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Measurement of nuclear reaction cross sections by using Cherenkov radiation toward high-precision proton therapy

机译:切伦科夫辐射对高精度质子治疗的核反应截面测量

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摘要

Monitoring the in vivo dose distribution in proton therapy is desirable for the accurate irradiation of a tumor. Although positron emission tomography (PET) is widely used for confirmation, the obtained distribution of positron emitters produced by the protons does not trace the dose distribution due to the different physical processes. To estimate the accurate dose from the PET image, the cross sections of nuclear reactions that produce positron emitters are important yet far from being sufficient. In this study, we measured the cross sections of 16O(p,x)15O, 16O(p,x)13N, and 16O(p,x)11C with a wide-energy range (approximately 5–70 MeV) by observing the temporal evolution of the Cherenkov radiation emitted from positrons generated via β+ decay along the proton path. Furthermore, we implemented the new cross sectional data into a conventional Monte Carlo (MC) simulation, so that a direct comparison was possible with the PET measurement. We confirmed that our MC results showed good agreement with the experimental data, both in terms of the spatial distributions and temporal evolutions. Although this is the first attempt at using the Cherenkov radiation in the measurements of nuclear cross sections, the obtained results suggest the method is convenient and widely applicable for high precision proton therapy.
机译:监测质子疗法中的体内剂量分布对于精确地照射肿瘤是理想的。尽管正电子发射断层扫描(PET)被广泛用于确认,但由于物理过程不同,质子产生的正电子发射体的获得分布无法追踪剂量分布。为了从PET图像估算准确剂量,产生正电子发射体的核反应的截面很重要,但远远不够。在这项研究中,我们测量了 16 O(p,x) 15 O, 16 O(p,x) 13 N和 16 O(p,x) 11 C,通过观察时间演变,具有较宽的能量范围(大约5–70 MeV) β + 产生的正电子发射的Cherenkov辐射沿质子路径衰减。此外,我们将新的横截面数据应用于常规的蒙特卡洛(MC)模拟中,因此可以与PET测量进行直接比较。我们确认,我们的MC结果在空间分布和时间演变方面均与实验数据吻合良好。尽管这是在切伦科夫辐射测量核横截面中的首次尝试,但获得的结果表明该方法方便且广泛适用于高精度质子治疗。

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