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首页> 外文期刊>The Journal of Nuclear Medicine >Evaluation of Penalized-Likelihood Estimation Reconstruction on a Digital Time-of-Flight PET/CT Scanner for 18F-FDG Whole-Body Examinations
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Evaluation of Penalized-Likelihood Estimation Reconstruction on a Digital Time-of-Flight PET/CT Scanner for 18F-FDG Whole-Body Examinations

机译:在18F-FDG全身检查的数字飞行时间PET / CT扫描仪上评估刑罚似然估计重建

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The resolution and quantitative accuracy of PET are highly influenced by the reconstruction method. Penalized-likelihood estimation algorithms allow for fully convergent iterative reconstruction, generating a higher image contrast than ordered-subsets expectation maximization (OSEM) while limiting noise. In this study, a type of penalized reconstruction known as block-sequential regularized expectation maximization (BSREM) was compared with time-of-flight OSEM (TOF OSEM). Various strengths of noise penalization factor β were tested along with various acquisition durations and transaxial fields of view (FOVs) with the aim of evaluating the performance and clinical use of BSREM for 18F-FDG PET/CT, both quantitatively and in a qualitative visual evaluation. Methods: Eleven clinical whole-body 18F-FDG PET/CT examinations acquired on a digital TOF PET/CT scanner were included. The data were reconstructed using BSREM with point-spread function recovery and β-factors of 133, 267, 400, and 533—and using TOF OSEM with point-spread function—for various acquisition times per bed position and various FOVs. Noise level, signal-to-noise ratio (SNR), signal-to-background ratio (SBR), and SUV were analyzed. A masked evaluation of visual image quality, rating several aspects, was performed by 2 nuclear medicine physicians to complement the analysis. Results: The lowest levels of noise were reached with the highest β-factor, resulting in the highest SNR, which in turn resulted in the lowest SBR. A β-factor of 400 gave noise equivalent to TOF OSEM but produced a significant increase in SUVmax (11%), SNR (22%), and SBR (12%). BSREM with a β-factor of 533 at a decreased acquisition duration (2 min/bed position) was comparable to TOF OSEM at a full acquisition duration (3 min/bed position). Reconstructed FOV had an impact on BSREM outcome measures; SNR increased and SBR decreased when FOV was shifted from 70 to 50 cm. The evaluation of visual image quality resulted in similar scores for reconstructions, although a β-factor of 400 obtained the highest mean whereas a β-factor of 267 was ranked best in overall image quality, contrast, sharpness, and tumor detectability. Conclusion: In comparison with TOF OSEM, penalized BSREM reconstruction resulted in an increased tumor SUVmax and an improved SNR and SBR at a matched level of noise. BSREM allowed for a shorter acquisition than TOF OSEM, with equal image quality.
机译:PET的分辨率和定量精度受重建方法的影响很大。惩罚似然估计算法允许完全收敛的迭代重建,在限制噪声的同时,生成比有序子集期望最大化(OSEM)更高的图像对比度。在这项研究中,将一种称为块顺序正则化期望最大化(BSREM)的惩罚重构与飞行时间OSEM(TOF OSEM)进行了比较。测试了各种强度的噪声惩罚因子β以及各种采集持续时间和跨轴视场(FOV),旨在定量和定性地评估18F-FDG PET / CT的BSREM的性能和临床应用。方法:包括在数字TOF PET / CT扫描仪上进行的11项临床全身18F-FDG PET / CT检查。使用具有点扩展功能恢复和β因子133、267、400和533的BSREM以及具有点扩展功能的TOF OSEM,对每个床位的各种采集时间和各种FOV重建了数据。分析了噪声水平,信噪比(SNR),信噪比(SBR)和SUV。两名核医学医师对视觉图像质量进行了蒙版评估,对评估的几个方面进行了评估,以补充分析结果。结果:噪声水平最低,β因子最高,SNR最高,SBR最低。 β因子为400时,噪声与TOF OSEM相当,但SUVmax(11%),SNR(22%)和SBR(12%)显着提高。在减少的采集持续时间(2分钟/床位)下具有β因子533的BSREM与在完整采集持续时间(3分钟/床位)下的TOF OSEM相当。重建的FOV对BSREM结果指标产生了影响;当FOV从70 cm移至50 cm时,SNR增大,SBR减小。视觉图像质量的评估获得了相似的重建分数,尽管在整体图像质量,对比度,清晰度和肿瘤可检测性方面,β因子为400的平均值最高,而β因子267的评分最高。结论:与TOF OSEM相比,受罚的BSREM重建在匹配的噪声水平下增加了肿瘤SUVmax,并改善了SNR和SBR。 BSREM可以实现比TOF OSEM短的采集,并且图像质量相同。

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