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首页> 外文期刊>Medical Physics >An accelerator based system for in vivo neutron activation analysis measurements of manganese in human hand bones.
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An accelerator based system for in vivo neutron activation analysis measurements of manganese in human hand bones.

机译:基于加速器的系统,用于人体中手中锰的体内中子活化分析测量。

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摘要

Manganese (Mn) is an essential nutrient for growth and development. Unfortunately, overexposure can lead to neurological damage, which is manifested as a movement disorder marked by tremors. Preclinical symptoms have been found in populations occupationally exposed to the element, and it is suggested that in late stages of the disorder, removing the Mn exposure will not prevent symptoms from progressing. Hence, it is desirable to have a means of monitoring Mn body burden. In vivo neutron activation analysis (IVNAA) is a technique which allows the concentration of some elements to be determined within sites of the body without invasive procedures. Data in the literature suggests that the Mn concentration in bone is greater than other tissues, and that it may be a long term storage site following exposure. Therefore, using the McMaster KN-accelerator to produce neutrons through the 7Li(p,n)7Be reaction, the feasibility of IVNAA for measuring Mn levels in the human hand bone was investigated. Mn is activated through the 55Mn(n,gamma)56Mn reaction, and the 847 keV gamma rays emitted when 56Mn decays are measured outside the body using NaI(Tl) detectors. An optimal incident proton energy of 2.00 MeV was determined from indium foil and microdosimetry measurements. Hand phantom data suggest a minimum detectable limit of approximately 1.8 ppm could be achieved with a reasonably low dose of 50 mSv to the hand (normal manganese levels in the human hand are approximately 1 ppm). It is recommended the technique be developed further to make human in vivo measurements.
机译:锰(Mn)是生长发育必不可少的营养素。不幸的是,过度接触会导致神经系统损害,表现为以震颤为特征的运动障碍。在职业性接触该元素的人群中发现了临床前症状,并且建议在疾病的晚期阶段,去除锰暴露不会阻止症状的发展。因此,希望有一种监测锰体重的方法。体内中子活化分析(IVNAA)是一种无需侵入性程序即可确定体内某些元素浓度的技术。文献中的数据表明,骨骼中的锰浓度高于其他组织,并且可能是暴露后的长期储存部位。因此,使用McMaster KN促进剂通过7Li(p,n)7Be反应产生中子,研究了IVNAA测量人手骨骼中Mn含量的可行性。 Mn通过55Mn(n,γ)56Mn反应激活,并且使用NaI(Tl)检测器在人体外测量了56Mn衰变时发出的847 keV伽马射线。从铟箔和微剂量法测量确定最佳入射质子能量为2.00 MeV。手部幻像数据表明,以相对较低的50 mSv剂量向手部可达到最低可检测极限,约为1.8 ppm(人手的正常锰水平约为1 ppm)。建议进一步开发该技术以进行人体体内测量。

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