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首页> 外文期刊>Radiation and Environmental Biophysics >Scanning irradiation device for mice in vivo with pulsed and continuous proton beams
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Scanning irradiation device for mice in vivo with pulsed and continuous proton beams

机译:脉冲和连续质子束在体内对小鼠的扫描照射装置

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A technical set-up for irradiation of subcutaneous tumours in mice with nanosecond-pulsed proton beams or continuous proton beams is described and was successfully used in a first experiment to explore future potential of laser-driven particle beams, which are pulsed due to the acceleration process, for radiation therapy. The chosen concept uses a microbeam approach. By focusing the beam to approximately 100 × 100 μm2, the necessary fluence of 109 protons per cm2 to deliver a dose of 20 Gy with one-nanosecond shot in the Bragg peak of 23 MeV protons is achieved. Electrical and mechanical beam scanning combines rapid dose delivery with large scan ranges. Aluminium sheets one millimetre in front of the target are used as beam energy degrader, necessary for adjusting the depth–dose profile. The required procedures for treatment planning and dose verification are presented. In a first experiment, 24 tumours in mice were successfully irradiated with 23 MeV protons and a single dose of 20 Gy in pulsed or continuous mode with dose differences between both modes of 10%. So far, no significant difference in tumour growth delay was observed.
机译:描述了用纳秒脉冲质子束或连续质子束照射小鼠皮下肿瘤的技术装置,并已成功用于第一个实验中,探索了激光驱动的粒子束的未来潜力,该粒子束由于加速而被脉冲化过程,用于放射治疗。选择的概念使用微束方法。通过将光束聚焦到大约100×100μm 2 ,每厘米 2 需要10 9 质子的注量,以提供20 Gy的剂量在23 MeV质子的Bragg峰中获得1纳秒的发射电气和机械束扫描结合了快速的剂量输送和较大的扫描范围。靶材前方1毫米的铝片用作光束能量衰减器,这是调节深度剂量轮廓所必需的。介绍了治疗计划和剂量验证所需的程序。在第一个实验中,以脉冲或连续模式成功用23 MeV质子和20 Gy单剂量成功照射了24个小鼠肿瘤,两种模式之间的剂量差异为10%。迄今为止,未观察到肿瘤生长延迟的显着差异。

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