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在定量成像中使用的物理品质因数方面,两种分辨率建模PET重建算法的性能比较。

Performance comparison of two resolution modeling PET reconstruction algorithms in terms of physical figures of merit used in quantitative imaging.

作者信息

Matheoud R, Ferrando O, Valzano S, Lizio D, Sacchetti G, Ciarmiello A, Foppiano F, Brambilla M

机构信息

Medical Physics Department, University Hospital "Maggiore della Carità", Novara, Italy.

Medical Physics Department, Ospedale S.Andrea, Asl5 Spezzino, La Spezia, Italy.

出版信息

Phys Med. 2015 Jul;31(5):468-75. doi: 10.1016/j.ejmp.2015.04.011. Epub 2015 Jun 5.

Abstract

PURPOSE

Resolution modeling (RM) of PET systems has been introduced in iterative reconstruction algorithms for oncologic PET. The RM recovers the loss of resolution and reduces the associated partial volume effect. While these methods improved the observer performance, particularly in the detection of small and faint lesions, their impact on quantification accuracy still requires thorough investigation. The aim of this study was to characterize the performances of the RM algorithms under controlled conditions simulating a typical (18)F-FDG oncologic study, using an anthropomorphic phantom and selected physical figures of merit, used for image quantification.

METHODS

Measurements were performed on Biograph HiREZ (B_HiREZ) and Discovery 710 (D_710) PET/CT scanners and reconstructions were performed using the standard iterative reconstructions and the RM algorithms associated to each scanner: TrueX and SharpIR, respectively.

RESULTS

RM determined a significant improvement in contrast recovery for small targets (≤17 mm diameter) only for the D_710 scanner. The maximum standardized uptake value (SUVmax) increased when RM was applied using both scanners. The SUVmax of small targets was on average lower with the B_HiREZ than with the D_710. Sharp IR improved the accuracy of SUVmax determination, whilst TrueX showed an overestimation of SUVmax for sphere dimensions greater than 22 mm. The goodness of fit of adaptive threshold algorithms worsened significantly when RM algorithms were employed for both scanners.

CONCLUSIONS

Differences in general quantitative performance were observed for the PET scanners analyzed. Segmentation of PET images using adaptive threshold algorithms should not be undertaken in conjunction with RM reconstructions.

摘要

目的

PET系统的分辨率建模(RM)已被引入肿瘤PET的迭代重建算法中。RM可恢复分辨率损失并减少相关的部分容积效应。虽然这些方法提高了观察者的性能,尤其是在检测小而模糊的病变方面,但其对定量准确性的影响仍需深入研究。本研究的目的是在模拟典型的(18)F-FDG肿瘤学研究的受控条件下,使用拟人化体模和用于图像定量的选定物理性能指标,来表征RM算法的性能。

方法

在Biograph HiREZ(B_HiREZ)和Discovery 710(D_710)PET/CT扫描仪上进行测量,并使用标准迭代重建以及与每个扫描仪相关的RM算法(分别为TrueX和SharpIR)进行重建。

结果

仅对于D_710扫描仪,RM确定小目标(直径≤17 mm)的对比度恢复有显著改善。使用两种扫描仪应用RM时,最大标准化摄取值(SUVmax)均增加。B_HiREZ的小目标SUVmax平均低于D_710。Sharp IR提高了SUVmax测定的准确性,而对于直径大于22 mm的球体,TrueX显示SUVmax被高估。当两种扫描仪都采用RM算法时,自适应阈值算法的拟合优度显著恶化。

结论

在所分析的PET扫描仪中观察到一般定量性能的差异。不应将使用自适应阈值算法对PET图像进行分割与RM重建结合进行。

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