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首页> 外文期刊>Radiation Research: Official Organ of the Radiation Research Society >Analysis of the Spatial Distribution of Free Radicals in Ammonium Tartrate by Pulse EPR Techniques
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Analysis of the Spatial Distribution of Free Radicals in Ammonium Tartrate by Pulse EPR Techniques

机译:脉冲EPR技术分析酒石酸铵中自由基的空间分布

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Using pulse electron paramagnetic resonance (EPR) on a series of L(+)-ammonium tartrate (AT) dosimeters exposed to radiations with different linear energy transfer (LET), we assessed the ability of pulse EPR spectroscopy to discriminate the quality of various radiation beams such as Co-60 gamma-ray photons,, protons and thermal neutrons at various doses by analyzing the local radical distributions produced by the different beams. We performed two types of pulse EPR investigations: two-pulse electron spin echo decay obtained by varying the microwave power, and a double electron-electron resonance (DEER) study. Both methods provide information about the dipolar interactions among the free radicals and about their spatial distributions. The first method provided information on the instantaneous diffusion and hence the microscopic concentration of the radicals that is compared with the macroscopic one obtained by CW-EPR. The DEER spectra yielded the distributions of distances between pairs of radicals two to five crystal cells apart produced by the same radiation event, a result reported here for the first time. The inter-radical distributions given by the DEER results have been simulated by modeling the radical distributions according to the details of the matter-radiation interactions for the various beams. The results of both types of pulse experiments are strongly dependent: on the radiation quality. This was also observed for samples giving indistinguishable CW-EPR spectral profiles. We conclude that the pulse EPR measurements can be valuable tools for distinguishing the LET of the radiation beams, an important parameter for radiobiological considerations. (C) 2009 by Radiation Research Society
机译:在暴露于具有不同线性能量转移(LET)辐射的一系列L(+)-酒石酸铵(AT)剂量计上,使用脉冲电子顺磁共振(EPR),我们评估了脉冲EPR光谱识别各种辐射质量的能力通过分析不同束产生的局部自由基分布,以不同剂量照射诸如Co-60伽马射线光子,质子和热中子之类的束。我们进行了两种脉冲EPR研究:通过改变微波功率获得的两脉冲电子自旋回波衰减,以及双电子电子共振(DEER)研究。两种方法都提供有关自由基之间的偶极相互作用及其空间分布的信息。第一种方法提供了有关瞬时扩散的信息,因此提供了自由基的微观浓度的信息,该信息与通过CW-EPR获得的宏观信息进行了比较。 DEER光谱产生了由同一辐射事件产生的成对的两到五个晶胞之间的自由基对之间的距离分布,这是首次在此报道的结果。 DEER结果给出的自由基间分布已通过根据各种束的物质-辐射相互作用的细节对自由基分布进行建模来模拟。两种脉冲实验的结果在很大程度上取决于:辐射质量。对于提供无法区分的CW-EPR光谱图的样品,也可以观察到这一点。我们得出的结论是,脉冲EPR测量可以成为区分辐射束LET的有价值的工具,这是放射生物学考虑的重要参数。 (C)2009年,放射研究学会

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