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对一例VGKCC边缘叶脑炎患者的大脑氟代脱氧葡萄糖正电子发射断层扫描(FDG-PET)进行半定量分析,结果显示纹状体代谢亢进,皮质代谢正常。

Semi-quantitative analysis of cerebral FDG-PET reveals striatal hypermetabolism and normal cortical metabolism in a case of VGKCC limbic encephalitis.

作者信息

Moloney Patrick, Boylan Ruth, Elamin Marwa, O'Riordan Sean, Killeen Ronan, McGuigan Christopher

机构信息

1 Department of Neurology, St. Vincent's University Hospital, Ireland.

2 Department of Radiology, St. Vincent's University Hospital, Ireland.

出版信息

Neuroradiol J. 2017 Apr;30(2):160-163. doi: 10.1177/1971400916689578. Epub 2017 Jan 1.

Abstract

In the context of delayed autoimmune encephalitis antibody results, functional imaging can support the diagnosis of limbic encephalitis associated with anti-voltage-gated potassium channel complex (VGKCC) antibodies. Here we present a typical case of VGKCC encephalitis in a 69-year-old woman whose symptoms responded to plasmapheresis. A cerebral 18F-fluoro-2-deoxy-d-glucose positron emission tomography (FDG-PET) scan performed prior to commencing treatment revealed striatal hypermetabolism assessed qualitatively and semi-quantitatively, with normal uptake in the cortex and cerebellum when analysed semi-quantitatively. Repeat FDG-PET imaging performed three months later revealed normalisation of striatal hypermetabolism. Previous case reports have described striatal hypermetabolism and/or cortical hypometabolism in patients with VGKCC encephalitis. However, most of these descriptions were based on qualitative analyses only and may represent the relative change in cortical metabolism compared with striatal metabolism. We recommend semi-quantitative analysis of cerebral FDG-PET, in addition to reporting the qualitative FDG-PET images.

摘要

在自身免疫性脑炎抗体结果延迟的情况下,功能成像可辅助诊断与抗电压门控钾通道复合物(VGKCC)抗体相关的边缘叶脑炎。在此,我们报告一例69岁女性的典型VGKCC脑炎病例,其症状经血浆置换后有所缓解。在开始治疗前进行的脑部18F-氟-2-脱氧-D-葡萄糖正电子发射断层扫描(FDG-PET)显示,经定性和半定量评估存在纹状体代谢亢进,半定量分析时皮质和小脑摄取正常。三个月后重复进行的FDG-PET成像显示纹状体代谢亢进恢复正常。既往病例报告描述了VGKCC脑炎患者的纹状体代谢亢进和/或皮质代谢减低。然而,这些描述大多仅基于定性分析,可能代表与纹状体代谢相比皮质代谢的相对变化。除报告FDG-PET图像的定性结果外,我们建议对脑部FDG-PET进行半定量分析。

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