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使用碳-11束流照射对小型开放式正电子发射断层扫描(OpenPET)原型进行蒙特卡罗模拟:次级粒子对束流中成像的影响

Monte Carlo simulation of small OpenPET prototype with (11)C beam irradiation: effects of secondary particles on in-beam imaging.

作者信息

Hirano Yoshiyuki, Yoshida Eiji, Kinouchi Shoko, Nishikido Fumihiko, Inadma Naoko, Murayama Hideo, 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. 2014 Apr 7;59(7):1623-40. doi: 10.1088/0031-9155/59/7/1623. Epub 2014 Mar 10.

Abstract

In-beam positron emission tomography (PET) can enable visualization of an irradiated field using positron emitters (β+ decay). In particle therapies, many kinds of secondary particles are produced by nuclear interactions, which affect PET imaging. Our purpose in this work was to evaluate effects of secondary particles on in-beam PET imaging using the Monte Carlo simulation code, Geant4, by reproducing an experiment with a small OpenPET prototype in which a PMMA phantom was irradiated by a (11)C beam. The number of incident particles to the detectors and their spectra, background coincidence for the PET scan, and reconstructed images were evaluated for three periods, spill-time (beam irradiation), pause-time (accelerating the particles) and beam-off time (duration after the final spill). For spill-time, we tested a background reduction technique in which coincidence events correlated with the accelerator radiofrequency were discarded (RF gated) that has been proposed in the literature. Also, background generation processes were identified. For spill-time, most background coincidences were caused by prompt gamma rays, and only 1.4% of the total coincidences generated β+ signals. Differently, for pause-time and beam-off time, more than 75% of the total coincidence events were signals. Using these coincidence events, we failed to reconstruct images during the spill-time, but we obtained successful reconstructions for the pause-time and beam-off time, which was consistent with the experimental results. From the simulation, we found that the absence of materials in the beam line and using the RF gated technique improved the signal-to-noise ratio for the spill-time. From an additional simulation with range shifter-less irradiation and the RF gated technique, we showed the feasibility of image reconstruction during the spill-time.

摘要

束流正电子发射断层扫描(PET)能够利用正电子发射体(β+衰变)实现对辐照野的可视化。在粒子治疗中,核相互作用会产生多种次级粒子,这会影响PET成像。我们开展这项工作的目的是,通过使用蒙特卡罗模拟代码Geant4重现一个实验,来评估次级粒子对束流PET成像的影响。该实验使用一个小型OpenPET原型,用(11)C束流照射一个聚甲基丙烯酸甲酯(PMMA)体模。针对三个时段评估了探测器的入射粒子数量及其能谱、PET扫描的本底符合事件以及重建图像,这三个时段分别是溢出时间(束流照射)、暂停时间(粒子加速)和束流关闭时间(最后一次溢出后的持续时间)。对于溢出时间,我们测试了一种背景降低技术,即丢弃与加速器射频相关的符合事件(射频门控),这是文献中提出的方法。此外,还确定了本底产生过程。对于溢出时间,大多数本底符合事件是由瞬发伽马射线引起的,并且在总符合事件中只有1.4%产生β+信号。不同的是,对于暂停时间和束流关闭时间,总符合事件中有超过75%是信号。利用这些符合事件,我们在溢出时间未能重建图像,但在暂停时间和束流关闭时间成功获得了重建图像,这与实验结果一致。通过模拟,我们发现束流线路中没有材料以及使用射频门控技术提高了溢出时间的信噪比。通过无射程移位器照射和射频门控技术的额外模拟,我们展示了在溢出时间进行图像重建的可行性。

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