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An investigation of multiple time/graphical analysis applied to projection data: theory and validation.

机译:对应用于投影数据的多次时间/图形分析的研究:理论和验证。

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PURPOSE: The determination of tissue time-activity course and pharmokinetics in PET is normally performed by region-of-interest analysis of reconstructed images. However, in some cases, the same analysis may equally well be performed on the data in projections before reconstruction, avoiding the reconstruction of large time sequence data sets. This is especially important in 3D mode. METHOD: We present a theory that shows why multiple time/graphical analysis can be applied equally well to image or projection data. The method is validated using FDG uptake data from five healthy normal volunteers, by applying the technique to determine regional cerebral metabolic rate for glucose (rCMRglu) and the partition coefficient-related parameter P using various time ranges for the analysis. RESULTS: The method is shown to be identical to analysis of image data. Variation with time range of the calculated values for regional cerebral glucose metabolism and the partition coefficient of tissue against plasma is shown to be due to the estimation methodology rather than the choice of analysis on projections or on images. CONCLUSION: The theory presented is shown to be valid for FDG determination of regional cerebral glucose metabolism. The absolute values of the rCMRglu and P are similar to those shown previously.
机译:目的:确定PET中组织时间活动过程和药物动力学的方法通常是通过对重建图像进行感兴趣区域分析来进行的。但是,在某些情况下,重建之前可以对投影中的数据进行相同的分析,从而避免了重建大型时序数据集。这在3D模式下尤其重要。方法:我们提出了一种理论,说明了为什么可以将多次时间/图形分析同样有效地应用于图像或投影数据。该方法通过使用来自五名健康正常志愿者的FDG摄取数据进行验证,方法是应用该技术确定葡萄糖的区域脑代谢率(rCMRglu)和分配系数相关参数P(使用各种时间范围进行分析)。结果:显示该方法与图像数据分析相同。局部脑葡萄糖代谢的计算值的时间范围的变化和组织对血浆的分配系数被证明是由于估算方法,而不是根据对投影或图像的分析选择。结论:所提出的理论被证明对于FDG测定局部脑葡萄糖代谢是有效的。 rCMRglu和P的绝对值与之前显示的相似。

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