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通过在体模中使用弗里克剂量测定法和正电子发射断层扫描估算¹⁸F-氟脱氧葡萄糖给予组织的内照射剂量

Estimation of the Internal Dose Imparted by F-Fluorodeoxyglucose to Tissues by Using Fricke Dosimetry in a Phantom and Positron Emission Tomography.

作者信息

Tippayamontri Thititip, Betancourt-Santander Esteban, Guérin Brigitte, Lecomte Roger, Paquette Benoit, Sanche Léon

机构信息

Department of Nuclear Medicine and Radiobiology, University of Sherbrooke, Sherbrooke, QC, Canada.

Centre Hospitalier Universitaire de Sherbrooke (CHUS) Research Center, Faculty of Medicine and Health Sciences, University of Sherbrooke, Sherbrooke, QC, Canada.

出版信息

Front Nucl Med. 2022 Feb 14;2:815141. doi: 10.3389/fnume.2022.815141. eCollection 2022.

Abstract

PURPOSE

Assessment of the radiation dose delivered to a tumor and different organs is a major issue when using radiolabelled compounds for diagnostic imaging or endoradiotherapy. The present article reports on a study to correlate the mean F-fluorodeoxyglucose (F-FDG) activity in different tissues measured in a mouse model by positron emission tomography (PET) imaging, with the dose assessed by Fricke dosimetry.

METHODS

The dose-response relationship of the Fricke dosimeter and PET data was determined at different times after adding F-FDG (0-80 MBq) to a Fricke solution (1 mM ferrous ammonium sulfate in 0.4 M sulfuric acid). The total dose was assessed at 24 h (~13 half-lives of F-FDG). The number of coincident events produced in 3 mL of Fricke solution or 3 mL of deionized water that contained 60 MBq of F-FDG was measured using the Triumph/LabPET8 preclinical PET/CT scanner. The total activity concentration measured by PET was correlated with the calculated dose from the Fricke dosimeter, at any exposure activity of F-FDG.

RESULTS

The radiation dose measured with the Fricke dosimeter increased rapidly during the first 4 h after adding F-FDG and then gradually reached a plateau. Presence of non-radioactive-FDG did not alter the Fricke dosimetry. The characteristic responses of the dosimeter and PET imaging clearly exhibit linearity with injected activity of F-FDG. The dose (Gy) to time-integrated activity (MBq.h) relationship was measured, yielding a conversion factor of 0.064 ± 0.06 Gy/MBq.h in the present mouse model. This correlation provides an efficient alternative method to measure, three-dimensionally, the total and regional dose absorbed from F-radiotracers.

CONCLUSIONS

The Fricke dosimeter can be used to calibrate a PET scanner, thus enabling the determination of dose from the measured radioactivity emitted by F-FDG in tissues. The method should be applicable to radiotracers with other positron-emitting radionuclides.

摘要

目的

在使用放射性标记化合物进行诊断成像或内放射治疗时,评估传递至肿瘤和不同器官的辐射剂量是一个主要问题。本文报道了一项研究,该研究通过正电子发射断层扫描(PET)成像,将在小鼠模型中测量的不同组织中的平均氟代脱氧葡萄糖(F-FDG)活性与通过弗里克剂量测定法评估的剂量相关联。

方法

在向弗里克溶液(0.4 M硫酸中的1 mM硫酸亚铁铵)中加入F-FDG(0 - 80 MBq)后的不同时间,确定弗里克剂量计与PET数据的剂量反应关系。在24小时(约F-FDG的13个半衰期)时评估总剂量。使用Triumph/LabPET8临床前PET/CT扫描仪测量3 mL含有60 MBq F-FDG的弗里克溶液或3 mL去离子水中产生的符合事件数。在F-FDG的任何暴露活性下,通过PET测量的总活性浓度与弗里克剂量计计算的剂量相关联。

结果

在加入F-FDG后的前4小时内,用弗里克剂量计测量的辐射剂量迅速增加,然后逐渐达到平稳状态。非放射性FDG的存在未改变弗里克剂量测定法。剂量计和PET成像的特征反应与F-FDG的注入活性明显呈线性关系。测量了剂量(Gy)与时间积分活性(MBq.h)的关系,在本小鼠模型中得到转换因子为0.064±0.06 Gy/MBq.h。这种相关性提供了一种有效的替代方法,用于三维测量从F-放射性示踪剂吸收的总剂量和局部剂量。

结论

弗里克剂量计可用于校准PET扫描仪,从而能够根据组织中F-FDG发射的测量放射性确定剂量。该方法应适用于其他发射正电子的放射性核素的放射性示踪剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c641/11440868/273e6bc35306/fnume-02-815141-g0001.jpg

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