论文标题
一种无金标准的技术,用于使用患者数据客观地评估定量成像方法:理论
A no-gold-standard technique to objectively evaluate quantitative imaging methods using patient data: Theory
论文作者
论文摘要
使用直接从患者图像获得的测量值对定量成像(QI)方法的客观评估非常需要,但由于黄金标准的不可利用性而阻碍。为了解决这个问题,已经提出了统计技术来客观地评估无金标准的QI方法。这些技术假设测量值和真实值通过斜率,偏置和正态分布的噪声项线性相关,在这种情况下,假定不同方法之间的噪声项是独立的。但是,由于噪声是在测量相同真实值的过程中产生的,因此噪声可以相关。为了解决这个问题,我们提出了一种新的无金标准评估(NGSE)技术,该技术将此噪声模拟为以协方差矩阵为特征的多元正态分布术语。在此手稿中,我们得出了一种基于最大的基于基础的技术,该技术在不了解真正的QI值的情况下估计斜率,偏置和协方差矩阵项。然后将这些用于根据测量的QI值的精度对方法进行排名。总体而言,该派生证明了拟议的NGSE技术背后的数学前提。
Objective evaluation of quantitative imaging (QI) methods using measurements directly obtained from patient images is highly desirable but hindered by the non-availability of gold standards. To address this issue, statistical techniques have been proposed to objectively evaluate QI methods without a gold standard. These techniques assume that the measured and true values are linearly related by a slope, bias, and normally distributed noise term, where it is assumed that the noise term between the different methods is independent. However, the noise could be correlated since it arises in the process of measuring the same true value. To address this issue, we propose a new no-gold-standard evaluation (NGSE) technique that models this noise as a multivariate normally distributed term, characterized by a covariance matrix. In this manuscript, we derive a maximum-likelihood-based technique that, without any knowledge of the true QI values, estimates the slope, bias, and covariance matrix terms. These are then used to rank the methods on the basis of precision of the measured QI values. Overall, the derivation demonstrates the mathematical premise behind the proposed NGSE technique.