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动态FDOPA PET/CT对胶质瘤分级的附加价值

Additive Value of Dynamic FDOPA PET/CT for Glioma Grading.

作者信息

Girard Antoine, Le Reste Pierre-Jean, Metais Alice, Chaboub Nibras, Devillers Anne, Saint-Jalmes Hervé, Jeune Florence Le, Palard-Novello Xavier

机构信息

Univ Rennes, CLCC Eugène Marquis, Noyau Gris Centraux EA 4712, Rennes, France.

CHU Rennes, Rennes, France.

出版信息

Front Med (Lausanne). 2021 Jul 9;8:705996. doi: 10.3389/fmed.2021.705996. eCollection 2021.

Abstract

The aim of this study was to assess the value of the FDOPA PET kinetic parameters extracted using full kinetic analysis for tumor grading with neuronavigation-guided biopsies as reference in patients with newly-diagnosed gliomas. Fourteen patients with untreated gliomas were investigated. Twenty minutes of dynamic positron-emission tomography (PET) imaging and a 20-min static image 10 min after injection were reconstructed from a 40-min list-mode acquisition immediately after FDOPA injection. Tumors volume-of-interest (VOI) were generated based on the MRI-guided brain biopsies. Static parameters (TBRmax and TBRmean) and kinetic parameters [K1 and k2 using full kinetic analysis with the reversible single-tissue compartment model with blood volume parameter and the time-to-peak (TTP)] were extracted. Performances of each parameter for differentiating low-grade gliomas (LGG) from high-grade gliomas (HGG) were evaluated by receiver-operating characteristic analyses (area under the curve; AUC). Thirty-two tumoral VOI were analyzed. K1, k2, and TTP were significantly higher for HGG than for LGG (median K1-value = 0.124 vs. 0.074 ml/ccm/min, = 0.025, median k2-value = 0.093 vs. 0.063 min, = 0.025, and median TTP-value = 10.0 vs. 15.0 min, = 0.025). No significant difference was observed for the static parameters. The AUC for the kinetic parameters was higher than the AUC for the static parameters (respectively, AUC = 0.787, AUC = 0.785, AUC = 0.775, AUC = 0.551, AUC = 0.575), significantly compared to TBRmax (respectively, = 0.001 for K1, = 0.031 for k2, and = 0.029 for TTP). The present study suggests an additive value of FDOPA PET/CT kinetic parameters for newly-diagnosed gliomas grading.

摘要

本研究的目的是评估在新诊断的胶质瘤患者中,使用全动力学分析提取的FDOPA PET动力学参数在以神经导航引导活检为参考进行肿瘤分级方面的价值。对14例未经治疗的胶质瘤患者进行了研究。在注射FDOPA后立即从40分钟的列表模式采集中重建20分钟的动态正电子发射断层扫描(PET)图像以及注射后10分钟的20分钟静态图像。基于MRI引导的脑活检生成肿瘤感兴趣体积(VOI)。提取静态参数(TBRmax和TBRmean)和动力学参数[使用具有血容量参数的可逆单组织隔室模型和达峰时间(TTP)的全动力学分析得出的K1和k2]。通过受试者操作特征分析(曲线下面积;AUC)评估每个参数区分低级别胶质瘤(LGG)和高级别胶质瘤(HGG)的性能。分析了32个肿瘤VOI。HGG的K1、k2和TTP显著高于LGG(K1值中位数 = 0.124对0.074 ml/ccm/min,P = 0.025,k2值中位数 = 0.093对0.063 min,P = 0.025,TTP值中位数 = 10.0对15.0 min,P = 0.025)。静态参数未观察到显著差异。动力学参数的AUC高于静态参数的AUC(分别为AUC = 0.787、AUC = 0.785、AUC = 0.775、AUC = 0.551、AUC = 0.575),与TBRmax相比有显著差异(分别为K1的P = 0.001、k2的P = 0.031和TTP的P = 0.029)。本研究表明FDOPA PET/CT动力学参数对新诊断的胶质瘤分级具有附加价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18f9/8299331/3581962566f1/fmed-08-705996-g0001.jpg

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