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首页> 外文期刊>Physics in medicine and biology. >Whole body counter calibration using Monte Carlo modeling with an array of phantom sizes based on national anthropometric reference data.
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Whole body counter calibration using Monte Carlo modeling with an array of phantom sizes based on national anthropometric reference data.

机译:使用蒙特卡洛(Monte Carlo)建模对人体计数器进行校准,并根据国家人体测量参考数据对人体模型进行阵列校准。

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During construction of the whole body counter (WBC) at the Children's Nutrition Research Center (CNRC), efficiency calibration was needed to translate acquired counts of (40)K to actual grams of potassium for measurement of total body potassium (TBK) in a diverse subject population. The MCNP Monte Carlo n-particle simulation program was used to describe the WBC (54 detectors plus shielding), test individual detector counting response, and create a series of virtual anthropomorphic phantoms based on national reference anthropometric data. Each phantom included an outer layer of adipose tissue and an inner core of lean tissue. Phantoms were designed for both genders representing ages 3.5 to 18.5 years with body sizes from the 5th to the 95th percentile based on body weight. In addition, a spherical surface source surrounding the WBC was modeled in order to measure the effects of subject mass on room background interference. Individual detector measurements showed good agreement with the MCNP model. The background source model came close to agreement with empirical measurements, but showed a trend deviating from unity with increasing subject size. Results from the MCNP simulation of the CNRC WBC agreed well with empirical measurements using BOMAB phantoms. Individual detector efficiency corrections were used to improve the accuracy of the model. Nonlinear multiple regression efficiency calibration equations were derived for each gender. Room background correction is critical in improving the accuracy of the WBC calibration.
机译:在儿童营养研究中心(CNRC)建造全身计数器(WBC)的过程中,需要进行效率校准,以将获取的(40)K计数转换为实际的钾克数,以测量各种人体中的总钾(TBK)主题人口。 MCNP蒙特卡罗n粒子模拟程序用于描述WBC(54个探测器加屏蔽),测试单个探测器的计数响应,并根据国家参考人体测量学数据创建一系列虚拟拟人化体模。每个体模包括脂肪组织的外层和瘦组织的内芯。人体模型专为年龄介于3.5至18.5岁之间的男女而设计,其体重从5%到95%不等。另外,对WBC周围的球形表面源进行了建模,以测量对象质量对房间背景干扰的影响。单个探测器的测量结果与MCNP模型具有很好的一致性。背景源模型与经验测量结果非常接近,但是随着对象规模的增加,趋势显示出偏离统一性的趋势。 CNRC白细胞的MCNP模拟结果与使用BOMAB体模的经验测量结果非常吻合。单个检测器效率校正用于提高模型的准确性。针对每个性别推导了非线性多元回归效率校准方程。室内背景校正对于提高WBC校准的准确性至关重要。

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