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Monte Carlo simulation of novel procedures for highly conformal percutaneous radiation with keV-photons for tumor treatment in skin proximity

机译:蒙特卡洛模拟用keV光子高度保形经皮放射治疗皮肤附近肿瘤的新方法

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Photon beams in the energy range of keV are more cost effective and require less shielding efforts compared to MeV-photons or particle beams. The absent build-up effect for low-energetic X-rays however is challenging for percutane-ous radiotherapy. In this work, we study a possible improve-ment of the TCP-NTCP ratio (tumor control vs. normal tissue complication) by geometrically superimposing different colli-mated beamlets. Furthermore, inducing gold (Au) particles into the cancerous tissue leads to a local dose enhancement by additional emission of low-energetic electrons. We analyze this setup with regards to its suitability for clinical use. The study is based on the example of the X-ray source Axxent S700 from Xoft Inc., which is sampled in a Monte Carlo calculation (Ge-ant4). After developing a source model, irradiation with single beams from different directions and distances is simulated and the resulting dose kernels are stored. The weighting factors of the superposition are optimized using linear programming. These simulations are repeated for a tumor volume containing different dosages of gold. The results show that keV-photon irradiation alone does not seem to be suitable for external radiotherapy below the skin. In combination with dose enhancement, however, a two times higher dose to the tumor, compared to skin dose can be achieved. With narrow colli-mation, a dose ratio of five is generated, though only in a very small focal volume. Since primarily the analysis of the local dose enhancement is promising, we suggest to further explore this method including a combination with intracavitary electronic Brachytherapy.
机译:与MeV光子或粒子束相比,能量在keV范围内的光子束更具成本效益,并且需要的屏蔽工作更少。然而,低能X射线缺乏聚集效应对经皮放射疗法具有挑战性。在这项工作中,我们研究了通过几何叠加不同的准直子束来改善TCP-NTCP比率(肿瘤控制与正常组织并发症)的方法。此外,通过额外发射低能电子,将金(Au)颗粒诱导到癌组织中会导致局部剂量增加。我们分析此设置是否适合临床使用。该研究基于Xoft Inc.的X射线源Axxent S700的示例,该示例在Monte Carlo计算(Ge-ant4)中进行了采样。建立了源模型后,模拟了从不同方向和距离发出的单个光束的辐照,并存储了所得到的剂量核。叠加的权重因子使用线性规划进行了优化。对包含不同剂量金的肿瘤体积重复这些模拟。结果表明,单独的keV光子辐照似乎不适合皮肤下的外部放射治疗。然而,与皮肤剂量相比,与剂量增加相结合,可以达到两倍于皮肤的剂量。在窄准直条件下,尽管只有很小的焦距,但仍会产生5的剂量比。由于主要对局部剂量增加的分析是有前途的,因此我们建议进一步探索这种方法,包括与腔内电子近距离放射治疗相结合。

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