首页> 外文期刊>Nuclear Medicine and Biology >Cyclotron production of (99m)Tc: experimental measurement of the (100)Mo(p,x)(99)Mo, (99m)Tc and (99g)Tc excitation functions from 8 to 18 MeV.
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Cyclotron production of (99m)Tc: experimental measurement of the (100)Mo(p,x)(99)Mo, (99m)Tc and (99g)Tc excitation functions from 8 to 18 MeV.

机译:回旋加速器产生的(99m)Tc:(100)Mo(p,x)(99)Mo,(99m)Tc和(99g)Tc激发函数从8到18 MeV的实验测量。

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INTRODUCTION: The cyclotron-based (100)Mo(p,2n)(99m)Tc transformation has been proposed as a viable alternative to the reactor based (235)U(n,f)(99)Mo-->(99m)Tc strategy for production of (99m)Tc. Despite efforts to theoretically model the amount of ground-state (99g)Tc present at end of bombardment for the (p,2n) reaction, experimental validation has yet to be performed. The co-production of (99g)Tc may have important implications in both the subsequent radiopharmaceutical chemistry and patient dosimetry upon injection. METHODS: To determine the extent of (99g)Tc co-production, we have experimentally measured the (100)Mo(p,x)(99)Mo, (99m)Tc, and (99g)Tc excitation functions in the 8-18 MeV range using a combination of natural abundance and 97.42% enriched (100)Mo foils along with gamma-ray spectrometry and ICP-MS. Although the excitation functions for production of (99)Mo and (99m)Tc have been presented previously in the literature, to the best of our knowledge, this work presents the first experimental evaluation of the (100)Mo(p,2n)(99g)Tc excitation function. RESULTS: From the experimental cross-section measurements, the (99m)Tc production yields and (99m)Tc/(99m+g)Tc nuclei ratio were calculated for various thick target irradiation conditions. Results suggest that TBq quantities of (99m)Tc can be achieved with a (99m)Tc/(99m+g)Tc nuclei ratio that is on par with the current (99)Mo/(99m)Tc generator standard eluted at a 24-h frequency. CONCLUSION: These findings suggest that the cyclotron production of (99m)Tc may be a feasible alternative to the current reactor-based production strategy.
机译:简介:基于回旋加速器的(100)Mo(p,2n)(99m)Tc变换已被提议作为基于反应堆的(235)U(n,f)(99)Mo->(99m)的可行替代方案生产(99m)Tc的Tc策略。尽管在理论上做出了努力来模拟轰击结束时(p,2n)反应中存在的基态(99g)Tc的量,但尚未进行实验验证。 (99g)Tc的联产可能对随后的放射性药物化学和注射后患者剂量测定都有重要意义。方法:为了确定(99g)Tc联产的程度,我们通过实验测量了8位分子中的(100)Mo(p,x)(99)Mo,(99m)Tc和(99g)Tc激发函数。 18 MeV范围结合使用自然丰度和97.42%富集的(100)Mo箔以及伽马射线光谱仪和ICP-MS。尽管先前已经在文献中介绍了用于生成(99)Mo和(99m)Tc的激发函数,但据我们所知,这项工作还是对(100)Mo(p,2n)( 99g)Tc激发功能。结果:从实验横截面测量,计算了各种厚目标辐照条件下的(99m)Tc产量和(99m)Tc /(99m + g)Tc核比。结果表明(99m)Tc /(99m + g)Tc核比可以与当前的(99)Mo /(99m)Tc发生器标准液在24洗脱时的TBq量达到TBq量-h频率。结论:这些发现表明,(99m)Tc的回旋加速器生产可能是当前基于反应堆的生产策略的可行替代方案。

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