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首页> 外文期刊>Neuropsychopharmacology >In Vivo Imaging of Neurotransmitter Systems Using Radiolabeled Receptor Ligands
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In Vivo Imaging of Neurotransmitter Systems Using Radiolabeled Receptor Ligands

机译:使用放射性标记受体配体的神经递质系统的体内成像

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摘要

In vivo functional brain imaging, including global blood flow, regional cerebral blood flow (rCBF), measured with positron emission tomography (PET) and single photon emission computed tomography (SPECT), and regional cerebral metabolic rate (rCMR) measured with deoxyglucose PET, have been widely used in studies of psychiatric disorders. These studies have found modest differences and required large numbers of patients. Activation studies using rCBF or rCMR as indices of neuronal activity are more sensitive because patients act as their own control; however, findings localize regions of change but provide no data about specific neurotransmitter systems. After a general discussion of the role of neurotransmitter systems in neuropsychiatric disorders, an overview of the methodology of development and selection of radioligands for PET and SPECT is presented. Studies involving PET and SPECT ligand methods are reviewed and their findings summarized, including recent work demonstrating successive mutual modulation of neurotransmitter systems. Kinetic and equilibrium analysis modeling are reviewed. The emerging methodology of measuring neurotransmitter release on activation, both pharmacologically and by task performance, using ligand methods is reviewed and proposed as a promosing new approach for studying psychiatric disorders. ? 1997 American College of Neuropsyphopharmacology
机译:体内功能性脑成像,包括用正电子发射断层扫描(PET)和单光子发射计算机断层扫描(SPECT)测量的总体血流量,局部脑血流量(rCBF),以及用脱氧葡萄糖PET测量的局部脑代谢率(rCMR),已被广泛用于精神疾病的研究。这些研究发现差异不大,需要大量患者。使用rCBF或rCMR作为神经元活动指标的激活研究更为敏感,因为患者可以作为自己的对照。但是,研究结果只能定位变化区域,但不能提供有关特定神经递质系统的数据。在对神经递质系统在神经精神疾病中的作用进行了一般性讨论之后,对PET和SPECT放射性配体的开发和选择方法进行了概述。对涉及PET和SPECT配体方法的研究进行了综述,并总结了他们的发现,包括证明神经递质系统相继相互调制的最新工作。动力学和平衡分析建模进行了审查。审查并提出了使用配体方法测量药理学和通过任务执行来测量激活时神经递质释放的新兴方法,并将其作为研究精神疾病的新方法。 ? 1997美国神经精神药理学院

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