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Optimization of PET/CT image quality using the GE 'Sharp IR' point-spread function reconstruction algorithm

机译:使用GE“SHARP IR”点扩展功能重建算法优化PET / CT图像质量

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ObjectiveThe objective of this study was to quantify any improvement with the GE Sharp IR' point-spread function (PSF) reconstruction algorithm in addition to ordered subsets expectation maximum (OSEM) and time-of-flight (TOF) reconstruction algorithms and establish the optimum parameters to be used in clinical studies.Materials and methodsWe conducted a range of experiments using the National Electrical Manufacturers Association image quality phantom filled with a 4:1 signal-to-background ratio. We scanned the phantom using the GE Discovery 690 PET/CT scanner. We varied iteration number and Gaussian filtration. Results were compared for OSEM, OSEM+TOF and OSEM+TOF+PSF reconstructions. A sample of 15 whole-body fluorine-18-fluorodeoxyglucose were reconstructed with OSEM+TOF and OSEM+TOF+PSF using a selection of optimum reconstruction parameters determined in phantom studies. Clinicians qualitatively ranked their preferred images to choose optimum parameters.ResultsThe addition of PSF improved signal-to-noise ratios (SNRs), contrast, hot contrast recovery coefficients and noise over OSEM and OSEM+TOF reconstruction algorithms. SNRs were the highest at two iterations and with 0 or 2mm filters with OSEM+TOF+PSF reconstruction in all phantom studies. Clinicians generally favoured OSEM+TOF+PSF reconstruction with three iterations and a 2mm filter.ConclusionPSF reconstruction significantly improved image quality for both clinical and phantom studies. We recommended the optimum reconstruction parameters using three iterations, 24 subsets and a 2mm filter, which improved SNRs by up to 28.8% for small lesions (P<0.05).
机译:本研究的客观目的是通过有序的子集预期最大(OSEM)和飞行时间(TOF)重建算法以及建立最佳,量化GE Sharp IR'点扩展函数(PSF)重建算法的任何改进。在临床研究中使用的参数。材料和方法采用全国电气制造商关联图像质量幻像进行了一系列实验,填充了4:1信号到背景比。我们使用GE Discovery 690 PET / CT扫描仪扫描幻影。我们改变了迭代号和高斯过滤。比较了OSEM,OSEM + TOF和OSEM + TOF + PSF重建的结果。使用在幻像研究中确定的选择最佳重建参数,用OSEM + TOF和OSEM + TOF + PSF重建15个全体氟-18-氟脱氧氧基葡萄糖的样品。临床医生定性排名其优选的图像,以选择最佳参数来选择PSF的加法改进的信噪比(SNR),对比度,热对比度恢复系数和OSEM和OSEM + TOF重建算法上的对比度,热对比度恢复系数和噪声。 SNR在两个迭代中最高,并且在所有幻影研究中具有0或2毫米的滤波器+ TOF + PSF重建。临床医生通常赞成OSEM + TOF + PSF重建,具有三个迭代和2mm过滤器.ConclusionpsF重建,显着提高了临床和幻影研究的图像质量。我们建议使用三个迭代,24个子集和2mm过滤器的最佳重建参数,其小病灶的SNR可提高28.8%(P <0.05)。

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