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移动目标对3D和4D正电子发射断层显像(PET)成像测量准确性的影响——一项体模研究

Impact of moving target on measurement accuracy in 3D and 4D PET imaging-a phantom study.

作者信息

Cui Yunfeng, Bowsher James, Cai Jing, Yin Fang-Fang

机构信息

Department of Radiation Oncology, Duke University Medical Center, Durham, North Carolina.

出版信息

Adv Radiat Oncol. 2016 Dec 10;2(1):94-100. doi: 10.1016/j.adro.2016.12.002. eCollection 2017 Jan-Mar.

Abstract

PURPOSE

The purpose of this study was to evaluate the impact of tumor motion on maximum standardized uptake value (SUV) and metabolic tumor volume (MTV) measurements in both 3-dimensional and respiratory-correlated, 4-dimensional positron emission tomography (PET) imaging. We also evaluated the effect of implementing different attenuation correction methods in 4-dimensional PET image reconstruction on SUV and MTV.

METHODS AND MATERIALS

An anthropomorphic thorax phantom with a spherical ball as a surrogate for a tumor was used. Different types of motion were imposed on the ball to mimic a patient's breathing motion. Three-dimensional PET imaging of the phantom without tumor motion was performed and used as the reference. The ball was then set in motion with different breathing motion traces and imaged with both 3- and 4-dimensional PET methods. The clinical 4-dimensional PET imaging protocol was modified so that 3 different types of attenuation correction images were used for reconstructions: the same free-breathing computed tomography (CT) for all PET phases, the same average intensity projection CT for all PET phases, and 4-dimensional CT for phase-matched attenuation correction. Tumor SUV and MTV values that were measured from the moving phantom were compared with the reference values.

RESULTS

SUV that was measured in 3-dimensional PET imaging was different from the reference value by 20.4% on average for the motions that were investigated; this difference decreased to 2.6% with 4-dimensional PET imaging. The measurement of MTV in 4-dimensional PET also showed a similar magnitude of reduction of deviation compared with 3-dimensional PET. Four-dimensional PET with use of phase-matched 4-dimensional CT for attenuation correction showed less variation in SUV and MTV among phases compared with 4-dimensional PET with free-breathing CT or average intensity projection CT for attenuation correction.

CONCLUSIONS

Four-dimensional PET imaging reduces the impact of motion on measured SUV and MTV when compared with 3-dimensional PET imaging. Clinical 4-dimensional PET imaging protocols should consider phase-matched 4-dimensional CT imaging for attenuation correction to achieve more accurate measurements.

摘要

目的

本研究旨在评估肿瘤运动对三维及呼吸相关的四维正电子发射断层扫描(PET)成像中最大标准化摄取值(SUV)和代谢肿瘤体积(MTV)测量的影响。我们还评估了在四维PET图像重建中采用不同衰减校正方法对SUV和MTV的影响。

方法与材料

使用一个带有球形球作为肿瘤替代物的人体胸部模型。对球施加不同类型的运动以模拟患者的呼吸运动。对无肿瘤运动的模型进行三维PET成像,并将其用作参考。然后使球以不同的呼吸运动轨迹运动,并使用三维和四维PET方法进行成像。修改临床四维PET成像方案,以便使用3种不同类型的衰减校正图像进行重建:所有PET相位均使用相同的自由呼吸计算机断层扫描(CT),所有PET相位均使用相同的平均强度投影CT,以及用于相位匹配衰减校正的四维CT。将从运动模型中测量的肿瘤SUV和MTV值与参考值进行比较。

结果

在所研究的运动中,三维PET成像测量的SUV与参考值平均相差20.4%;而四维PET成像时,这一差异降至2.6%。与三维PET相比,四维PET中MTV的测量也显示出偏差减小的幅度相似。与使用自由呼吸CT或平均强度投影CT进行衰减校正的四维PET相比,使用相位匹配的四维CT进行衰减校正的四维PET在各相位间SUV和MTV的变化较小。

结论

与三维PET成像相比,四维PET成像减少了运动对测量的SUV和MTV的影响。临床四维PET成像方案应考虑使用相位匹配的四维CT成像进行衰减校正,以实现更准确的测量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4bd5/5514228/aad47e299e77/gr1.jpg

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