological Health, FDA, 12720 Twinbrook Parkway, Rockville, Maryland 20857, USA.
Med Phys. 2003 Aug;30(8):2180-93. doi: 10.1118/1.1578485.
The usefulness of Fourier-based measures of imaging performance has come into question for the evaluation of digital imaging systems. Figures of merit such as detective quantum efficiency (DQE) based on Fourier domain parameters are relevant for linear, shift-invariant systems with stationary noise. However, no digital imaging system is shift invariant, and realistic images do not satisfy the stationarity condition. Our methods for the task-based evaluation of imaging systems, based on signal detectability in the spatial domain, do not require such assumptions. We have computed the performance of ideal and quasi-ideal observers for the task of signal detection in digital radiography. Signal detectability in terms of an observer signal-to-noise-ratio (SNR) has been compared to results obtained from a Monte Carlo simulation of the digital image-acquisition process. The simulation incorporates the effects of random amplification and secondary quantum blur, integration over pixel area, and electronic noise. The observer figures of merit that have been previously shown to bracket human performance directly specify the usefulness of the images for the stated diagnostic task. In addition, the observer figures of merit give a task-dependent measure of imaging system efficiency in terms of the ratio of an output SNR2 to an input SNR2. Thus, the concept of "detective quantum efficiency" reappears in a natural way but based in the spatial domain and not dependent on shift invariance and stationarity assumptions. With respect to the optimum amount of system blur, our simulations indicate that under certain task-dependent conditions, large signals are fairly insensitive to blur in the x-ray transducer, while an optimum blur is found for small signals.
基于傅里叶变换的成像性能测量方法在数字成像系统评估中的实用性受到了质疑。诸如基于傅里叶域参数的探测量子效率(DQE)等品质因数适用于具有平稳噪声的线性、平移不变系统。然而,没有数字成像系统是平移不变的,并且实际图像也不满足平稳性条件。我们基于空间域信号可检测性的成像系统任务评估方法不需要此类假设。我们已经计算了数字射线照相中信号检测任务的理想和准理想观察者的性能。已将基于观察者信噪比(SNR)的信号可检测性与数字图像采集过程的蒙特卡罗模拟结果进行了比较。该模拟纳入了随机放大和二次量子模糊、像素区域积分以及电子噪声的影响。先前已证明能直接界定人类性能的观察者品质因数直接说明了图像对所述诊断任务的有用性。此外,观察者品质因数根据输出SNR2与输入SNR2的比率给出了成像系统效率的任务相关度量。因此,“探测量子效率”的概念以自然的方式再次出现,但基于空间域且不依赖于平移不变性和平稳性假设。关于系统模糊的最佳量,我们的模拟表明,在某些与任务相关的条件下,大信号对X射线换能器中的模糊相当不敏感,而对于小信号则发现了最佳模糊。