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使用伽马相机系统的正电子发射断层显像(PET)成像:综述

PET imaging using gamma camera systems: a review.

作者信息

Jarritt P H, Acton P D

机构信息

Institute of Nuclear Medicine, University College London Medical School, UK.

出版信息

Nucl Med Commun. 1996 Sep;17(9):758-66. doi: 10.1097/00006231-199609000-00006.

Abstract

Optimized positron emission tomographs have begun to demonstrate an ever widening range of clinical applications for positron labelled pharmaceuticals. This potential has led to a renewed interest in the use of the more widely available Anger gamma camera detectors for imaging the 511 keV photons from the positron decay process. Two forms of detection can be considered: either the detection of the 511 keV photons as single events or the detection of coincidence events from the opposed pair annihilation photons. The widespread availability of dual, opposed-pair, large field-of-view detectors has promoted the development of coincidence detection without collimation. With detector rotation, positron emission tomography (PET) can be performed. An alternative and lower cost option has been the universal development of ultra high-energy collimators to perform single photon emission tomography (SPET) with 511 keV photons. This review outlines the currently available performance characteristics of these two approaches and compares them with those from two- and three-dimensional PET optimized systems. The limitations on the development of these systems is discussed through the analysis of the principles underlying both single photon and coincidence detection. Preliminary clinical experience indicates that limitations in the performance characteristics of these systems has implications for their potential role, although applications in cardiology and oncology are being pursued.

摘要

优化后的正电子发射断层扫描仪已开始展示出正电子标记药物在临床应用中的范围不断扩大。这种潜力引发了人们对使用更广泛可用的安格伽马相机探测器来成像正电子衰变过程中产生的511keV光子的新兴趣。可以考虑两种检测形式:将511keV光子作为单事件进行检测,或者检测来自对向湮灭光子的符合事件。双对置大视野探测器的广泛可用性推动了无准直符合检测的发展。通过探测器旋转,可以进行正电子发射断层扫描(PET)。另一种成本较低的选择是普遍开发超高能准直器,以对511keV光子进行单光子发射断层扫描(SPET)。本综述概述了这两种方法目前可用的性能特征,并将它们与二维和三维PET优化系统的性能特征进行了比较。通过分析单光子检测和符合检测的基本原理,讨论了这些系统开发中的局限性。初步临床经验表明,这些系统性能特征的局限性对其潜在作用有影响,尽管目前正在探索其在心脏病学和肿瘤学中的应用。

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