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Evaluation of error on parameter estimates in the analysis of receptor studies with positron emission tomography

机译:正电子发射断层扫描在受体研究分析中参数估计的误差评估

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Positron emission tomography dynamic study together with compartment model analysis allows the quantification of radioligand binding to receptor sites in the human brain. In the quantitative analysis, parameter estimate error is affected by noise that depends on the collected count, and the reliability of estimated kinetic parameters is important for assessment of the binding potential. However, evaluation of the reliability for human data is not easy because the true noise level is not precisely known. In this study, we evaluated a method for estimating the reliability of determination of parameters in a region-of-interest analysis of human data by the bootstrap approach. In a simulation study, the mean and variation values estimated by the bootstrap approach agreed with those by each non-bootstrap realization with the simulated time-activity curves. In human data, reasonable values of mean and variation for the estimated binding potential were obtained by these methods with the bootstrap approach. This method is useful for PET quantitative analysis, as it is able to be applied easily to the evaluation of the influence of injection dose and sensitivity of the PET system.
机译:正电子发射断层扫描动态研究以及隔室模型分析可以量化放射性配体与人脑中受体位点的结合。在定量分析中,参数估计误差受噪声的影响,该噪声取决于收集的计数,并且估计的动力学参数的可靠性对于评估结合势很重要。但是,由于无法精确知道真实的噪声水平,因此评估人类数据的可靠性并不容易。在这项研究中,我们评估了一种通过自举方法评估在对人类数据进行关注区域分析中确定参数的可靠性的方法。在仿真研究中,通过自举方法估算的均值和方差值与每个非自举实现的仿真时间-活动曲线的均值和方差值一致。在人类数据中,通过自举方法通过这些方法获得了估计的结合潜力的均值和方差的合理值。该方法可用于PET定量分析,因为它可以轻松地用于评估注射剂量和PET系统灵敏度的影响。

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