Ekström Joakim, Åkerrén Ögren Jim, Sjöblom Tobias
Department of Immunology, Genetics, Pathology, Uppsala University, Rudbecklaboratoriet, 752 57 Uppsala, Sweden.
Cancers (Basel). 2023 Mar 15;15(6):1788. doi: 10.3390/cancers15061788.
The Receiver Operating Characteristic (ROC) is a de facto standard for determining the accuracy of in vitro diagnostic (IVD) medical devices, and thus the exactness in its probability distribution is crucial toward accurate statistical inference. We show the exact probability distribution of the ROC AUC-value, hence exact critical values and -values are readily obtained. Because the exact calculations are computationally intense, we demonstrate a method of geometric interpolation, which is exact in a special case but generally an approximation, vastly increasing computational speeds. The method is illustrated through open access data, demonstrating superiority of 26 composite biomarkers relative to a predicate device. Especially under correction for testing of multiple hypotheses, traditional asymptotic approximations are encumbered by considerable imprecision, adversely affecting IVD device development. The ability to obtain exact -values will allow more efficient IVD device development.
接收器操作特性(ROC)是确定体外诊断(IVD)医疗设备准确性的事实上的标准,因此其概率分布的精确性对于准确的统计推断至关重要。我们展示了ROC曲线下面积(AUC)值的精确概率分布,从而可以轻松获得精确的临界值和p值。由于精确计算的计算量很大,我们展示了一种几何插值方法,该方法在特殊情况下是精确的,但一般情况下是近似的,可大幅提高计算速度。通过开放获取的数据说明了该方法,证明了26种复合生物标志物相对于一种对照设备的优越性。特别是在对多重假设检验进行校正时,传统的渐近近似存在相当大的不精确性,对IVD设备的开发产生不利影响。获得精确p值的能力将使IVD设备的开发更加高效。