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[通过正电子发射断层扫描(PET)测量人类大脑中的神经传递]

[Neurotransmission in human brains measured by positron emission tomography (PET)].

作者信息

Yanai K

机构信息

Department of Pharmacology I, Tohoku University, School of Medicine, Sendai, Japan.

出版信息

Nihon Yakurigaku Zasshi. 1997 Jun;109(6):259-70. doi: 10.1254/fpj.109.259.

Abstract

Various techniques have been developed to image human brain function in the past decade. X-ray computerized tomography and magnetic resonance imaging (MR) are used to evaluate brain structure. Recently, positron emission tomography (PET) and MR are often utilized to perform human brain mapping such as attention, cognition, language comprehension, and so on. PET also makes it possible to evaluate the states of various types of neurotransmission. These techniques cannot only be used to map "brain neurochemistry" in normal human brains, but they will also increase our knowledge by demonstrating neurochemical abnormalities in a wide range of neurological and psychiatric disorders or those that occur during normal aging. The PET techniques are applicable to the development of new drugs in the pharmaceutical industry. Using PET techniques of imaging neurotransmission, it is feasible to measure the release of neurotransmitter after activation of the CNS by various methods (ligand activation study). We have developed the methodology of using 11C-labeled antagonists for mapping functional histamine H1-receptors in human brain directly and noninvasively by PET. The present review article provides an outline of the conceptual and methodological progress over the past several years that has made it possible to visualize neurotransmission in human brains by PET.

摘要

在过去十年间,人们开发出了各种用于对人类脑功能进行成像的技术。X射线计算机断层扫描和磁共振成像(MR)被用于评估脑结构。近来,正电子发射断层扫描(PET)和MR常被用于进行人类脑图谱绘制,比如注意力、认知、语言理解等方面。PET还能够评估各种类型神经传递的状态。这些技术不仅可用于绘制正常人类大脑中的“脑神经化学”图谱,还能通过展示广泛的神经和精神疾病或正常衰老过程中出现的神经化学异常情况来增加我们的知识。PET技术适用于制药行业新药的研发。利用神经传递成像的PET技术,通过各种方法(配体激活研究)测量中枢神经系统激活后神经递质的释放是可行的。我们已经开发出了一种方法,即使用11C标记的拮抗剂,通过PET直接且无创地绘制人类大脑中功能性组胺H1受体图谱。本综述文章概述了过去几年在概念和方法上取得的进展,这些进展使得通过PET可视化人类大脑中的神经传递成为可能。

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