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评估通过对[18O]H₂O进行质子辐照以高功率生产反应性[18F]F时,铌、铂、钽、钛、锆以及溅射了二氧化锆的哈伐合金箔的性能和寿命。

Assessing the performance and longevity of Nb, Pt, Ta, Ti, Zr, and ZrO₂-sputtered Havar foils for the high-power production of reactive [18F]F by proton irradiation of [18O]H2O.

作者信息

Gagnon K, Wilson J S, Sant E, Backhouse C J, McQuarrie S A

机构信息

Department of Physics, University of Alberta, Edmonton, AB, Canada.

出版信息

Appl Radiat Isot. 2011 Oct;69(10):1330-6. doi: 10.1016/j.apradiso.2011.02.034. Epub 2011 Feb 25.

DOI:10.1016/j.apradiso.2011.02.034
PMID:21782460
Abstract

As water-soluble ionic contaminants, which arise following proton irradiation of [18O]H2O have been associated with decreased [18F]FDG yields, the minimization of these contaminants is an asset in improving the [18F]F reactivity. To this end, we have previously demonstrated that the use of Nb-sputtered Havar foils results in decreased radionuclidic and chemical impurities in proton irradiated [18O]H2O, improved [18F]FDG yields, and improved [18F]FDG yield consistency when compared with non-sputtered Havar. Resulting from the highly reactive chemical microenvironment within the target however, this niobium layer is observed to degrade over time. To find a material that displays increased longevity with regards to maintaining high [18F]F reactivity, this project extensively investigated and compared Havar foils sputtered with Nb, Pt, Ta, Ti, Zr and ZrO₂. Of the materials investigated, the results of this study suggest that Ta-sputtered Havar foil is the preferred choice. For similar integrated currents (~1,000,000 μA min), when comparing the Ta-sputtered Havar with Nb-sputtered Havar we observed: (i) greater than an order of magnitude decrease in radionuclidic impurities, (ii) a 6.4 percent increase (p=0.0025) in the average TracerLab MX [18F]FDG yield, and (iii) an overall improvement in the FDG yield consistency. Excellent performance of the Ta-sputtered foil was maintained throughout its ~1,500,000 μA min lifetime.

摘要

作为质子辐照[18O]H2O后产生的水溶性离子污染物,已发现其与[18F]FDG产率降低有关,将这些污染物降至最低有助于提高[18F]F的反应活性。为此,我们之前已经证明,与未溅射的哈伐合金相比,使用溅射铌的哈伐合金箔可降低质子辐照[18O]H2O中的放射性核素和化学杂质,提高[18F]FDG产率,并提高[18F]FDG产率的一致性。然而,由于靶内具有高反应活性的化学微环境,观察到该铌层会随时间降解。为了找到一种在保持高[18F]F反应活性方面具有更长使用寿命的材料,本项目对溅射有Nb、Pt、Ta、Ti、Zr和ZrO₂的哈伐合金箔进行了广泛研究和比较。在研究的材料中,本研究结果表明,溅射钽的哈伐合金箔是首选。对于类似的积分电流(约1,000,000 μA·min),将溅射钽的哈伐合金与溅射铌的哈伐合金进行比较时,我们观察到:(i)放射性核素杂质降低了一个数量级以上;(ii)TracerLab MX [18F]FDG平均产率提高了6.4%(p = 0.0025);(iii)FDG产率一致性总体有所改善。在其约1,500,000 μA·min的使用寿命内,溅射钽箔均保持了优异的性能。

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