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正电子成像的可行性研究与 J-PET 断层扫描仪。

Feasibility study of the positronium imaging with the J-PET tomograph.

机构信息

Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, 30-348 Cracow, Poland.

出版信息

Phys Med Biol. 2019 Mar 7;64(5):055017. doi: 10.1088/1361-6560/aafe20.

Abstract

A detection system of the conventional PET tomograph is set-up to record data from [Formula: see text] annihilation into two photons with energy of 511 keV, and it gives information on the density distribution of a radiopharmaceutical in the body of the object. In this paper we explore the possibility of performing the three gamma photons imaging based on ortho-positronium annihilation, as well as the possibility of positronium mean lifetime imaging with the J-PET tomograph constructed from plastic scintillators. For this purposes simulations of the ortho-positronium formation and its annihilation into three photons were performed taking into account distributions of photons' momenta as predicted by the theory of quantum electrodynamics and the response of the J-PET tomograph. In order to test the proposed ortho-positronium lifetime image reconstruction method, we concentrate on the decay of the ortho-positronium into three photons and applications of radiopharmaceuticals labeled with isotopes emitting a prompt gamma. The proposed method of imaging is based on the determination of hit-times and hit-positions of registered photons which enables the reconstruction of the time and position of the annihilation point as well as the lifetime of the ortho-positronium on an event-by-event basis. We have simulated the production of the positronium in point-like sources and in a cylindrical phantom composed of a set of different materials in which the ortho-positronium lifetime varied from 2.0 ns to 3.0 ns, as expected for ortho-positronium created in the human body. The presented reconstruction method for total-body J-PET like detector allows to achieve a mean lifetime resolution of  ∼40 ps. Recent positron annihilation lifetime spectroscopy measurements of cancerous and healthy uterine tissues show that this sensitivity may allow to study the morphological changes in cell structures.

摘要

常规 PET 断层扫描仪的检测系统被设置为记录[公式:见正文]湮灭成两个能量为 511keV 的光子的数据,并提供关于放射性药物在物体体内密度分布的信息。在本文中,我们探索了基于正电子素湮灭进行三伽马光子成像的可能性,以及使用由塑料闪烁体构建的 J-PET 断层扫描仪进行正电子素平均寿命成像的可能性。为此,我们考虑了量子电动力学理论预测的光子动量分布以及 J-PET 断层扫描仪的响应,对正电子素的形成及其湮灭成三个光子进行了模拟。为了测试所提出的正电子素寿命图像重建方法,我们专注于正电子素衰变成三个光子的过程以及用发射瞬时伽马的同位素标记的放射性药物的应用。所提出的成像方法基于确定注册光子的命中时间和命中位置,这使得能够重建湮灭点的时间和位置以及正电子素的寿命,从而实现基于事件的重建。我们已经模拟了点状源中和由一组不同材料组成的圆柱形幻像中的正电子素的产生,其中正电子素的寿命从 2.0ns 到 3.0ns 变化,这与在人体中产生的正电子素预期一致。用于全身 J-PET 型探测器的这种重建方法允许达到平均寿命分辨率约为 40ps。最近对癌症和健康子宫组织的正电子湮没寿命光谱测量表明,这种灵敏度可能允许研究细胞结构的形态变化。

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