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Microbeam studies of the bystander response.

机译:旁观者反应的微波束研究。

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摘要

Microbeams have undergone a renaissance since their introduction and early use in the mid 60s. Recent advances in imaging, software and beam delivery have allowed rapid technological developments in microbeams for use in a range of experimental studies. The resurgence in the use of microbeams since the mid 90s has coincided with major changes in our understanding of how radiation interacts with cells. In particular, the evidence that bystander responses occur, where cells not directly irradiated can respond to irradiated neighbours, has brought about the evolution of new models of radiation response. Although these processes have been studied using a range of experimental approaches, microbeams offer a unique route by which bystander responses can be elucidated. Without exception, all of the microbeams currently active internationally have studied bystander responses in a range of cell and tissue models. Together these studies have considerably advanced our knowledge of bystander responses and the underpinning mechanisms. Much of this has come from charged particle microbeam studies, but increasingly, X-ray and electron microbeams are starting to contribute quantitative and mechanistic information on bystander effects. A recent development has been the move from studies with 2-D cell culture models to more complex 3-D systems where the possibilities of utilizing the unique characteristics of microbeams in terms of their spatial and temporal delivery will make a major impact.
机译:自从60年代中期问世以来,微束经历了复兴。成像,软件和光束传输方面的最新进展使微束技术得以快速发展,可用于一系列实验研究。自从90年代中期以来,使用微束的兴起与我们对辐射如何与细胞相互作用的认识发生了重大变化。尤其是,发生旁观者反应的证据使未直接照射的细胞可以对被照射的邻居做出反应,从而带来了新的辐射反应模型的演变。尽管已使用多种实验方法对这些过程进行了研究,但微束提供了独特的途径,可以阐明旁观者的反应。无一例外,目前国际上活跃的所有微束都已在一系列细胞和组织模型中研究了旁观者的反应。这些研究在一起大大提高了我们对旁观者反应和基础机制的了解。其中大部分来自带电粒子微束研究,但越来越多的X射线和电子微束开始为旁观者效应提供定量和机械信息。最近的发展是从使用2-D细胞培养模型的研究转移到更复杂的3-D系统,在这些系统中,利用微束在空间和时间传递方面的独特特征的可能性将产生重大影响。

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