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比较不同运动校正技术在乳腺癌患者动态 FDG-PET/CT 研究中的应用。

Comparison of different motion correction techniques for dynamic FDG-PET/CT studies in breast cancer patients.

机构信息

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出版信息

Q J Nucl Med Mol Imaging. 2020 Dec;64(4):406-413. doi: 10.23736/S1824-4785.19.03114-5. Epub 2019 Feb 21.

Abstract

BACKGROUND

Our aim was to evaluate interchangeability of different motion correction methods in the assessment of dynamic FDG-PET/CT studies in breast cancer patients as well as to assess the interrater reliability of these methods.

METHODS

In our prospective study we included patients with malignant breast tumours. Dynamic PET acquisition lasted for 60 minutes after tracer (FDG) injection. Every study was assessed by the same two experienced observers. We assessed plasma activity noninvasively. In case of the primary tumour VOIs we applied two different approaches to correct motion artefacts: method I) frame-by-frame manual motion correction; method II) frame-by-frame semi-automatic software-based motion correction. FDG two-compartment kinetic modelling was applied to assess K1, k2, k3 rate coefficients and to calculate Ki (tracer flux constant) and MRFDG (FDG metabolic rate).

RESULTS

Thirty-five lesions detected during 34 dynamic studies were included in this current analysis. Interrater reliability of both applied motion correction methods proved to be excellent (ICC=0.89-0.99), except Ki measured by method I (ICC=0.66). Bland-Altman analysis revealed that method II resulted in significantly lower values than method I regarding k3 and Ki in case of both observers, and regarding MRFDG in one of the observers. In case of K1 and k2 the two methods were in good agreement.

CONCLUSIONS

Both applied methods proved to be reproducible and reliable, especially method II, where every measured kinetic parameter showed excellent interrater reliability. Different approaches of motion correction could have a significant effect on the results of the kinetic modelling; therefore careful selection of the most reliable method is advised.

摘要

背景

我们的目的是评估不同运动校正方法在乳腺癌患者动态 FDG-PET/CT 研究评估中的可互换性,并评估这些方法的观察者间可靠性。

方法

在我们的前瞻性研究中,我们纳入了患有恶性乳腺肿瘤的患者。在示踪剂(FDG)注射后,进行了 60 分钟的动态 PET 采集。每一项研究均由两名经验丰富的观察者进行评估。我们通过非侵入性方法评估血浆活性。对于原发性肿瘤 ROI,我们应用了两种不同的方法来校正运动伪影:方法 I)逐帧手动运动校正;方法 II)逐帧半自动软件基础运动校正。应用 FDG 两室动力学模型评估 K1、k2、k3速率系数,并计算 Ki(示踪剂通量常数)和 MRFDG(FDG 代谢率)。

结果

本研究共纳入了 34 项动态研究中的 35 个病灶。两种应用的运动校正方法的观察者间可靠性均被证明是极好的(ICC=0.89-0.99),除了方法 I 测量的 Ki(ICC=0.66)。Bland-Altman 分析显示,在两位观察者中,方法 II 导致 k3和 Ki的值显著低于方法 I,而在一位观察者中,MRFDG 也存在同样情况。对于 K1和 k2,两种方法具有良好的一致性。

结论

两种应用的方法均被证明是可重复且可靠的,特别是方法 II,其中每个测量的动力学参数均表现出极好的观察者间可靠性。运动校正的不同方法可能会对动力学建模的结果产生重大影响,因此建议谨慎选择最可靠的方法。

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