首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Assessment of input function distortions on kinetic model parameters in simulated dynamic Rb-82 PET perfusion studies
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Assessment of input function distortions on kinetic model parameters in simulated dynamic Rb-82 PET perfusion studies

机译:在模拟的动态Rb-82 PET灌注研究中评估动力学模型参数上的输入函数失真

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Cardiac (82)rubidium dynamic PET studies allow quantifying absolute myocardial perfusion by using tracer kinetic modeling. Here, the accurate measurement of the input function, i.e. the tracer concentration in blood plasma, is a major challenge. This measurement is deteriorated by inappropriate temporal sampling, spillover, etc. Such effects may influence the measured input peak value and the measured blood pool clearance. The aim of our study is to evaluate the effect of input function distortions on the myocardial perfusion as estimated by the model. To this end, we simulate noise-free myocardium time activity curves (TACs) with a two-compartment kinetic model. The input function to the model is a generic analytical function. Distortions of this function have been introduced by varying its parameters. Using the distorted input function, the compartment model has been fitted to the simulated myocardium TAC. This analysis has been performed for various sets of model parameters covering a physiologically relevant range. The evaluation shows that +/- 10% error in the input peak value can easily lead to +/- 10-25% error in the model parameter K-1, which relates to myocardial perfusion. Variations in the input function tail are generally less relevant. We conclude that an accurate estimation especially of the plasma input peak is crucial for a reliable kinetic analysis and blood flow estimation. (c) 2006 Elsevier B.V. All rights reserved.
机译:心脏(82)dynamic动态PET研究可通过使用示踪剂动力学模型量化绝对心肌灌注。在此,对输入功能即血浆中示踪剂浓度的精确测量是主要的挑战。由于不适当的时间采样,溢出等原因,此测量会变差。此类影响可能会影响测量的输入峰值和测量的血池清除率。我们研究的目的是评估模型估计的输入功能失真对心肌灌注的影响。为此,我们使用两室动力学模型模拟无噪音的心肌时间活动曲线(TAC)。模型的输入函数是通用分析函数。通过更改其功能已引入了此功能的失真。使用变形的输入功能,将隔室模型安装到模拟心肌TAC。已针对涵盖生理相关范围的各种模型参数集执行了此分析。评估表明,输入峰值的+/- 10%误差很容易导致模型参数K-1的+/- 10-25%误差,这与心肌灌注有关。输入函数尾部的变化通常不那么相关。我们得出结论,准确估计尤其是血浆输入峰对于可靠的动力学分析和血流估计至关重要。 (c)2006 Elsevier B.V.保留所有权利。

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