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在体[11C]氟马西尼正电子发射断层扫描与海马硬化症中的离体[3H]氟马西尼放射自显影相关。

In vivo [11C]flumazenil-PET correlates with ex vivo [3H]flumazenil autoradiography in hippocampal sclerosis.

作者信息

Koepp M J, Hand K S, Labbé C, Richardson M P, Van Paesschen W, Baird V H, Cunningham V J, Bowery N G, Brooks D J, Duncan J S

机构信息

MRC Cyclotron Unit, Hammersmith Hospital, London, UK.

出版信息

Ann Neurol. 1998 May;43(5):618-26. doi: 10.1002/ana.410430510.

Abstract

By using [11C]flumazenil-positron emission tomography ([11C]FMZ-PET), we have previously shown that reductions of central benzodiazepine receptors (cBZRs) are restricted to the hippocampus in mesial temporal lobe epilepsy (mTLE) caused by unilateral hippocampal sclerosis (HS). Receptor autoradiographic studies on resected hippocampal specimens from the same patients demonstrated loss of cBZRs that was over and above loss of neurons in the CA1 subregion. Here, we report the first direct comparison of in vivo cBZR binding with [11C]FMZ-PET and ex vivo binding using [3H]FMZ autoradiography. We applied a magnetic resonance imaging-based method for partial volume effect correction to the PET images of [11C]FMZ volume of distribution ([11C]FMZ Vd) obtained in 10 patients with refractory mTLE due to unilateral, histologically verified HS. Saturation autoradiography was performed on the hippocampal specimens obtained from the same patients, allowing calculation of receptor availability ([3H]FMZ Bmax). After correction for partial volume effect, [11C]FMZ Vd in the body of the epileptogenic hippocampus was reduced by a mean of 42.1% compared with normal controls. [3H]FMZ Bmax, determined autoradiographically from the same hippocampal tissue, was reduced by a mean of 42.7% compared with control hippocampi. Absolute in vivo and ex vivo measurements of cBZR binding for the body of the hippocampus were significantly correlated in each individual. Our study demonstrates that reduction of available cBZR on remaining neurons in HS can be reliably detected in vivo by using [11C]FMZ-PET after correction for partial volume effect.

摘要

通过使用[11C]氟马西尼-正电子发射断层扫描([11C]FMZ-PET),我们先前已表明,在由单侧海马硬化(HS)引起的内侧颞叶癫痫(mTLE)中,中枢苯二氮䓬受体(cBZRs)的减少仅限于海马体。对来自同一患者的切除海马标本进行的受体放射自显影研究表明,cBZRs的丧失超过了CA1亚区神经元的丧失。在此,我们报告了首次对体内cBZR结合与[11C]FMZ-PET以及使用[3H]FMZ放射自显影进行的体外结合进行的直接比较。我们将基于磁共振成像的部分容积效应校正方法应用于在10例因单侧、经组织学证实的HS导致的难治性mTLE患者中获得的[11C]FMZ分布容积([11C]FMZ Vd)的PET图像。对来自同一患者的海马标本进行饱和放射自显影,从而能够计算受体可用性([3H]FMZ Bmax)。校正部分容积效应后,致痫海马体主体中的[11C]FMZ Vd与正常对照相比平均降低了42.1%。从相同海马组织通过放射自显影测定的[3H]FMZ Bmax与对照海马体相比平均降低了42.7%。每个个体中海马体主体的cBZR结合的绝对体内和体外测量值均显著相关。我们的研究表明,在校正部分容积效应后,使用[11C]FMZ-PET能够在体内可靠地检测HS中剩余神经元上可用cBZR的减少。

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