Ding Yu-Shin, Chen Bang-Bin, Glielmi Christopher, Friedman Kent, Devinsky Orrin
Department of Radiology, New York University School of Medicin New York, NY, USA ; Department of Psychiatry, New York University School of Medicin New York, NY, USA.
Medical College and Hospital, National Taiwan University Taipei, Taiwan.
Am J Nucl Med Mol Imaging. 2014 Aug 15;4(5):459-70. eCollection 2014.
Integrated PET/MR with simultaneous acquisition may improve the identification of pathologic findings in patients. This pilot study evaluated metabolic activity differences between epilepsy patients and healthy controls and directly correlated FDG uptake with MR regional abnormality. Epilepsy patients (n=11) and controls (n=6) were imaged on a whole-body simultaneous PET/MR scanner. After FDG injection, simultaneous images were acquired for 60 minutes. Statistical analyses on SUV values (over 117 brain regions, including left and right, for 96 cortical and 21 subcortical regions) derived from three normalization methods, by individual subject's mean cortical, white matter or global brain, were compared between groups. The asymmetry was compared. T2, T1 and PET co-registered images were also used for lesion detection and correlation of PET and MR regional abnormality. Left and right postcentral gyri were found to be consistently hypermetabolic regions, while right temporal pole and planum polare were consistently hypometabolic regions by all three normalization methods. Using the asymmetry index (AI > 10% or SUV ratios > 1.2), more metabolic asymmetry regions were detected in patients than in controls, with 96.2% agreement. The presence of hippocampal abnormalities or cortical tubers detected via T2 FLAIR in patients correlated well with the hypometabolism detected via FDG-PET. Our results showed specific patterns of metabolic abnormality and asymmetry over 117 brain regions in epilepsy patients, as compared to controls, suggest that simultaneous PET/MR imaging provides a useful tool to help understand etiopathogenesis and localize seizure foci.
同时采集的一体化PET/MR可能会改善患者病理结果的识别。这项前瞻性研究评估了癫痫患者与健康对照者之间的代谢活性差异,并将FDG摄取与MR区域异常直接关联。癫痫患者(n = 11)和对照者(n = 6)在全身同时采集PET/MR扫描仪上成像。注射FDG后,同时采集60分钟的图像。对源自三种归一化方法(按个体受试者的平均皮质、白质或全脑)的SUV值(在117个脑区,包括左右脑区,96个皮质区和21个皮质下区)进行统计分析,并在组间进行比较。比较了不对称性。T2、T1和PET共配准图像也用于病变检测以及PET与MR区域异常的相关性分析。通过所有三种归一化方法均发现,左右中央后回始终是高代谢区域,而右侧颞极和颞平面始终是低代谢区域。使用不对称指数(AI> 10%或SUV比率> 1.2),在患者中检测到的代谢不对称区域比对照者更多,一致性为96.2%。通过T2 FLAIR在患者中检测到的海马异常或皮质结节的存在与通过FDG-PET检测到的低代谢密切相关。我们的结果显示,与对照者相比,癫痫患者在117个脑区存在特定的代谢异常和不对称模式,这表明同时进行PET/MR成像为帮助理解病因发病机制和定位癫痫病灶提供了一种有用的工具。