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A comparison of planar versus volumetric numerical observers for detection task performance in whole-body PET imaging

机译:平面和体积数值观察器在全身PET成像中检测任务性能的比较

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The goal of this project is to determine if there is a difference between planar and volumetric numerical observers. The motivation comes from the use of a volumetric (3D) display of image data (i.e. three orthogonal views through a volume image) to assess whole-body PET images in most, if not all, clinical PET centers. Studies of correlations between numerical observers and human observers (e.g. using receiver operating characteristic (ROC) detection analysis), however, typically use a planar (2D) display and analysis methodology. For images where axial noise correlations exist, Wells et al. [IEEE-TNS, 47:037-1044, 2000] have shown significant differences between single-slice and multi-slice ROC studies, implying that ROC-type studies utilizing a volumetric image display will also yield different results from a single or multi-slice image displays. In particular, planar implementations of the non-prewhitening matched filter (NPWMF) and the channelized Hotelling observer (CHO) have been extensively investigated as surrogates for measuring human detection task performance. To determine if there is a difference between planar and volumetric numerical observers, we analyzed the behavior of 2D and 3D implementations of the NPWMF and CHO numerical observers with multiple realizations of images with noise properties similar to those of whole-body PET oncology imaging. Initial results indicate that there is a significant difference increase in SNR or delectability of volumetric numerical observers relative to planar observers. This implies that volumetric and planar numerical observers may have different strengths of correlation with human observer performance, and that these correlations should be determined prior to using numerical observers to optimize algorithm or protocol performance for whole-body PET imaging.
机译:该项目的目标是确定平面和体积数值观测器之间是否存在差异。动机来自使用图像数据的体积(3D)显示(即通过体积图像的三个正交视图)来评估大多数(如果不是全部)临床PET中心的全身PET图像。然而,数值观察者和人类观察者之间的相关性研究(例如,使用接收机工作特性(ROC)检测分析)通常使用平面(2D)显示和分析方法。对于存在轴向噪声相关性的图像,Wells等人。 [IEEE-TNS,47:037-1044,2000]显示了单切片和多层ROC研究之间的显着差异,这意味着利用体积图像显示的ROC类型研究也会从单个或多个ROC研究中产生不同的结果。切片图像显示。特别是,非预白匹配滤波器(NPWMF)和信道化的Hotelling观测器(CHO)的平面实现已作为用于测量人类检测任务性能的替代方法进行了广泛研究。为了确定平面和体积数字观测器之间是否存在差异,我们分析了NPWMF和CHO数值观测器的2D和3D实现方式的行为,该实现方式具有多种图像实现方式,这些图像的噪声特性类似于全身PET肿瘤学成像的噪声特性。初步结果表明,相对于平面观测器,体积数值观测器的SNR或可偏转性有显着差异。这意味着体积和平面数值观测器可能具有与人类观测器性能相关的不同强度,并且应该在使用数值观测器优化全身PET成像的算法或协议性能之前确定这些相关性。

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