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三光子正电子发射断层扫描成像性能:蒙特卡罗模拟

Performance of three-photon PET imaging: Monte Carlo simulations.

作者信息

Kacperski Krzysztof, Spyrou Nicholas M

机构信息

Department of Physics, University of Surrey, Guildford, UK.

出版信息

Phys Med Biol. 2005 Dec 7;50(23):5679-95. doi: 10.1088/0031-9155/50/23/019. Epub 2005 Nov 23.

Abstract

We have recently introduced the idea of making use of three-photon positron annihilations in positron emission tomography. In this paper, the basic characteristics of the three-gamma imaging in PET are studied by means of Monte Carlo simulations and analytical computations. Two typical configurations of human and small animal scanners are considered. Three-photon imaging requires high-energy resolution detectors. Parameters currently attainable by CdZnTe semiconductor detectors, the technology of choice for the future development of radiation imaging, are assumed. Spatial resolution is calculated as a function of detector energy resolution and size, position in the field of view, scanner size and the energies of the three-gamma annihilation photons. Possible ways to improve the spatial resolution obtained for nominal parameters, 1.5 cm and 3.2 mm FWHM for human and small animal scanners, respectively, are indicated. Counting rates of true and random three-photon events for typical human and small animal scanning configurations are assessed. A simple formula for minimum size of lesions detectable in the three-gamma based images is derived. Depending on the contrast and total number of registered counts, lesions of a few mm size for human and sub mm for small animal scanners can be detected.

摘要

我们最近提出了在正电子发射断层扫描中利用三光子正电子湮灭的想法。在本文中,通过蒙特卡罗模拟和解析计算研究了正电子发射断层扫描中三伽马成像的基本特性。考虑了人体和小动物扫描仪的两种典型配置。三光子成像需要高能量分辨率探测器。假定采用碲锌镉半导体探测器目前可达到的参数,该技术是辐射成像未来发展的首选技术。根据探测器能量分辨率和尺寸、视野中的位置、扫描仪尺寸以及三伽马湮灭光子的能量计算空间分辨率。指出了分别针对人体和小动物扫描仪的标称参数(半高宽分别为1.5厘米和3.2毫米)提高所获得空间分辨率的可能方法。评估了典型人体和小动物扫描配置下真实和随机三光子事件的计数率。推导了基于三伽马图像中可检测病变最小尺寸的简单公式。根据对比度和记录计数的总数,人体扫描仪可检测到几毫米大小的病变,小动物扫描仪可检测到亚毫米大小的病变。

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