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首页> 外文期刊>European Journal of Nuclear Medicine and Molecular Imaging >Clinical evaluation of 2D versus 3D whole-body PET image quality using a dedicated BGO PET scanner.
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Clinical evaluation of 2D versus 3D whole-body PET image quality using a dedicated BGO PET scanner.

机译:使用专用的BGO PET扫描仪对2D与3D全身PET图像质量进行临床评估。

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PURPOSE: Three-dimensional positron emission tomography (3D PET) results in higher system sensitivity, with an associated increase in the detection of scatter and random coincidences. The objective of this work was to compare, from a clinical perspective, 3D and two-dimensional (2D) acquisitions in terms of whole-body (WB) PET image quality with a dedicated BGO PET system.METHODS: 2D and 3D WB emission acquisitions were carried out in 70 patients. Variable acquisition parameters in terms of time of emission acquisition per axial field of view (aFOV) and slice overlap between sequential aFOVs were used during the 3D acquisitions. 3D and 2D images were reconstructed using FORE+WLS and OSEM respectively. Scatter correction was performed by convolution subtraction and a model-based scatter correction in 2D and 3D respectively. All WB images were attenuation corrected using segmented transmission scans. Images were blindly assessed by three observers for the presence of artefacts, confidence in lesion detection and overall image quality using a scoring system.RESULTS: Statistically significant differences between 2D and 3D image quality were only obtained for 3D emission acquisitions of 3 min. No statistically significant differences were observed for image artefacts or lesion detectability scores. Image quality correlated significantly with patient weight for both modes of operation. Finally, no differences were seen in image artefact scores for the different axial slice overlaps considered, suggesting the use of five slice overlaps in 3D WB acquisitions.CONCLUSION: 3D WB imaging using a dedicated BGO-based PET scanner offers similar image quality to that obtained in 2D considering similar overall times of acquisitions.
机译:目的:三维正电子发射断层扫描(3D PET)导致更高的系统灵敏度,并伴随着散射和随机巧合检测的增加。这项工作的目的是从临床角度比较使用专用BGO PET系统获得的全身(WB)PET图像质量的3D和二维(2D)采集方法:2D和3D WB发射采集进行了70例患者。在3D采集期间,使用了每个轴向视场的发射采集时间(aFOV)和顺序aFOV之间的切片重叠的可变采集参数。分别使用FORE + WLS和OSEM重建3D和2D图像。通过分别在2D和3D中进行卷积减法和基于模型的散射校正来执行散射校正。使用分段透射扫描对所有WB图像进行了衰减校正。使用评分系统,由三名观察者盲目评估图像的伪影,对病变的置信度和整体图像质量。结果:仅在3分钟的3D发射采集中,才获得2D和3D图像质量之间的统计学显着差异。对于图像伪像或病变可检测性得分,未观察到统计学上的显着差异。两种操作模式的图像质量均与患者体重显着相关。最后,对于所考虑的不同轴向切片重叠,图像伪影得分没有差异,表明在3D WB采集中使用了五个切片重叠。结论:使用专用的基于BGO的PET扫描仪进行的3D WB成像可提供与获得的图像质量相似的图像质量在2D模式下,考虑到类似的总体收购时间。

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