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一种基于模体的方法,用于对新型β⁺发射体的剂量校准器进行标准化。

A phantom-based method to standardize dose-calibrators for new β+-emitters.

作者信息

Morgat Clément, Mazère Joachim, Fernandez Philippe, Buj Sébastien, Vimont Delphine, Schulz Jürgen, Lamare Frédéric

机构信息

aBordeaux University Hospital Center, Nuclear Medicine Department, Haut-Levêque Hospital bUniversity of Bordeaux, INCIA, UMR 5287 cCNRS, INCIA, UMR 5287, Bordeaux, France.

出版信息

Nucl Med Commun. 2015 Feb;36(2):201-6. doi: 10.1097/MNM.0000000000000227.

Abstract

Quantitative imaging with PET requires accurate measurements of the amount of radioactivity injected into the patient and the concentration of radioactivity in a given region. Recently, new positron emitters, such as (124)I, (89)Zr, (82)Rb, (68)Ga, and (64)Cu, have emerged to promote PET development, but standards are still largely lacking. Therefore, we propose to validate a simple, robust, and replicable methodology, not requiring the use of any standards, to accurately calibrate a dose-calibrator for any β(+)-emitter. On the basis of (18)F cross-calibration, routinely performed with fluorine-18-fluorodeoxyglucose (F-FDG) in nuclear medicine departments, a methodology was developed using β(+)-emitting' phantoms to cross-calibrate the dose-calibrator for measuring the activity of positron emitters and quantifying the standardized uptake value (SUV). Ga phantoms filled with activities measured with various dose-calibrator settings were imaged to establish calibration curves (SUV values as a function of the dose-calibrator settings) and to identify the setting value, yielding an SUV value of 1.00 g/ml, reflecting an accurate measurement of (68)Ga activity. Activities measured with the identified setting were finally checked with a γ-counter. The setting of 772±1 was identified as ensuring that the studied dose-calibrator is correctly calibrated for (68)Ga to ensure an SUV value of 1.00±0.01 g/ml. γ-Ray spectrometry confirmed the accurate measurement of Ga activities by the dose-calibrator (relative error of 2.9±1.5%). We have developed a phantom-based method to accurately standardize dose-calibrators for any β(+)-emitter, without any standards.

摘要

正电子发射断层显像(PET)的定量成像需要准确测量注入患者体内的放射性活度以及特定区域内的放射性浓度。近年来,新型正电子发射体,如(124)I、(89)Zr、(82)Rb、(68)Ga和(64)Cu不断涌现,推动了PET的发展,但目前仍普遍缺乏相关标准。因此,我们提议验证一种简单、可靠且可重复的方法,无需使用任何标准,即可针对任何β(+)发射体准确校准剂量校准仪。基于核医学科室常规使用氟-18-氟脱氧葡萄糖(F-FDG)进行的(18)F交叉校准,开发了一种使用β(+)发射体模体进行交叉校准的方法,用于测量正电子发射体的活度并定量标准化摄取值(SUV)。对填充有不同剂量校准仪设置下测量的活度的Ga模体进行成像,以建立校准曲线(SUV值作为剂量校准仪设置的函数)并确定设置值,使SUV值为1.00 g/ml,反映对(68)Ga活度的准确测量。最后用γ计数器检查用确定的设置测量的活度。确定772±1的设置可确保所研究的剂量校准仪针对(68)Ga正确校准,以确保SUV值为1.00±0.01 g/ml。γ射线能谱分析证实剂量校准仪对Ga活度的测量准确(相对误差为2.9±1.5%)。我们开发了一种基于模体的方法,无需任何标准即可针对任何β(+)发射体准确标准化剂量校准仪。

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