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正电子发射断层扫描

Positron emission tomography.

作者信息

Lammertsma A A

机构信息

MRC Cyclotron Unit, Hammersmith Hospital, London, U.K.

出版信息

Brain Topogr. 1992 Winter;5(2):113-7. doi: 10.1007/BF01129038.

Abstract

Positron emission tomography (PET) allows for the absolute measurement of regional tissue physiological, biochemical and pharmacological processes. This ability is a consequence of the nature of positron emission and the type of tracers which can be labelled with positron emitting radionuclides. The spatial resolution of state of the art scanners is in the order of 4 mm full width at half maximum (FWHM). However, due to statistical limitations, in practice normally a resolution of 7 to 8 mm FWHM is used. For the same reason, although there is no limit to the temporal resolution, studies usually require many seconds to several minutes to obtain a good signal to noise ratio. If a slow kinetic process is followed, studies can be extended to several hours in order to characterise the entire physiological process. A major advantage of PET is its flexibility. Several parameters (e.g., blood flow, oxygen consumption, glucose consumption, receptor density, etc.) can be measured in the same setting. Different aspects of a certain pathology can, therefore, be studied in the same patient.

摘要

正电子发射断层扫描(PET)能够对局部组织的生理、生化和药理过程进行绝对测量。这种能力源于正电子发射的性质以及可用正电子发射放射性核素标记的示踪剂类型。目前先进扫描仪的空间分辨率约为半高宽(FWHM)4毫米。然而,由于统计限制,实际上通常使用FWHM为7至8毫米的分辨率。出于同样的原因,尽管时间分辨率没有限制,但研究通常需要几秒到几分钟才能获得良好的信噪比。如果跟踪一个缓慢的动力学过程,研究可以延长到几个小时,以便表征整个生理过程。PET的一个主要优点是其灵活性。可以在同一环境中测量几个参数(例如,血流量、耗氧量、葡萄糖消耗量、受体密度等)。因此,可以在同一患者中研究某种病理的不同方面。

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