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首页> 外文期刊>Medical Physics >Refinements to the geometry factor used in the AAPM Task Group Report No. 43 necessary for brachytherapy dosimetry calculations. American Association of Physicists in Medicine.
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Refinements to the geometry factor used in the AAPM Task Group Report No. 43 necessary for brachytherapy dosimetry calculations. American Association of Physicists in Medicine.

机译:对近距离放射治疗剂量计算所需的AAPM任务组报告第43号中使用的几何因子进行了改进。美国医学物理学家协会。

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Determination of the geometry factor is necessary for brachytherapy dosimetry calculations as recommended by the AAPM Task Group No. 43 (TG-43). The equivalence and errors associated with use of a point source approximation for an extended line segment source are examined. For all angles, the error using the point source approximation is less than 2% for distances in which the ratio of radius to active source length, (r/L), exceed about 3.6. A novel approach to determining the geometry factor using Monte Carlo methods is discussed in which the particle flux emanates from the active source and streams with no interactions occurring within the source or phantom. This method was performed for determining the geometry factor along the transverse axis for six brachytherapy sources. Differences in the geometry factor exceeding 2% between the point source approximation and that obtained using Monte Carlo methods occurred at distances ranging from 0.5 to 5 mm from the source center along the transverse plane. The merits of the Monte Carlo approach for solving the geometry factor are discussed in light of using a point or line source approximation for calculating additional brachytherapy dosimetry parameters.
机译:根据AAPM第43号任务组(TG-43)的建议,确定几何因子对于进行近距离放射治疗剂量计算是必要的。检查了与将点源近似值用于扩展线段源有关的等效性和误差。对于所有角度,对于半径与有效光源长度之比(r / L)超过约3.6的距离,使用点光源近似的误差小于2%。讨论了一种使用蒙特卡洛方法确定几何因子的新颖方法,其中粒子通量从有效源和流中散发出来,而在源或体模内没有发生相互作用。执行此方法以确定六个近距离放射治疗源沿横轴的几何因子。点源近似值与使用蒙特卡洛方法获得的几何因数之间的差异超过2%,发生在距源中心沿横向平面0.5至5 mm的距离处。根据使用点或线源近似来计算其他近距离放射治疗剂量参数,讨论了解决几何因素的蒙特卡洛方法的优点。

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