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Prompt-gamma neutron activation analysis system design: Effects of D-T versus D-D neutron generator source selection

机译:瞬发伽玛中子活化分析系统设计:D-T与D-D中子发生器源选择的影响

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Prompt-gamma neutron activation (PGNA) analysis is used for the non-invasive measurement of human body composition. Advancements in portable, compact neutron generator design have made those devices attractive as neutron sources. Two distinct generators are available: D-D with 2.5 MeV and D-T with 14.2 MeV neutrons. To compare the performance of these two units in our present PGNA system, we performed Monte Carlo simulations (MCNP-5; Los Alamos National Laboratory) evaluating the nitrogen reactions produced in tissue-equivalent phantoms and the effects of background interference on the gamma-detectors. Monte Carlo response curves showed increased gamma production per unit dose when using the D-D generator, suggesting that it is the more suitable choice for smaller sized subjects. The increased penetration by higher energy neutrons produced by the D-T generator supports its utility when examining larger, especially obese, subjects. A clinical PGNA analysis design incorporating both neutron generator options may be the best choice for a system required to measure a wide range of subject phenotypes.
机译:瞬变伽玛中子活化(PGNA)分析用于人体成分的非侵入性测量。便携式紧凑型中子发生器设计的进步使这些设备成为中子源具有吸引力。可以使用两种不同的发生器:具有2.5 MeV的D-D和具有14.2 MeV中子的D-T。为了比较我们目前的PGNA系统中这两个单元的性能,我们进行了蒙特卡洛模拟(MCNP-5;洛斯阿拉莫斯国家实验室),评估了组织等效体模中产生的氮反应以及背景干扰对伽马探测器的影响。蒙特卡洛响应曲线表明,使用D-D发生器时,每单位剂量的伽马生成量增加,这表明它是更小尺寸对象的更合适的选择。 D-T发生器产生的高能中子具有更高的穿透力,可支持其在检查较大的对象(尤其是肥胖的对象)时的用途。结合了两种中子发生器选项的临床PGNA分析设计可能是测量多种受试者表型所需系统的最佳选择。

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