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94m锝在生产、加工及微型正电子发射断层扫描图像质量方面的进展。

Advances in the production, processing and microPET image quality of technetium-94m.

作者信息

Bigott Heather M, Laforest Richard, Liu Xiaodong, Ruangma Ananya, Wuest Frank, Welch Michael J

机构信息

Department of Chemistry, University of Missouri-Columbia, Columbia, MO 65211, USA.

出版信息

Nucl Med Biol. 2006 Oct;33(7):923-33. doi: 10.1016/j.nucmedbio.2006.07.001.

Abstract

This work involves the production, processing and imaging of the short-lived, rarely used positron emission tomography (PET) radionuclide technetium-94m (94mTc). Our procedures are an extension of methods reported in the literature and are detailed within. A key modification was the development of a single step that combines purification and concentration of an aqueous 94mTc-pertechnetate solution, which both reduces processing time and increases the final concentration of the solution. Additionally, a convenient method for the direct recovery of 94mTc into an organic solvent was developed, eliminating the solvent transfer step needed for organic syntheses using 94mTc. Each of these advances potentially extends the scope of syntheses possible with this short-lived radionuclide. To explore the imaging potential of 94mTc, we carried out phantom imaging studies on small-scale high-resolution PET scanners to estimate the limitations of detection associated with 94mTc and PET. Preliminary studies demonstrate that useful images can be obtained with modern image reconstruction algorithms when using a correction for the cascade gamma ray contamination.

摘要

这项工作涉及短寿命、罕用的正电子发射断层扫描(PET)放射性核素锝-94m(94mTc)的生产、加工和成像。我们的程序是文献中报道方法的扩展,详情如下。一个关键的改进是开发了一个将高锝酸94mTc水溶液的纯化和浓缩结合在一起的单一步骤,这既减少了加工时间,又提高了溶液的最终浓度。此外,还开发了一种将94mTc直接回收至有机溶剂中的简便方法,省去了使用94mTc进行有机合成所需的溶剂转移步骤。这些进展中的每一项都有可能扩展使用这种短寿命放射性核素进行合成的范围。为了探索94mTc的成像潜力,我们在小型高分辨率PET扫描仪上进行了体模成像研究,以估计与94mTc和PET相关的检测局限性。初步研究表明,当使用级联伽马射线污染校正时,采用现代图像重建算法可以获得有用的图像。

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