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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Monte Carlo simulation of an anthropometric phantom used for calibrating in vivo K-XRF spectroscopy measurements of stable lead in bone.
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Monte Carlo simulation of an anthropometric phantom used for calibrating in vivo K-XRF spectroscopy measurements of stable lead in bone.

机译:人体模型的蒙特卡洛模拟,用于校准骨骼中稳定铅的体内K-XRF光谱测量。

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摘要

An anthropometric surrogate (phantom) of the human leg was defined in the constructs of the Monte Carlo N Particle (MCNP) code to predict the response when used in calibrating K x-ray fluorescence (K-XRF) spectrometry measurements of stable lead in bone. The predicted response compared favorably with measurements using the anthropometric phantom containing a tibia with increasing stable lead content. These benchmark measurements confirmed the validity of a modified MCNP code to accurately simulate K-XRF spectrometry measurements of stable lead in bone. A second, cylindrical leg phantom was simulated to determine whether the shape of the calibration phantom is a significant factor in evaluating K-XRF performance. Simulations of the cylindrical and anthropometric calibration phantoms suggest that a cylindrical calibration standard overestimates lead content of a human leg up to 4%. A two-way analysis of variance determined that phantom shape is a statistically significant factor in predicting the K-XRF response. These results suggest that an anthropometric phantom provides a more accurate calibration standard compared to the conventional cylindrical shape, and that a cylindrical shape introduces a 4% positive bias in measured lead values.
机译:在Monte Carlo N粒子(MCNP)代码的构造中定义了人体腿部的人体测量替代物(幻像),以预测在校准骨骼中稳定铅的X射线荧光(K-XRF)光谱测量中使用时的响应。预测的响应与使用人体模型的人体测量模型相吻合,人体模型包含包含稳定的铅含量增加的胫骨。这些基准测量结果证实了修改后的MCNP代码可正确模拟骨骼中稳定铅的K-XRF光谱测量结果的有效性。模拟了第二个圆柱形腿模,以确定校准体模的形状是否是评估K-XRF性能的重要因素。圆柱和人体测量校准体模的仿真表明,圆柱校准标准高估了人类腿部的铅含量,最高可达4%。方差的双向分析确定,幻像形状是预测K-XRF响应的统计学显着因素。这些结果表明,与传统的圆柱形状相比,人体测量学的体模提供了更准确的校准标准,并且圆柱形状在测量的引线值中引入了4%的正偏差。

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