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[利用¹⁰⁹镉激发的X射线荧光对人体骨铅进行无创测定]

[Non-invasive determination of bone lead in human body using X-ray fluorescence excited by 109Cd].

作者信息

Huang Shi-bin, Tian Lin, Cheng Huan-sheng, Pei Peng

机构信息

Shanghai Medical College, Fudan University, Shanghai 200032, China.

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2004 Nov;24(11):1470-2.

Abstract

A measurement system of X-ray fluorescence excited by 109Cd was set up for the in vivo measurement of bone lead. In the system, a HPGe detector (phi 10 mm x 7 mm) was used to detect the characteristic K X-rays of lead in tibia excited by gamma rays of 88.0 keV from 109Cd. By the normalization of lead X-rays to the coherent scatter, the content of bone lead was calculated from the calibration curves of the ratio (X-ray intensity: coherent intensity) against the lead concentration in tibia phantoms. The normalization technique rendered the measurement accuracy independent of tissue overlay thickness, bone shape, size, mass, and subject motion. Calibration curves obtained from a set of tibia phantoms with lead-doped plaster of Paris were linear. The results of pilot measurements showed that the contents of bone lead in the occupationally exposed workers were higher than those in the control group.

摘要

建立了一个由¹⁰⁹Cd激发的X射线荧光测量系统,用于体内骨铅测量。在该系统中,使用一个HPGe探测器(直径10 mm×7 mm)来探测由¹⁰⁹Cd的88.0 keVγ射线激发的胫骨中铅的特征K X射线。通过将铅X射线归一化为相干散射,根据胫骨模型中铅浓度与(X射线强度:相干强度)比值的校准曲线计算骨铅含量。归一化技术使测量精度与组织覆盖厚度、骨形状、大小、质量和受试者运动无关。从一组掺铅巴黎石膏的胫骨模型获得的校准曲线是线性的。初步测量结果表明,职业暴露工人的骨铅含量高于对照组。

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