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Exact Confidence Intervals for Channelized Hotelling Observer Performance in Image Quality Studies

机译:图像质量研究中通道化Hotelling观测器性能的确切置信区间

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摘要

Task-based assessments of image quality constitute a rigorous, principled approach to the evaluation of imaging system performance. To conduct such assessments, it has been recognized that mathematical model observers are very useful, particularly for purposes of imaging system development and optimization. One type of model observer that has been widely applied in the medical imaging community is the channelized Hotelling observer (CHO), which is well-suited to known-location discrimination tasks. In the present work, we address the need for reliable confidence interval estimators of CHO performance. Specifically, we show that the bias associated with point estimates of CHO performance can be overcome by using confidence intervals proposed by Reiser for the Mahalanobis distance. In addition, we find that these intervals are well-defined with theoretically-exact coverage probabilities, which is a new result not proved by Reiser. The confidence intervals are tested with Monte Carlo simulation and demonstrated with two examples comparing X-ray CT reconstruction strategies. Moreover, commonly-used training/testing approaches are discussed and compared to the exact confidence intervals. MATLAB software implementing the estimators described in this work is publicly available at .
机译:基于任务的图像质量评估是评估成像系统性能的严格,原则性方法。为了进行这样的评估,已经认识到数学模型观察者非常有用,特别是对于成像系统开发和优化而言。通道化的Hotelling观测器(CHO)已广泛应用于医学成像社区,是一种类型的模型观测器,它非常适合于已知位置的识别任务。在当前的工作中,我们解决了对CHO性能可靠的置信区间估计器的需求。具体而言,我们表明,可以通过使用Reiser为马氏距离提出的置信区间来克服与CHO性能的点估计相关的偏差。此外,我们发现这些间隔是定义明确的,具有理论上精确的覆盖概率,这是Reiser尚未证明的新结果。置信区间使用蒙特卡洛模拟进行测试,并通过两个示例比较X射线CT重建策略进行了验证。此外,讨论了常用的训练/测试方法,并将其与确切的置信区间进行了比较。实现本工作中描述的估算器的MATLAB软件可在上公开获得。

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