Chatziioannou Arion F
Crump Institute for Molecular Imaging, Department of Molecular and Medical Pharmacology, UCLA School of Medicine, Box 951770 UCLA, Los Angeles, CA 90095-1770, USA.
Eur J Nucl Med Mol Imaging. 2002 Jan;29(1):98-114. doi: 10.1007/s00259-001-0683-3. Epub 2001 Nov 22.
Biological discovery has moved at an accelerated pace in recent years, with a considerable focus on the transition from in vitro to in vivo models. As a result, there has been a significant increase in the need to adapt clinical imaging methods, as well as for novel imaging technologies for biological research. Positron emission tomography (PET) is a clinical imaging modality that permits the use of positron-labeled molecular imaging probes for non-invasive assays of biochemical processes. The imaging procedure can be repeatedly performed before and after interventions, thereby allowing each animal to be used as its own control. Positron-labeled compounds that target a range of molecular targets have been and continue to be synthesized, with examples of biological processes ranging from receptors and synthesis of transmitters in cell communication, to metabolic processes and gene expression. In animal research, PET has been used extensively in the past for studies of non-human primates and other larger animals. New detector technology has improved spatial resolution, and has made possible PET scanning for the study of the most important modern molecular biology model, the laboratory mouse. This paper presents the challenges facing PET technology as applied to small animal imaging, provides a historical overview of the development of small animal PET systems, and discusses the current state of the art in small animal PET technology.
近年来,生物学发现的步伐加快,相当一部分重点在于从体外模型向体内模型的转变。因此,适应临床成像方法以及用于生物学研究的新型成像技术的需求显著增加。正电子发射断层扫描(PET)是一种临床成像方式,它允许使用正电子标记的分子成像探针进行生化过程的非侵入性检测。成像过程可以在干预前后反复进行,从而使每只动物都能作为自身对照。已经合成并将继续合成针对一系列分子靶点的正电子标记化合物,其涉及的生物过程实例从细胞通讯中的受体和递质合成,到代谢过程和基因表达。在动物研究中,PET过去已广泛用于非人灵长类动物和其他较大动物的研究。新的探测器技术提高了空间分辨率,并使PET扫描用于研究最重要的现代分子生物学模型——实验室小鼠成为可能。本文介绍了PET技术应用于小动物成像所面临的挑战,提供了小动物PET系统发展的历史概述,并讨论了小动物PET技术的当前技术水平。