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首页> 外文期刊>Physics in medicine and biology. >Experimental validation of Monte Carlo calculations with a voxelized Rando-Alderson phantom: a study on influence parameters.
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Experimental validation of Monte Carlo calculations with a voxelized Rando-Alderson phantom: a study on influence parameters.

机译:用体素化的Rando-Alderson体模进行的Monte Carlo计算的实验验证:影响参数的研究。

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摘要

The development and improvement of techniques for an accurate dose assessment in medical physics is an important task. In this study, we focus on the validation of Monte Carlo calculations, by comparing organ doses assessed experimentally with thermoluminescent detectors in the Rando-Alderson phantom with doses calculated for a voxelized model of the same phantom for some typical x-ray procedures. A detailed study has been performed to identify the key parameters that affect the determination of organ doses. Initially, TLD measurements were up to 65% higher than the calculated values. After the corrections made on TLD energy dependence, TLD angular dependence, material composition and field size and position, most differences between measurements and calculations are within 15%. For organs far away from the field the difference is about 30%.
机译:开发和改进用于医学物理学中精确剂量评估的技术是一项重要任务。在这项研究中,我们通过比较在Rando-Alderson体模中用热发光检测器实验评估的器官剂量与针对某些典型X射线程序为相同体模​​的体素化模型计算的剂量进行比较,着重​​于蒙特卡罗计算的验证。已经进行了详细的研究,以确定影响器官剂量确定的关键参数。最初,TLD测量值比计算值高出65%。在对TLD能量相关性,TLD角度相关性,材料成分以及场大小和位置进行校正后,测量和计算之间的大多数差异在15%以内。对于远离野外的器官,差异约为30%。

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