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Application of Three-Class ROC Analysis to Task-Based Image Quality Assessment of Simultaneous Dual-Isotope Myocardial Perfusion SPECT (MPS)

机译:三类ROC分析在基于任务的双同位素同时心肌灌注SPECT(MPS)图像质量评估中的应用

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摘要

The diagnosis of cardiac disease using dual-isotope myocardial perfusion SPECT (MPS) is based on the defect status in both stress and rest images, and can be modeled as a three-class task of classifying patients as having no, reversible, or fixed perfusion defects. Simultaneous acquisition protocols for dual-isotope MPS imaging have gained much interest due to their advantages including perfect registration of the 201Tl and 99mTc images in space and time, increased patient comfort, and higher clinical throughput. As a result of simultaneous acquisition, however, crosstalk contamination, where photons emitted by one isotope contribute to the image of the other isotope, degrades image quality. Minimizing the crosstalk is important in obtaining the best possible image quality. One way to minimize the crosstalk is to optimize the injected activity of the two isotopes by considering the three-class nature of the diagnostic problem. To effectively do so, we have previously developed a three-class receiver operating characteristic (ROC) analysis methodology that extends and unifies the decision theoretic, linear discriminant analysis, and psychophysical foundations of binary ROC analysis in a three-class paradigm. In this work, we applied the proposed three-class ROC methodology to the assessment of the image quality of simultaneous dual-isotope MPS imaging techniques and the determination of the optimal injected activity combination. In addition to this application, the rapid development of diagnostic imaging techniques has produced an increasing number of clinical diagnostic tasks that involve not only disease detection, but also disease characterization and are thus multiclass tasks. This paper provides a practical example of the application of the proposed three-class ROC analysis methodology to medical problems.
机译:使用双同位素心肌灌注SPECT(MPS)诊断心脏病是基于压力和静止图像中的缺陷状态,可以建模为三类任务,将患者分为无灌注,可逆灌注或固定灌注缺陷。双同位素MPS成像的同步采集协议由于其优势包括 201 Tl和 99m Tc图像在空间和时间上的完美配准,提高了患者的舒适度而引起了人们的极大兴趣。 ,以及更高的临床通量。但是,由于同时进行采集,串扰污染会降低图像质量,在这种情况下,一个同位素发出的光子会影响另一种同位素的图像。使串扰最小化对于获得最佳图像质量很重要。最小化串扰的一种方法是通过考虑诊断问题的三类性质来优化两种同位素的注入活性。为了有效地做到这一点,我们先前已经开发了三类接收器操作特征(ROC)分析方法,该方法扩展并统一了三类范例中二进制ROC分析的决策理论,线性判别分析和心理物理基础。在这项工作中,我们将提出的三类ROC方法应用于同时双同位素MPS成像技术的图像质量评估和最佳注射活性组合的确定。除了该应用之外,诊断成像技术的迅速发展已经产生了越来越多的临床诊断任务,这些任务不仅涉及疾病检测,而且涉及疾病特征鉴定,因此属于多类任务。本文提供了一个实际的例子,将所提出的三类ROC分析方法应用于医学问题。

著录项

  • 期刊名称 other
  • 作者

    Xin He; Xiyun Song; Eric C. Frey;

  • 作者单位
  • 年(卷),期 -1(27),11
  • 年度 -1
  • 页码 1556–1567
  • 总页数 38
  • 原文格式 PDF
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