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The use of alternative forms of graphical analysis to balance bias and precision in PET images

机译:使用替代形式的图形分析来平衡PET图像中的偏差和精度

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摘要

Graphical analysis (GA) is an efficient method for estimating total tissue distribution volume (VT) from positron emission tomography (PET) uptake data. The original GA produces a negative bias in VT in the presence of noise. Estimates of VT using other GA forms have less bias but less precision. Here, we show how the bias terms are related between the GA methods and how using an instrumental variable (IV) can also reduce bias. Results are based on simulations of a two-compartment model with VT's ranging from 10.5 to 64 mL/cm3 and from PET image data with the tracer [11C]DASB ([11C]-3-amino-4-(2-dimethylaminomethyl-phenylsulfanyl) benzonitrile). Four estimates of VT (or distribution volume ratio (DVR) using a reference tissue) can be easily computed from different formulations of GA including the IV. As noise affects the estimates from all four differently, they generally do not provide the same estimates. By taking the median value of the four estimates, we can decrease the bias and reduce the effect of large values contributing to noisy images. The variance of the four estimates can serve as a guide to the reliability of the median estimate. This may provide a general method for the generation of parametric images with little bias and good precision.
机译:图形分析(GA)是一种从正电子发射断层扫描(PET)摄取数据估算总组织分布体积(VT)的有效方法。原始GA在存在噪声的情况下在VT中产生负偏差。使用其他GA形式的VT估算值偏差较小,但精度较低。在这里,我们展示了GA方法之间的偏倚项之间的关系,以及使用工具变量(IV)如何也可以减少偏倚。结果基于两室模型的模拟,VT的范围为10.5至64 mL / cm 3 ,并使用示踪剂[ 11 C] DASB从PET图像数据( [ 11 C] -3-氨基-4-(2-二甲基氨基甲基-苯基硫烷基)苄腈)。 VT的四个估计值(或使用参考组织的分布体积比(DVR))可以很容易地根据不同的GA配方(包括IV)计算得出。由于噪声对所有四个估计的影响不同,因此它们通常不会提供相同的估计。通过取这四个估计值的中值,我们可以减少偏差并减少大值影响噪点图像的影响。四个估计的方差可以作为中值估计可靠性的指南。这可以提供用于生成参数图像且偏差少且精度高的通用方法。

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