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Determination of energy of a clinical electron beam as part of a routine quality assurance and audit system

机译:作为常规质量保证和审计系统的一部分,确定临床电子束的能量。

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A method to determine the electron beam energy and an electron audit based on the current IPEM electron Code of Practice has been devised. During the commissioning on the new Varian 21OOCD linear accelerator in The Middlesex Hospital, two methods were devised for the determination of electron energy. The first method involves the use of a two-depth method, whereby the ratio of ionisation (presented as a percentage) measured by an ion chamber at two depths in solid water is used to compare against the baseline ionisation depth value for that energy. The second method involves the irradiation of an X-ray film in solid water to obtain a depth dose curve and, hence determine the half value depth and practical range of the electrons. The results showed that the two-depth method has a better accuracy, repeatability, reliability and consistency than the X-ray method. The results for the electron audit showed that electron absolute outputs are obtained from ionisation measurements in solid water, where the energy-range parameters such as practical range and the depth at which ionisation is 50% of that at the maximum for the depth-ionisation curve are determined.
机译:已经设计了一种基于当前IPEM电子的实践码确定电子束能量和电子审计的方法。在新瓦里安21Oocd线性加速器的调试期间,设计了两种方法,用于测定电子能量。第一种方法涉及使用双深度方法,由此通过在固体水中的两个深度处由离子室测量的离子化(呈现为百分比)的比率用于与该能量的基线电离深度值进行比较。第二种方法涉及在固水中照射X射线膜以获得深度剂量曲线,因此确定电子的半值和实际范围。结果表明,双深度方法具有比X射线法更好的精度,可重复性,可靠性和一致性。用于电子审计结果表明,电子从固体水,电离测量获得绝对值输出,其中所述能量范围的参数,如实际范围和在该离子化是50%,在最大的深度电离曲线的深度确定。

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