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Measurements and simulations of boron carbide as degrader material for proton therapy

机译:碳化硼作为质子治疗降解材料的测量和模拟

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We report on test measurements using boron carbide (B4C) as degrader material in comparison with the conventional graphite, which is currently used in many proton therapy degraders. Boron carbide is a material of lower average atomic weight and higher density than graphite. Calculations predict that, compared to graphite, the use of boron carbide results in a lower emittance behind the degrader due to the shorter degrader length. Downstream of the acceptance defining collimation system we expect a higher beam transmission, especially at low beam energies. This is of great interest in proton therapy applications as it allows either a reduction of the beam intensity extracted from the cyclotron leading to lower activation or a reduction of the treatment time. This paper summarizes the results of simulations and experiments carried out at the PROSCAN facility at the Paul Scherrer Institute(1). The simulations predict an increase in the transmitted beam current after the collimation system of approx. 30.5% for beam degradation from 250 to 84 MeV for a boron carbide degrader compared to graphite. The experiment carried out with a boron carbide block reducing the energy to 84 MeV yielded a transmission improvement of 37% compared with the graphite degrader set to that energy.
机译:与传统的石墨相比,我们报告了使用碳化硼(B4C)作为降解材料的测试测量结果,而传统的石墨目前在许多质子疗法降解器中使用。碳化硼是比石墨低的平均原子量和较高的密度的材料。计算表明,与石墨相比,碳化硼的使用由于降解剂长度较短而导致在降解剂后面的发射率较低。在验收定义准直系统的下游,我们期望更高的光束传输,尤其是在低光束能量下。这在质子治疗应用中引起了极大的兴趣,因为它可以降低从回旋加速器提取的射束强度,从而导致较低的活化度或减少治疗时间。本文总结了Paul Scherrer研究所(1)的PROSCAN设施进行的仿真和实验结果。该模拟预测在准直系统经过约10m的准直系统后,透射束电流的增加。与石墨相比,碳化硼降解器的束从250 MeV降解到84 MeV占30.5%。用碳化硼块将能量降低到84 MeV进行的实验,与设置为该能量的石墨降解器相比,传输率提高了37%。

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