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Dosimetric verification in inhomogeneous phantom geometries for the XiO radiotherapy treatment planning system with 6-MV photon beams

机译:用6-MV光子束对XiO放射治疗计划系统的不均匀幻像几何进行剂量学验证

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摘要

We have developed a practical dose verification method for radiotherapy treatment planning systems by using only a Farmer ionization chamber in inhomogeneous phantoms. In particular, we compared experimental dose verifications of multi-layer phantom geometries and laterally inhomogeneous phantom geometries for homogeneous and inhomogenous dose calculations by using the fast-Fourier-transform convolution, fast-superposition, and superposition in the XiO radiotherapy treatment-planning system. We applied the dose verification method to three kernel-based algorithms in various phantom geometries with water-, lung- and bone-equivalent media of different field sizes. These calculations were then compared with experimental measurements by use of the Farmer ionization chamber. The fast-Fourier-transform convolution algorithm overestimated the dose by about 8% in the lung phantom geometry. The superposition algorithm and the fast-superposition algorithm were both accurate to better than 2% when compared to the measurements even for complex geometries. Our dose verification method was able to clarify the differences and equivalences of the three kernel-based algorithms and measurements with use only of commonly available apparatus. This will be generally useful in commissioning of inhomogeneity-correction algorithms in the clinical practice of treatment planning.
机译:我们仅通过在不均一的幻像中使用农夫电离室,为放射疗法治疗计划系统开发了一种实用的剂量验证方法。特别是,我们通过在XiO放射治疗治疗计划系统中使用快速傅里叶变换卷积,快速叠加和叠加,比较了多层体模几何体和横向不均匀体模几何体在均匀和不均匀剂量计算方面的实验剂量验证。我们将剂量验证方法应用于具有不同视场大小的水,肺和骨等效介质的各种幻像几何体中的三种基于核的算法。然后将这些计算结果与使用Farmer电离室的实验测量结果进行比较。快速傅里叶变换卷积算法在肺部模型中将剂量高估了约8%。与测量相比,即使是复杂的几何形状,叠加算法和快速叠加算法的精度也都优于2%。我们的剂量验证方法仅使用常用的仪器就可以弄清三种基于核的算法和测量方法的区别和等效性。在治疗计划的临床实践中,这对于调试不均匀性校正算法通常很有用。

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