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Accuracy evaluation of K and L XRF lead in bone (tibia) measurement by simulation with the specific purpose Monte Carlo code NCSXRF

机译:通过使用特定目的的蒙特卡洛代码NCSXRF进行仿真,评估骨骼(胫骨)中K和L XRF铅的准确性

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Lead poisoning in humans has become of increasing interest to medical researchers in the last few years-leading to the development of in vivo X-ray fluorescence (XRF) methods of analysis. These methods suffer from larger minimum detectable concentrations (MDC) than desirable. Monte Carlo simulation is capable of providing an easier and more efficient method of investigating possible improvements in the MDC and accuracy of XRF measurement in bone through the design optimization of XRF systems. The specific purpose Monte Carlo code NCSXRF has been revised to simulate hypothesized XRF systems that measure K X rays or L X rays of lead in tibia. Preliminary results demonstrate the capability of the revised NCSXRF code in the optimization of K and L XRF measurements of lead in tibia.
机译:近年来,医学研究人员对人体中的铅中毒越来越感兴趣,这导致了体内X射线荧光(XRF)分析方法的发展。这些方法的最大最小可检测浓度(MDC)超出了预期。蒙特卡洛仿真能够通过XRF系统的设计优化,提供一种更简便,更有效的方法来研究MDC的可能改进以及骨骼中XRF测量的准确性。修改了特定用途的蒙特卡洛代码NCSXRF,以模拟假设的XRF系统,该系统可测量胫骨中K X射线或L X铅的射线。初步结果表明,修订后的NCSXRF代码可优化胫骨中铅的K和L XRF测量。

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