Targetry for the in-beam activation of tracer particles for positron emission particle tracking

T. Leadbeater, M. V. van Heerden, A. Buffler, A. Camroodien, G. Steyn
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Abstract

Positron emission particle tracking measures the trajectory of a single radioactively labelled tracer particle by coincident detection of emitted annihilation photons. The technique enables the non-invasive study of dense opaque flows, with the tracer acting as a small neutrally buoyant flow-follower. The University of Cape Town has established a PEPT facility at iThemba LABS, utilising tracer particles produced through radiochemical methods, and measured using adapted positron tomographs. An activation approach producing the positron emitter 18F inside glass target spheres of diameter between 5.0 and 10 mm using accelerated beams of alpha-particles has been explored. The reaction 16O(O, x)18F is used, exploiting the high concentration of natural oxygen and the correspondingly high cross-sections for 18F formation. A standard target holder for the batch production of radionuclides at iThemba LABS was modified, reducing the entrance window thickness, allowing ingress of circulating cooling water, and adapted for a primary tparticle beam of 100 MeV energy delivered by the separated sector cyclotron (SSC) of iThemba LABS. Two-hour bombardment at nominal beam current 0.8 eµA produced activities up to ~ 110 MBq (3 mCi), with over 95% of the activity being 18F.
用于正电子发射粒子跟踪的示踪粒子的束内激活靶标
正电子发射粒子跟踪通过同步探测发射的湮灭光子来测量单个放射性标记的示踪粒子的轨迹。该技术使致密不透明流体的非侵入性研究成为可能,示踪剂作为一个小的中性浮力流体跟随剂。开普敦大学已经在iThemba实验室建立了一个PEPT设施,利用通过放射化学方法产生的示踪粒子,并使用适应的正电子断层扫描进行测量。研究了在直径为5.0 ~ 10 mm的玻璃靶球内利用加速粒子束产生正电子发射体18F的激活方法。使用16O(O, x)18F反应,利用高浓度的天然氧和相应的高横截面生成18F。对iThemba实验室用于批量生产放射性核素的标准靶座进行了改进,减少了入口窗口厚度,允许循环冷却水进入,并适用于iThemba实验室的分离扇区回旋加速器(SSC)提供的100 MeV能量的初级粒子束。在标称束流0.8 eµA下轰击2小时,产生的活度高达~ 110 MBq (3 mCi),其中95%以上的活度为18F。
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