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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Impact on 141Ce, 144Ce, 95Zr, and 90Sr beta emitter dose coefficients of photon and electron SAFs calculated with ICRP/ICRU reference adult voxel computational phantoms.
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Impact on 141Ce, 144Ce, 95Zr, and 90Sr beta emitter dose coefficients of photon and electron SAFs calculated with ICRP/ICRU reference adult voxel computational phantoms.

机译:影响到公元141年,公元144年,95年锆、和90年老β发射器光子和电子的剂量系数SAFs计算与ICRP / ICRU参考成人立体像素计算幻影。

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The current dose coefficients for internal dose assessment of occupationally exposed persons and the general public were derived using the methodology of the International Commission on Radiological Protection (ICRP), which is similar to the Medical Internal Radiation Dose (MIRD)-type methodology. One component of this methodology is the mathematical representation of the human body (so-called MIRD-type phantoms) developed at the Oak Ridge National Laboratory for calculations of photon specific absorbed fractions (SAFs). Concerning the beta emissions, it is assumed in general that they irradiate only the organ where the radionuclide resides, whereas for walled organs, a fixed fraction of the emitted energy is absorbed within the wall. For the active marrow and bone surface targets, absorbed fractions were explicitly provided in ICRP Publication 30. The ICRP Publications 66 and 100 contain further detailed energy-dependent absorbed fraction data for the airways and the segments of the alimentary tract. In the present work, the voxel phantoms representing the reference male and female adults, recently developed at the Helmholtz Zentrum Munchen-German Research Center for Environmental Health (HMGU) in collaboration with the Task Group DOCAL of ICRP Committee 2, were used for the Monte Carlo computation of photon as well as electron SAFs. These voxel phantoms, being constructed from computed tomography (CT) scans of individuals, are more realistic in shape and location of organs in the body than the mathematical phantoms; therefore, they provide photon SAFs that are more precise than those stemming from mathematical phantoms. In addition, electron SAFs for solid and walled organs as well as tissues in the alimentary tract, the respiratory tract, and the skeleton were calculated with Monte Carlo methods using these phantoms to complement the data of ICRP Publications 66 and 100 that are confined to self-irradiation. The SAFs derived for photons and electrons are then used to calculate the dose coefficients of the beta emitters 141Ce, 144Ce, 95Zr, and 90Sr. It is found that the differences of the dose coefficients due to the revised SAFs are much larger for injection and ingestion than for inhalation. The equivalent doses for colon and ingestion with the new voxel-based SAFs are significantly smaller than the values with the MIRD-type photon SAFs and simplifying assumptions for electrons. For lungs and inhalation, no significant difference was observed for the equivalent doses, whereas for injection and ingestion, an increase of the new values is observed.
机译:当前的剂量系数为内部剂量职业性暴露人员和评估公众是派生的使用国际委员会的方法放射防护(ICRP)是相似的医疗内部辐射剂量(MIRD)类型的方法。的数学表示方法人体(所谓的MIRD-type幻影)在橡树岭国家实验室的发展为计算特定吸收的光子分数(SAFs)。认为一般而言,他们只照射放射性核素所在器官,而有围墙的器官,固定的一部分释放出的能量被吸收在墙上。活跃的骨髓和骨骼表面的目标,吸收分数被显式地提供ICRP出版30。100年进一步包含详细的依赖资源为航空公司和吸收一部分数据消化道的片段。工作,体元代表的幻影最近参考成人男性和女性亥姆霍兹Munchen-German中心的开发的环境与健康研究中心(HMGU)的任务组DOCAL合作ICRP委员会2,用于蒙特卡洛计算光子和电子SAFs。这些体素的幽灵,是由个人计算机断层扫描(CT)扫描,更现实的形状和位置的比数学体内器官幻影;比源于更精确数学的幻影。固体和围墙的器官和组织消化道、呼吸道骨骼与蒙特卡罗计算使用这些幻影补充的方法ICRP出版物66年和100年的数据局限于自辐照。然后使用光子和电子计算剂量的β系数发射器公元141年,公元144年,老锆、95和90。发现剂量的差异由于SAFs修正系数是多少更大的注入和摄入比吸入。与新分布SAFs摄入明显比的值小MIRD-type光子SAFs和简化假设为电子。显著差异的观察等效剂量,而注入和摄入,增加新的值观察到。

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