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Fabrication of devices for channeling-based high-energy micro-beams

机译:用于沟通基高能量微梁的装置的制造

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Presently MeV energy micro-beams are employed to study the cell response to radiation-induced damage. In fact, one of the frontiers is the study of radiobiological effects of particle radiation on human tissues. At relatively low energy (of the order of MeV), micro-beam facilities have been constructed to irradiate living cells with the aim to understand the architecture of biological tissues on radiation response and its behaviour at low dose. Interaction of radiation at high energy (GeV or higher) and its effects have indeed been considered for interplanetary space missions where a human equipage is being submitted to prolonged interaction with direct cosmic radiation. Thus, some particle accelerator laboratories study methods for implementation of micro-beam facilities to address the interaction of high-energy protons and ions with cells. A channeling-based scheme for generation of micro-beams has been proposed in the past; two designs for micro-collimator devices have been considered in this study and preliminary samples have been accordingly produced.
机译:目前,MeV能量微梁用于研究细胞应对辐射诱导的损伤。事实上,其中一个边界是粒子辐射对人组织的放射性作用的研究。在相对较低的能量(MEV的顺序)中,已经构建了微束设施以照射活细胞,以了解在低剂量下的辐射反应和其行为的生物组织结构。对高能量(GEV或更高)的辐射相互作用确实考虑了用于行星际空间任务,其中人类设备正在提交与直接宇宙辐射的长时间相互作用。因此,一些粒子加速器实验室的实施方法,用于实施微束设施,以解决高能量质子和离子与细胞的相互作用。过去已经提出了一种基于基于微束的运动的方案;在本研究中考虑了两种微准直升机器件设计,并因此产生了初步样本。

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