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Monitor unit calculations for external photon and electron beams: Report of the AAPM Therapy Physics Committee Task Group No. 71

机译:监视外部光子和电子束的单位计算:AAPM治疗物理委员会第71号任务组的报告

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A protocol is presented for the calculation of monitor units (MU) for photon and electron beams, delivered with and without beam modifiers, for constant source-surface distance (SSD) and source-axis distance (SAD) setups. This protocol was written by Task Group 71 of the Therapy Physics Committee of the American Association of Physicists in Medicine (AAPM) and has been formally approved by the AAPM for clinical use. The protocol defines the nomenclature for the dosimetric quantities used in these calculations, along with instructions for their determination and measurement. Calculations are made using the dose per MU under normalization conditions, D0', that is determined for each user's photon and electron beams. For electron beams, the depth of normalization is taken to be the depth of maximum dose along the central axis for the same field incident on a water phantom at the same SSD, where D 0' = 1 cGy/MU. For photon beams, this task group recommends that a normalization depth of 10 cm be selected, where an energy-dependent D 0' ≤ 1 cGy/MU is required. This recommendation differs from the more common approach of a normalization depth of dm, with D 0' = 1 cGy/MU, although both systems are acceptable within the current protocol. For photon beams, the formalism includes the use of blocked fields, physical or dynamic wedges, and (static) multileaf collimation. No formalism is provided for intensity modulated radiation therapy calculations, although some general considerations and a review of current calculation techniques are included. For electron beams, the formalism provides for calculations at the standard and extended SSDs using either an effective SSD or an air-gap correction factor. Example tables and problems are included to illustrate the basic concepts within the presented formalism.
机译:提出了一种协议,用于计算具有和不具有束修饰符的光子和电子束的监视单位(MU),用于恒定的源表面距离(SSD)和源轴距离(SAD)设置。该方案是由美国内科医师学会(AAPM)治疗物理委员会的任务组71编写的,并已由AAPM正式批准用于临床。该协议定义了这些计算中使用的剂量学的术语,以及有关其确定和测量的说明。使用归一化条件下每个MU的剂量D0'进行计算,该剂量是针对每个用户的光子和电子束确定的。对于电子束,归一化深度取为在相同SSD上入射到水幻影上的相同场沿中心轴的最大剂量深度,其中D 0'= 1 cGy / MU。对于光子束,此任务组建议选择10 cm的归一化深度,其中需要依赖于能量的D 0'≤1 cGy / MU。该建议不同于标准化深度为dm的更通用方法,D 0'= 1 cGy / MU,尽管这两个系统在当前协议中都是可接受的。对于光子束,形式主义包括使用受阻场,物理或动态楔形以及(静态)多叶准直。尽管包括一些一般性考虑和对当前计算技术的回顾,但并未提供用于强度调制放射治疗计算的形式主义。对于电子束,形式化提供了使用有效SSD或气隙校正因子对标准SSD和扩展SSD进行的计算。包括示例表和问题,以说明所提出形式主义中的基本概念。

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