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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Lauriston S. Taylor lecture on radiation protection and measurements: What makes particle radiation so effective?
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Lauriston S. Taylor lecture on radiation protection and measurements: What makes particle radiation so effective?

机译:洛里斯·泰勒关于辐射保护和测量:是什么让粒子辐射那么有效?

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摘要

The scientific basis for the physical and biological effectiveness of particle radiations has emerged from many decades of meticulous basic research. A diverse array of biologically relevant consequences at the molecular, cellular, tissue, and organism level have been reported, but what are the key processes and mechanisms that make particle radiation so effective, and what competing processes define dose dependences? Recent studies have shown that individual genotypes control radiation-regulated genes and pathways in response to radiations of varying ionization density. The fact that densely ionizing radiations can affect different gene families than sparsely ionizing radiations, and that the effects are dose-and time-dependent, has opened up new areas of future research. The complex microenvironment of the stroma and the significant contributions of the immune response have added to our understanding of tissue-specific differences across the linear energy transfer (LET) spectrum. The importance of targeted versus nontargeted effects remains a thorny but elusive and important contributor to chronic low dose radiation effects of variable LET that still needs further research. The induction of cancer is also LET-dependent, suggesting different mechanisms of action across the gradient of ionization density. The focus of this 35th Lauriston S. Taylor Lecture is to chronicle the step-by-step acquisition of experimental clues that have refined our understanding of what makes particle radiation so effective, with emphasis on the example of radiation effects on the crystalline lens of the human eye.
机译:物理和科学依据生物粒子辐射的有效性从几十年的细致的许多基本出现了吗研究。相关后果在分子、细胞、组织,生物体水平已报告,但什么是关键过程和机制使粒子辐射所以有效,什么竞争过程定义剂量依赖性?最近的研究表明,个体radiation-regulated基因和基因型控制为了应对辐射不同的途径电离密度。电离辐射会影响不同的基因家庭比稀疏电离辐射影响的剂量和时间,未来的研究开辟了新的领域。复杂的基质和微环境免疫反应的重要贡献增加了我们的理解吗在线性组织差异能量转移(让)光谱。仍然是一个有针对性的与不属预定目标的影响棘手的但难以捉摸和重要的因素慢性低剂量辐射效应的变量我们仍然需要进一步的研究。感应的癌症也LET-dependent,这表明不同的作用机制电离密度的梯度。这35洛泰勒讲座编年史的循序渐进的收购实验,改进我们的线索了解是什么让粒子辐射有效的,强调的例子辐射对晶状体的影响人类的眼睛。

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