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Objective evaluation of reconstruction methods for quantitative SPECT imaging in the absence of ground truth

机译:缺乏地面真实性的定量SPECT成像重建方法的客观评估

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摘要

Quantitative single-photon emission computed tomography (SPECT) imaging is emerging as an important tool in clinical studies and biomedical research. There is thus a need for optimization and evaluation of systems and algorithms that are being developed for quantitative SPECT imaging. An appropriate objective method to evaluate these systems is by comparing their performance in the end task that is required in quantitative SPECT imaging, such as estimating the mean activity concentration in a volume of interest (VOI) in a patient image. This objective evaluation can be performed if the true value of the estimated parameter is known, i.e. we have a gold standard. However, very rarely is this gold standard known in human studies. Thus, no-gold-standard techniques to optimize and evaluate systems and algorithms in the absence of gold standard are required. In this work, we developed a no-gold-standard technique to objectively evaluate reconstruction methods used in quantitative SPECT when the parameter to be estimated is the mean activity concentration in a VOI. We studied the performance of the technique with realistic simulated image data generated from an object database consisting of five phantom anatomies with all possible combinations of five sets of organ uptakes, where each anatomy consisted of eight different organ VOIs. Results indicate that the method provided accurate ranking of the reconstruction methods. We also demonstrated the application of consistency checks to test the no-gold-standard output.
机译:定量单光子发射计算机断层扫描(SPECT)成像正在成为临床研究和生物医学研究中的重要工具。因此,需要优化和评估正在开发的用于定量SPECT成像的系统和算法。评估这些系统的合适客观方法是比较定量SPECT成像所需的最终任务性能,例如估计患者图像中感兴趣体积(VOI)的平均活性浓度。如果估计参数的真实值是已知的,即我们具有黄金标准,则可以执行此客观评估。但是,在人类研究中很少有人知道这种黄金标准。因此,需要在没有黄金标准的情况下优化和评估系统和算法的无黄金标准技术。在这项工作中,我们开发了一种无金标准技术来客观评估定量SPECT中使用的重建方法,前提是要估计的参数是VOI中的平均活性浓度。我们研究了该技术的性能,该技术是从对象数据库中生成的真实模拟图像数据进行研究的,该对象数据库由五个幻像解剖结构以及五组器官摄取的所有可能组合组成,其中每个解剖结构均由八个不同的器官VOI组成。结果表明该方法提供了重建方法的准确排名。我们还演示了一致性检查在测试无金标准输出中的应用。

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