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超高脉冲剂量率的超短脉冲兆伏电子束的放射生物学反应

Radiobiological response to ultra-short pulsed megavoltage electron beams of ultra-high pulse dose rate.

作者信息

Beyreuther Elke, Karsch Leonhard, Laschinsky Lydia, Leßmann Elisabeth, Naumburger Doreen, Oppelt Melanie, Richter Christian, Schürer Michael, Woithe Julia, Pawelke Jörg

机构信息

a Helmholtz-Zentrum Dresden - Rossendorf , Bautzner Landstraße 400, Dresden , Germany.

b OncoRay - National Center for Radiation Research in Oncology , Dresden , Germany.

出版信息

Int J Radiat Biol. 2015 Aug;91(8):643-52. doi: 10.3109/09553002.2015.1043755. Epub 2015 Jun 12.

Abstract

PURPOSE

In line with the long-term aim of establishing the laser-based particle acceleration for future medical application, the radiobiological consequences of the typical ultra-short pulses and ultra-high pulse dose rate can be investigated with electron delivery.

MATERIALS AND METHODS

The radiation source ELBE (Electron Linac for beams with high Brilliance and low Emittance) was used to mimic the quasi-continuous electron beam of a clinical linear accelerator (LINAC) for comparison with electron pulses at the ultra-high pulse dose rate of 10(10) Gy min(-1) either at the low frequency of a laser accelerator or at 13 MHz avoiding effects of prolonged dose delivery. The impact of pulse structure was analyzed by clonogenic survival assay and by the number of residual DNA double-strand breaks remaining 24 h after irradiation of two human squamous cell carcinoma lines of differing radiosensitivity.

RESULTS

The radiation response of both cell lines was found to be independent from electron pulse structure for the two endpoints under investigation.

CONCLUSIONS

The results reveal, that ultra-high pulse dose rates of 10(10) Gy min(-1) and the low repetition rate of laser accelerated electrons have no statistically significant influence (within the 95% confidence intervals) on the radiobiological effectiveness of megavoltage electrons.

摘要

目的

为了实现建立基于激光的粒子加速技术以用于未来医学应用的长期目标,可通过电子传输来研究典型超短脉冲和超高脉冲剂量率的放射生物学后果。

材料和方法

使用辐射源ELBE(高亮度低发射度电子直线加速器)来模拟临床直线加速器(LINAC)的准连续电子束,以便与激光加速器低频下或13 MHz频率下10(10) Gy min(-1)的超高脉冲剂量率的电子脉冲进行比较,避免长时间剂量传输的影响。通过克隆形成存活试验以及对两种放射敏感性不同的人鳞状细胞癌系进行照射后24小时剩余的DNA双链断裂数量,来分析脉冲结构的影响。

结果

在所研究的两个终点方面,发现两种细胞系的辐射反应均与电子脉冲结构无关。

结论

结果表明,10(10) Gy min(-1)的超高脉冲剂量率以及激光加速电子的低重复率对兆伏电子的放射生物学有效性没有统计学上的显著影响(在95%置信区间内)。

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