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The effect of unrealistic thyroid vertical position on thyroid dose in the MIRD phantom.

机译:不切实际的甲状腺垂直位置对MIRD体模中甲状腺剂量的影响。

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摘要

Anatomically, the thyroid gland is placed in the lower neck, extending from the level of the fifth cervical vertebra down to the first thoracic vertebra. However, the thyroid of the Medical Internal Radiation Dose (MIRD) phantom, which has been widely used for dosimetric calculation, is located right above the top of the torso and is completely included in the neck region. To investigate the effect of the unrealistic position of the thyroid in the MIRD phantom on dose calculation, thyroid absorbed doses at various vertical positions were calculated for the idealized external broad parallel photon beam from anterior-posterior, posterior-anterior, right lateral (RLAT), and left lateral (LLAT) direction using the Monte Carlo method. The thyroid absorbed dose decreased by as much as about 60% for 0.05 MeV photon in both RLAT and LLAT irradiations when the thyroid was relocated to realistic position (inserted into the torso). The effective dose also decreased by 10%, consequently. The thyroid dose of the widely accepted stylized model, the MIRD phantom, is overestimated in RLAT and LLAT irradiation geometries.
机译:解剖学上,甲状腺位于下颈部,从第五个颈椎的水平延伸到第一个胸椎。但是,已广泛用于剂量计算的医学内部辐射剂量(MIRD)体模的甲状腺位于躯干顶部的正上方,并且完全包含在颈部区域中。为了研究MIRD体模中甲状腺的不真实位置对剂量计算的影响,针对理想的外部宽平行光子束,从前后,前后,右侧(RLAT)计算了各个垂直位置的甲状腺吸收剂量,以及使用Monte Carlo方法的左侧(LLAT)方向。当将甲状腺移至实际位置(插入躯干)时,在RLAT和LLAT照射下,0.05 MeV光子的甲状腺吸收剂量最多降低约60%。因此,有效剂量也减少了10%。在RLAT和LLAT辐射几何中,MIRD体模的广为接受的甲状腺模型剂量被高估了。

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