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本文引用的文献

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DS02 fluence spectra for neutrons and gamma rays at Hiroshima and Nagasaki with fluence-to-kerma coefficients and transmission factors for sample measurements.广岛和长崎中子及伽马射线的DS02注量谱,以及用于样本测量的注量-比释动能系数和传输因子。
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Novel Al2O3:C,Mg fluorescent nuclear track detectors for passive neutron dosimetry.用于被动中子剂量测定的新型Al2O3:C,Mg荧光核径迹探测器。
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RBE of nearly monoenergetic neutrons at energies of 36 keV-14.6 MeV for induction of dicentrics in human lymphocytes.能量为36 keV - 14.6 MeV的近单能中子对人淋巴细胞中双着丝粒诱导的相对生物效应。
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Energy transfer to matter by neutrons.中子对物质的能量转移。
Radiat Res. 1968 Jul;35(1):1-25.

一种用于辐射效应研究的基于加速器的中子微束系统。

An accelerator-based neutron microbeam system for studies of radiation effects.

作者信息

Xu Yanping, Randers-Pehrson Gerhard, Marino Stephen A, Bigelow Alan W, Akselrod Mark S, Sykora Jeff G, Brenner David J

机构信息

Radiological Research Accelerator Facility, Columbia University, Irvington, NY 10533, USA.

出版信息

Radiat Prot Dosimetry. 2011 Jun;145(4):373-6. doi: 10.1093/rpd/ncq424. Epub 2010 Dec 3.

DOI:10.1093/rpd/ncq424
PMID:21131327
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3145382/
Abstract

A novel neutron microbeam is being developed at the Radiological Research Accelerator Facility (RARAF) of Columbia University. The RARAF microbeam facility has been used for studies of radiation bystander effects in mammalian cells for many years. Now a prototype neutron microbeam is being developed that can be used for bystander effect studies. The neutron microbeam design here is based on the existing charged particle microbeam technology at the RARAF. The principle of the neutron microbeam is to use the proton beam with a micrometre-sized diameter impinging on a very thin lithium fluoride target system. From the kinematics of the ⁷Li(p,n)⁷Be reaction near the threshold of 1.881 MeV, the neutron beam is confined within a narrow, forward solid angle. Calculations show that the neutron spot using a target with a 17-µm thick gold backing foil will be <20 µm in diameter for cells attached to a 3.8-µm thick propylene-bottomed cell dish in contact with the target backing. The neutron flux will roughly be 2000 per second based on the current beam setup at the RARAF singleton accelerator. The dose rate will be about 200 mGy min⁻¹. The principle of this neutron microbeam system has been preliminarily tested at the RARAF using a collimated proton beam. The imaging of the neutron beam was performed using novel fluorescent nuclear track detector technology based on Mg-doped luminescent aluminum oxide single crystals and confocal laser scanning fluorescent microscopy.

摘要

哥伦比亚大学放射研究加速器设施(RARAF)正在研发一种新型中子微束。多年来,RARAF微束设施一直用于研究哺乳动物细胞中的辐射旁观者效应。现在正在开发一种可用于旁观者效应研究的中子微束原型。这里的中子微束设计基于RARAF现有的带电粒子微束技术。中子微束的原理是使用直径为微米级的质子束撞击非常薄的氟化锂靶系统。根据1.881 MeV阈值附近的⁷Li(p,n)⁷Be反应的运动学,中子束被限制在一个狭窄的前向立体角内。计算表明,对于附着在与靶背接触的3.8 µm厚丙烯底部细胞培养皿上的细胞,使用带有17 µm厚金背衬箔的靶时,中子光斑直径将小于20 µm。根据RARAF单粒子加速器目前的束流设置,中子通量大约为每秒2000个。剂量率约为200 mGy min⁻¹。这种中子微束系统的原理已在RARAF使用准直质子束进行了初步测试。中子束的成像使用了基于掺镁发光氧化铝单晶和共聚焦激光扫描荧光显微镜的新型荧光核径迹探测器技术。