首页> 外文期刊>Radiotherapy and oncology: Journal of the European Society for Therapeutic Radiology and Oncology >Intensity modulated radiotherapy treatment planning for dynamic multileaf collimator delivery: influence of different parameters on dose distributions.
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Intensity modulated radiotherapy treatment planning for dynamic multileaf collimator delivery: influence of different parameters on dose distributions.

机译:动态多叶准直器输送的强度调制放疗治疗计划:不同参数对剂量分布的影响。

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BACKGROUND AND PURPOSE: This is an investigation of a dose-based conjugated gradient optimization method (implemented in the CadPlan/Helios system) applied for head and neck tumours. Optimized field fluence distributions are created and transformed into dynamic multileaf collimator (MLC) movements. The aim was to gain knowledge about the influence of different parameters on the dose distribution and how to use the optimization algorithm in an optimum way.MATERIAL AND METHODS: Parameters such as the number of beams, collimator angle and constraints and weight factors have been investigated. Dose escalation to the target volume, the target volume in the build-up region and the way of prescribing the target dose were also investigated. The dose distributions were mainly analysed with physical parameters.RESULTS AND CONCLUSIONS: The optimization algorithm is well suited to create clinical Intensity modulated radiation therapy (IMRT) treatment plans for head and neck tumours even when the target volume is situated in the build-up region. The number of beams is a critical parameter and has a great influence on the dose distribution. The choice of collimator angles is not a critical parameter. The constraints and weight factors have a great influence on the dose distribution and varying these could easily control priorities regarding dose to the target volume or to the surrounding critical organs. Because of dose variations inside the target volume, prescribing to, normalizing to and reporting the mean dose in the target volume for IMRT treatment plans is preferable to the absorbed dose at a point, for example the isocentre point.
机译:背景与目的:这是对用于头颈部肿瘤的基于剂量的共轭梯度优化方法(在CadPlan / Helios系统中实现)的研究。创建优化的场注量分布,并将其转换为动态多叶准直器(MLC)运动。目的是了解有关不同参数对剂量分布的影响以及如何以最佳方式使用优化算法的知识。材料与方法:研究了光束数量,准直器角度,约束条件和重量因子等参数。还研究了剂量递增至目标体积,聚集区域中的目标体积以及制定目标剂量的方式。结果和结论:即使目标体积位于集结区域,该优化算法也非常适合创建针对头颈部肿瘤的临床调强放射治疗(IMRT)治疗计划。 。束数是关键参数,并且对剂量分布有很大影响。准直器角度的选择不是关键参数。限制因素和重量因素对剂量分布有很大影响,改变这些限制因素和重量因素可以轻松控制有关目标体积或周围关键器官剂量的优先级。由于目标体积内的剂量变化,对IMRT治疗计划的目标体积中的平均剂量进行处方,标准化并报告该结果要好于某个点(例如,等中心点)处的吸收剂量。

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