Park S, Kupinski M A, Clarkson E, Barrett H H
Program in Applied Mathematics, The University of Arizona at Tucson, USA.
Inf Process Med Imaging. 2003 Jul;18:342-53. doi: 10.1007/978-3-540-45087-0_29.
We use the performance of the Bayesian ideal observer as a figure of merit for hardware optimization because this observer makes optimal use of signal-detection information. Due to the high dimensionality of certain integrals that need to be evaluated, it is difficult to compute the ideal observer test statistic, the likelihood ratio, when background variability is taken into account. Methods have been developed in our laboratory for performing this computation for fixed signals in random backgrounds. In this work, we extend these computational methods to compute the likelihood ratio in the case where both the backgrounds and the signals are random with known statistical properties. We are able to write the likelihood ratio as an integral over possible backgrounds and signals, and we have developed Markov-chain Monte Carlo (MCMC) techniques to estimate these high-dimensional integrals. We can use these results to quantify the degradation of the ideal-observer performance when signal uncertainties are present in addition to the randomness of the backgrounds. For background uncertainty, we use lumpy backgrounds. We present the performance of the ideal observer under various signal-uncertainty paradigms with different parameters of simulated parallel-hole collimator imaging systems. We are interested in any change in the rankings between different imaging systems under signal and background uncertainty compared to the background-uncertainty case. We also compare psychophysical studies to the performance of the ideal observer.
我们将贝叶斯理想观察者的性能作为硬件优化的品质因数,因为该观察者能最佳地利用信号检测信息。由于需要评估的某些积分具有高维度性,在考虑背景变异性时,计算理想观察者检验统计量(似然比)变得困难。我们实验室已开发出在随机背景中针对固定信号进行此计算的方法。在这项工作中,我们将这些计算方法扩展到背景和信号均为具有已知统计特性的随机情况下来计算似然比。我们能够将似然比写成关于可能的背景和信号的积分形式,并且我们已开发出马尔可夫链蒙特卡罗(MCMC)技术来估计这些高维积分。当除了背景的随机性之外还存在信号不确定性时,我们可以利用这些结果来量化理想观察者性能的下降情况。对于背景不确定性,我们使用块状背景。我们展示了在具有不同模拟平行孔准直器成像系统参数的各种信号不确定性范式下理想观察者的性能。我们感兴趣的是,与背景不确定性情况相比,在信号和背景不确定性下不同成像系统之间排名的任何变化。我们还将心理物理学研究与理想观察者的性能进行比较。