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强子治疗与空间辐射的最新测量:核物理学

Recent measurements for hadrontherapy and space radiation: nuclear physics.

作者信息

Miller J

机构信息

Life Sciences Division, Lawrence Berkeley Laboratory, Berkeley, California 94720, USA.

出版信息

Phys Med. 2001;17 Suppl 1:45-9.

Abstract

The particles and energies commonly used for hadron therapy overlap the low end of the charge and energy range of greatest interest for space radiation applications, Z=1-26 and approximately 100-1000 MeV/nucleon. It has been known for some time that the nuclear interactions of the incident ions must be taken into account both in treatment planning and in understanding and addressing the effects of galactic cosmic ray ions on humans in space. Until relatively recently, most of the studies of nuclear fragmentation and transport in matter were driven by the interests of the nuclear physics and later, the hadron therapy communities. However, the experimental and theoretical methods and the accelerator facilities developed for use in heavy ion nuclear physics are directly applicable to radiotherapy and space radiation studies. I will briefly review relevant data taken recently at various accelerators, and discuss the implications of the measurements for radiotherapy, radiobiology and space radiation research.

摘要

强子治疗中常用的粒子和能量与空间辐射应用最感兴趣的电荷和能量范围的低端重叠,即Z = 1 - 26且约为100 - 1000 MeV/核子。一段时间以来人们已经知道,在治疗计划以及理解和解决银河系宇宙射线离子对太空中人类的影响时,都必须考虑入射离子的核相互作用。直到最近,大多数关于物质中核碎裂和输运的研究都是由核物理以及后来的强子治疗领域的兴趣所推动的。然而,为重离子核物理开发的实验和理论方法以及加速器设施可直接应用于放射治疗和空间辐射研究。我将简要回顾最近在各种加速器上获取的相关数据,并讨论这些测量结果对放射治疗、放射生物学和空间辐射研究的意义。

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