论文标题
剂量表征和应用于KHz激光驱动电子束的辐射生物学
Dosimetric characterisation and application to radiation biology of a kHz laser-driven electron beam
论文作者
论文摘要
激光 - 血浆加速器可以在飞秒至皮秒持续时间范围内产生超短的电子束,与临床加速器相比,高峰值速率高峰值率。这种特殊的特征激发了他们在辐射生物学研究中的应用,以阐明高峰剂量率对活细胞生物学反应的影响,这仍在争论中。由KHz激光系统驱动的电子束可能代表了此类应用的一个有吸引力的选择,因为高重复速率可以提高平均剂量率并提高与J-Class激光加速器在10 Hz下的J级激光加速器相比提高剂量的稳定性。在这项工作中,我们介绍了KHz,低能量激光驱动的电子源的剂量表征以及癌细胞内外照射的初步结果。射击剂量测定协议启用了每个单元样品的光束稳定性和辐照条件。 HCT116结直肠癌细胞的生存测定结果与文献中报道的先前发现非常吻合,并验证了剂量测定和辐照方案的鲁棒性。
Laser-plasma accelerators can produce ultra short electron bunches in the femtosecond to picosecond duration range, resulting in high peak dose rates in comparison with clinical accelerators. This peculiar characteristic motivates their application to radiation biology studies to elucidate the effect of the high peak dose rate on the biological response of living cells, which is still being debated. Electron beams driven by kHz laser systems may represent an attractive option for such applications, since the high repetition rate can boost the mean dose rate and improve the stability of the delivered dose in comparison with J-class laser accelerators running at 10 Hz. In this work, we present the dosimetric characterisation of a kHz, low energy laser-driven electron source and preliminary results on in-vitro irradiation of cancer cells. A shot-to-shot dosimetry protocol enabled to monitor the beam stability and the irradiation conditions for each cell sample. Results of survival assays on HCT116 colorectal cancer cells are in good agreement with previous findings reported in literature and validate the robustness of the dosimetry and irradiation protocol.