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Validation of a personalized dosimetric evaluation tool (Oedipe) for targeted radiotherapy based on the Monte Carlo MCNPX code.

机译:基于Monte Carlo MCNPX代码的针对性放疗的个性化剂量学评估工具(Oedipe)的验证。

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Dosimetric studies are necessary for all patients treated with targeted radiotherapy. In order to attain the precision required, we have developed Oedipe, a dosimetric tool based on the MCNPX Monte Carlo code. The anatomy of each patient is considered in the form of a voxel-based geometry created using computed tomography (CT) images or magnetic resonance imaging (MRI). Oedipe enables dosimetry studies to be carried out at the voxel scale. Validation of the results obtained by comparison with existing methods is complex because there are multiple sources of variation: calculation methods (different Monte Carlo codes, point kernel), patient representations (model or specific) and geometry definitions (mathematical or voxel-based). In this paper, we validate Oedipe by taking each of these parameters into account independently. Monte Carlo methodology requires long calculation times, particularly in the case of voxel-based geometries, and this is one of the limits of personalized dosimetric methods. However, our results show that the use of voxel-based geometry as opposed to a mathematically defined geometry decreases the calculation time two-fold, due to an optimization of the MCNPX2.5e code. It is therefore possible to envisage the use of Oedipe for personalized dosimetry in the clinical context of targeted radiotherapy.
机译:剂量学研究对于所有接受靶向放疗的患者都是必要的。为了获得所需的精度,我们开发了基于MCNPX蒙特卡洛代码的剂量学工具Oedipe。使用计算体层摄影(CT)图像或磁共振成像(MRI)创建的基于体素的几何形状来考虑每个患者的解剖结构。 Oedipe使剂量学研究可以在体素范围内进行。与现有方法比较获得的结果的验证是复杂的,因为存在多种变化来源:计算方法(不同的蒙特卡洛代码,点核),患者表示(模型或特定的)和几何定义(基于数学或基于体素的)。在本文中,我们通过独立考虑每个参数来验证Oedipe。蒙特卡洛方法需要较长的计算时间,尤其是在基于体素的几何形状的情况下,这是个性化剂量法的局限之一。但是,我们的结果表明,由于对MCNPX2.5e代码进行了优化,因此使用基于体素的几何体而不是数学定义的几何体将计算时间减少了两倍。因此,有可能设想在靶向放疗的临床环境中使用Oedipe进行个性化剂量测定。

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