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使用氟代脱氧葡萄糖正电子发射断层扫描/磁共振成像对颞叶外非病变性癫痫进行绝对定量分析的效用

Utility of Absolute Quantification in Non-lesional Extratemporal Lobe Epilepsy Using FDG PET/MR Imaging.

作者信息

Traub-Weidinger Tatjana, Muzik Otto, Sundar Lalith Kumar Shiyam, Aull-Watschinger Susanne, Beyer Thomas, Hacker Marcus, Hahn Andreas, Kasprian Gregor, Klebermass Eva-Maria, Lanzenberger Rupert, Mitterhauser Markus, Pilz Magdalena, Rausch Ivo, Rischka Lucas, Wadsak Wolfgang, Pataraia Ekaterina

机构信息

Department of Biomedical Imaging and Image-Guided Therapy, Medical University of Vienna, Vienna, Austria.

Department of Pediatrics, The Detroit Medical Center, Children's Hospital of Michigan, Wayne State University School of Medicine, Detroit, MI, United States.

出版信息

Front Neurol. 2020 Jan 31;11:54. doi: 10.3389/fneur.2020.00054. eCollection 2020.

Abstract

The purpose of this study was to establish a non-invasive clinical PET/MR protocol using [F]-labeled deoxyglucose (FDG) that provides physicians with regional metabolic rate of glucose (MRGlc) values and to clarify the contribution of absolute quantification to clinical management of patients with non-lesional extratemporal lobe epilepsy (ETLE). The study included a group of 15 patients with non-lesional ETLE who underwent a dynamic FDG PET study using a fully-integrated PET/MRI system (Siemens Biograph). FDG tracer uptake images were converted to MRGlc (μmol/100 g/min) maps using an image derived input function that was extracted based on the combined analysis of PET and MRI data. In addition, the same protocol was applied to a group of healthy controls, yielding a normative database. Abnormality maps for ETLE patients were created with respect to the normative database, defining significant hypo- or hyper-metabolic regions that exceeded ±2 SD of normal regional mean MRGlc values. Abnormality maps derived from MRGlc images of ETLE patients contributed to the localization of hypo-metabolic areas against visual readings in 53% and increased the confidence in the original clinical readings in 33% of all cases. Moreover, quantification allowed identification of hyper-metabolic areas that are associated with frequently spiking cortex, rarely acknowledged in clinical readings. Overall, besides providing some confirmatory information to visual readings, quantitative PET imaging demonstrated only a moderate impact on clinical management of patients with complex pathology that leads to epileptic seizures, failing to provide new decisive information that would have changed classification of patients from being rejected to being considered for surgical intervention.

摘要

本研究的目的是建立一种使用[F]标记的脱氧葡萄糖(FDG)的无创临床PET/MR方案,该方案可为医生提供局部葡萄糖代谢率(MRGlc)值,并阐明绝对定量对非病变颞叶外癫痫(ETLE)患者临床管理的贡献。该研究纳入了一组15例非病变ETLE患者,他们使用完全集成的PET/MRI系统(西门子Biograph)进行了动态FDG PET研究。使用基于PET和MRI数据联合分析提取的图像衍生输入函数,将FDG示踪剂摄取图像转换为MRGlc(μmol/100 g/min)图。此外,将相同方案应用于一组健康对照,生成了一个规范数据库。针对规范数据库创建了ETLE患者的异常图,定义了超过正常局部平均MRGlc值±2 SD的显著低代谢或高代谢区域。ETLE患者MRGlc图像得出的异常图在53%的病例中有助于相对于视觉读数定位低代谢区域,并在33%的所有病例中提高了对原始临床读数的信心。此外,定量分析能够识别与频繁放电皮层相关的高代谢区域,这在临床读数中很少被发现。总体而言,除了为视觉读数提供一些确认信息外,定量PET成像对导致癫痫发作的复杂病理患者的临床管理仅显示出中等影响,未能提供新的决定性信息,从而改变患者从被拒绝到被考虑进行手术干预的分类。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/656c/7005011/7c23b5b93c8d/fneur-11-00054-g0001.jpg

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