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Influence of Secondary Particles from Heavy Ion Irradiation to in-beam OpenPET detectors

机译:二次粒子对梁孔探测中的次级粒子的影响

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We are investigating the influences of heavy ion irradiation on the detectors for in-beam OpenPET by using the Heavy Ion Medical Accelerator in Chiba (HIMAC) at the National institute of Radiological Sciences (NIRS). "OpenPET" which consists of two detector rings separated axially is suitable for in-beam PET in heavy ion therapy due to the open space between the separated detector rings. All of the annihilation gamma rays from irradiated volumes enter obliquely into the OpenPET detectors. Therefore, detectors which can measure depth of interaction (DOI) are required to reduce parallax error. Previously, we have succeeded in crystal identification using the DOI detector consisting of four-layer crystal blocks and a 256-channel position-sensitive photomultiplier tube by optimization of the reflector arrangement. We plan to adopt DOI detectors using this method as the OpenPET detectors; however, secondary particles entering into this type detector have a possibility of degradation of detector performances. In the experiment described here, the energy and intensity of the ~(12)C beam were 290MeV/u and 10~8 -10~9 particle per second (pps). Carbon ions entered into a water phantom and the influences of irradiation, especially fragment particles, on DOI detectors were evaluated. In this presentation, we report the results of this experiment.
机译:我们正在通过在国家放射科学研究所(NIRS)中使用Chiba(HIMAC)的重离子医疗加速器来调查重离子照射对梁簧探测器的影响。由两个检测器环组成的“OpppEt”轴向分离,由于分离检测器环之间的开放空间,其在重离子疗法中适用于梁中的孔。来自照射体积的所有湮灭伽马光线倾斜进入OverPET探测器。因此,可以测量相互作用深度(DOI)的探测器来减少视差误差。以前,我们通过优化反射器装置,使用由四层晶体块和256通道位置敏感光电倍增管组成的DOI检测器成功进行了晶体识别。我们计划使用这种方法采用DOI探测器作为OpenPET探测器;然而,进入该类型检测器的二级粒子具有检测器性能降低的可能性。在这里描述的实验中,〜(12)C光束的能量和强度为每秒290mev / u和10〜8 -10〜9颗粒(PPS)。评估了进入水体模的碳离子和辐射,特别是片段颗粒的影响,在DOI探测器上。在本演示文稿中,我们报告了该实验的结果。

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