论文标题

使用恒星对象的小波数据包分解中的节点对X射线成像系统的可检测性评估

Detectability assessment of an x-ray imaging system using the nodes in a wavelet packet decomposition of a star-bar object

论文作者

González-López, Antonio

论文摘要

目的:使用数据的线性转换允许在大量信号上研究成像系统的可检测性。适当的转换将产生一组具有不同对比度和不同频率内容的信号。在这项工作中,探索了两种策略,以提供基于任务的测试,以实现X射线成像系统的可检测性。方法:以不同的入口空气孔和不同的光束质量获取新的恒星幻影的图像。然后,将小波数据包应用于系统的输入和输出后,应用了常规的统计决策理论来确定转换导致的不同图像或节点的可检测性。在空间结构域中的数据中应用了一个非优先匹配的匹配滤波器,并在每个节点中进行了ROC分析。结果:分析产生的AUC图列出了不同剂量和梁质量的整个2D频率空间下ROC曲线下的面积。同样,通过径向平均AUC映射获得的AUC曲线允许将不同技术的可检测性作为仅一个数字中频率的函数进行比较。获得的结果显示,分析的每种光束质量以不同剂量获取的图像之间的差异。结论:将恒星杆作为测试对象,小波数据包作为线性转换,ROC分析将基于任务的测试进行成像系统的可检测性性能。这项工作中提出的测试允许量化系统可检测性,这是信号的2D频率间隔的函数。它还允许计算不同采集技术和光束质量之间的可检测性差异。

Purpose: Using linear transformation of the data allows studying detectability of an imaging system on a large number of signals. An appropriate transformation will produce a set of signals with different contrast and different frequency contents. In this work both strategies are explored to present a task-based test for the detectability of an x-ray imaging system. Methods: Images of a new star-bar phantom are acquired with different entrance air KERMA and with different beam qualities. Then, after a wavelet packet is applied to both input and output of the system, conventional statistical decision theory is applied to determine detectability on the different images or nodes resulting from the transformation. A non-prewhitening matching filter is applied to the data in the spatial domain, and ROC analysis is carried out in each of the nodes. Results: AUC maps resulting from the analysis present the area under the ROC curve over the whole 2D frequency space for the different doses and beam qualities. Also, AUC curves, obtained by radially averaging the AUC maps allows comparing detectability of the different techniques as a function of the frequency in one only figure. The results obtained show differences between images acquired with different doses for each of the beam qualities analyzed. Conclusions: Combining a star-bar as test object, a wavelet packet as linear transformation, and ROC analysis results in an appropriate task-based test for detectability performance of an imaging system. The test presented in this work allows quantification of system detectability as a function of the 2D frequency interval of the signal to detect. It also allows calculation of detectability differences between different acquisition techniques and beam qualities.

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