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一种用于测定胫骨铅含量的增强灵敏度K壳层X射线荧光技术。

An enhanced sensitivity K-shell x-ray fluorescence technique for tibial lead determination.

作者信息

Green S, Bradley D A, Palethorpe J E, Mearman D, Chettle D R, Lewis A D, Mountford P J, Morgan W D

机构信息

Department of Medical Physics and Biomedical Engineering, Queen Elizabeth Medical Centre, Edgbaston, Birmingham, UK.

出版信息

Phys Med Biol. 1993 Mar;38(3):389-96. doi: 10.1088/0031-9155/38/3/006.

Abstract

A novel irradiation-detection geometry capable of enhancing sensitivity for the measurement of tibial lead content by K-shell x-ray fluorescence (XRF) is described. The high-count-rate system comprised a small-area high-specific-activity (0.147 GBq mm-2) 109Cd source and a large-area (nominally 20 cm2) uncollimated detector, forming an axially symmetric back-scattering arrangement. Precisions in the range +/- 4.9 to +/- 14.2 micrograms Pb (g bone mineral)-1 have been obtained in a study of a cohort of 63 controls and 73 workers industrially exposed to lead. These precisions are comparable with those obtained in results using earlier systems, but at reduced source activities (less than 50% of the activity of other systems) and with significant reduction in measurement time (some 30% less than the measurement times of other systems). Subsequent investigation of detector collimation resulted in a marginal improvement in energy resolution, but the restriction in detected photon fluence meant that there was an insignificant change in detection sensitivity. For the resistive feedback preamplifier used in this study a maximum energy rate of the order of 7000 MeV s-1 was found to limit measurement precisions significantly. Higher-count-rate detector systems offer a basis for obtaining mean precisions down to +/- 3 micrograms Pb (g bone mineral)-1 at one standard deviation.

摘要

本文描述了一种新型的辐射检测几何结构,它能够通过K壳层X射线荧光(XRF)提高测量胫骨铅含量的灵敏度。该高计数率系统包括一个小面积高比活度(0.147 GBq·mm-2)的109Cd源和一个大面积(标称20 cm2)的无准直探测器,形成轴向对称的背散射排列。在一项对63名对照者和73名职业性铅暴露工人的研究中,获得了±4.9至±14.2微克铅/(克骨矿物质)-1范围内的精度。这些精度与使用早期系统获得的精度相当,但源活度降低(低于其他系统活度的50%),测量时间显著减少(比其他系统的测量时间少约30%)。随后对探测器准直的研究使能量分辨率略有提高,但检测到的光子注量的限制意味着检测灵敏度的变化微不足道。对于本研究中使用的电阻反馈前置放大器,发现约7000 MeV·s-1的最大能量率会显著限制测量精度。更高计数率的探测器系统为在一个标准差下获得低至±3微克铅/(克骨矿物质)-1的平均精度提供了基础。

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