18FDG Production in a PET Imaging Using a Proton Flux Produced by the D-D Fusion Reaction

N. Niknam, S. Hosseinimotlagh, Z. Parang
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Abstract

Fluorine 18-deoxyglucose (18FDG) is often used in Positron Emission Tomography (PET). PET imaging is one of the valuable tools used for cancer detection and management. PET growth is limited due to problems that depend on the production of Fluorine-18. Imaging results are strongly dependent on the information of nuclear reaction cross-section data. This study calculates the stopping power, RCSDA, and the simulated and distributed absorbed dose of F-18, in water. We use the Geant4/Gate simulation and the Bethe-Bloch theory model to access these goals. The results of this simulation and this theory model agree with each other. The main point of this paper is the presentation of a theoretical approach to the production of Fluorine-18 by using protons production through the main nuclear fusion reaction D(d,p)T and the side fusion reaction 3 He(d,p)4 He uses helium-3 as a catalyzed.
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利用D-D聚变反应产生的质子通量在PET成像中产生18FDG
氟18-脱氧葡萄糖(18FDG)常用于正电子发射断层扫描(PET)。PET成像是用于癌症检测和治疗的重要工具之一。由于依赖氟-18生产的问题,PET的生长受到限制。成像结果强烈依赖于核反应截面数据的信息。本研究计算了F-18在水中的停止功率、RCSDA以及模拟和分布吸收剂量。我们使用Geant4/Gate仿真和Bethe-Bloch理论模型来实现这些目标。仿真结果与理论模型吻合较好。本文的重点是提出了一种理论方法,通过主核聚变反应D(D,p)T和副核聚变反应3 He(D,p)4 He以氦-3作为催化剂,利用质子产生氟-18。
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