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Preliminary characterization of the external proton beam from a PET cyclotron for use in neutron and proton radiobiology and other dosimetric studies

机译:来自PET回旋加速器的外部质子束的初步表征中子和质子辐射生物学和其他剂量测量研究

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Different cyclotron models capable of accelerating protons up to 20MeV have been worldwide installed. Although their purpose is mainly positron emission tomography (PET) radioisotope production, they are equipped with several beam lines suitable for scientific research. Each beam line may typically deliver proton currents up to 150 μA (1×1015 particles/s). Radiobiological and dosimetric studies can be performed using these beam lines, which may contribute to further improve ion therapy and material radiation hardness results, among other applications. We report experimental results aiming at characterizing the proton beam achievable outside a PET cyclotron. In addition, we simulate this experimental setup by using Geant4. We show that simulation is consistent with previous published experimental data and with our first-measured results. These point to a beam angular spreading which may be utilized to establish an irradiation setup within the bunker. We estimate that the dose achievable with such setup may span 4-orders-of-magnitude, useful in radiobiology, ranging from 10mGy to 100 Gy. Finally, we show by simulation that neutron and γ-ray dose on a realistic, in-bunker target is negligible down to at most the 1% level. Further quantification for lower levels is ongoing.
机译:能够加速质子高达20MeV的不同回旋模型已被安装在世界各地。虽然他们的目的主要是正电子发射断层扫描(PET)放射性同位素生产,它们配备有适合用于科研几个束线。每束线通常可递送质子电流高达150微安(1×10 15 粒子/秒)。放射生物学和剂量测定研究可使用这些束线,其可有助于进一步提高离子疗法和材料硬度的辐射的结果,在其他应用中来执行。我们报告的实验结果上真有PET回旋加速器外表征质子束实现的。此外,我们模拟使用GEANT4该实验装置。我们表明,模拟与以前公布的实验数据和我们的首次测量的结果是一致的。这些点波束角扩展,其可用于掩体内建立的照射设置。我们估计,具有这种设置的可实现的剂量可跨越4订单的数量级,在放射生物学有用,从10mGy至100格雷。最后,我们证明通过模拟中子和γ射线剂量在现实中,掩体目标是微不足道下降到最多1%的水平。对于低级别的进一步量化正在进行中。

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