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碳离子治疗中次级碎片对GSO闪烁体的感生放射性及其对束上OpenPET成像的影响。

Induced radioactivity of a GSO scintillator by secondary fragments in carbon ion therapy and its effects on in-beam OpenPET imaging.

作者信息

Hirano Yoshiyuki, Nitta Munetaka, Nishikido Fumihiko, Yoshida Eiji, Inadama Naoko, Yamaya Taiga

机构信息

Molecular Imaging Center, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage-ku, Chiba 263-8555, Japan.

出版信息

Phys Med Biol. 2016 Jul 7;61(13):4870-89. doi: 10.1088/0031-9155/61/13/4870. Epub 2016 Jun 9.

Abstract

The accumulation of induced radioactivity within in-beam PET scanner scintillators is of concern for its long-term clinical usage in particle therapy. To estimate the effects on OpenPET which we are developing for in-beam PET based on GSOZ (Zi doped Gd2SiO5), we measured the induced radioactivity of GSO activated by secondary fragments in a water phantom irradiation by a (12)C beam with an energy of 290 MeV u(-1). Radioisotopes of Na, Ce, Eu, Gd, Nd, Pm and Tb including positron emitters were observed in the gamma ray spectra of the activated GSO with a high purity Ge detector and their absolute radioactivities were calculated. We used the Monte Carlo simulation platform, Geant4 in which the observed radioactivity was assigned to the scintillators of a precisely reproduced OpenPET and the single and coincidence rates immediately after one treatment and after one-year usage were estimated for the most severe conditions. Comparing the highest coincidence rate originating from the activated scintillators (background) and the expected coincidence rate from an imaging object (signal), we determined the expected signal-to-noise ratio to be more than 7 within 3 min and more than 10 within 1 min from the scan start time. We concluded the effects of scintillator activation and their accumulation on the OpenPET imaging were small and clinical long-term usage of the OpenPET was feasible.

摘要

束内正电子发射断层扫描(PET)扫描仪闪烁体中感生放射性的积累,对于其在粒子治疗中的长期临床应用而言是一个值得关注的问题。为了评估对我们基于GSOZ(掺镱的Gd2SiO5)正在开发的用于束内PET的OpenPET的影响,我们在水模体受能量为290 MeV u(-1)的(12)C束照射时,测量了次级碎片激活GSO产生的感生放射性。使用高纯锗探测器在激活的GSO的γ射线能谱中观察到了包括正电子发射体在内的Na、Ce、Eu、Gd、Nd、Pm和Tb的放射性同位素,并计算了它们的绝对放射性。我们使用蒙特卡罗模拟平台Geant4,将观察到的放射性赋予精确再现的OpenPET的闪烁体,并针对最恶劣条件估计了单次治疗后和使用一年后的单事件率和符合率。通过比较来自激活闪烁体的最高符合率(本底)和成像对象的预期符合率(信号),我们确定从扫描开始时间起3分钟内预期信噪比大于7,1分钟内大于10。我们得出结论,闪烁体激活及其积累对OpenPET成像的影响很小,OpenPET的临床长期使用是可行的。

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