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Monte Carlo evaluation of Acuros XB dose calculation Algorithm for intensity modulated radiation therapy of nasopharyngeal carcinoma

机译:鼻咽XB剂量调节鼻咽癌XB剂量计算算法的蒙特卡罗评价

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摘要

Intensity-modulated radiation therapy is an effective treatment modality for the nasopharyngeal carcinoma. One important aspect of this cancer treatment is the need to have an accurate dose algorithm dealing with the complex air/bone/tissue interface in the head-neck region to achieve the cure without radiation-induced toxicities. The Acuros XB algorithm explicitly solves the linear Boltzmann transport equation in voxelized volumes to account for the tissue heterogeneities such as lungs, bone, air, and soft tissues in the treatment field receiving radiotherapy. With the single beam setup in phantoms, this algorithm has already been demonstrated to achieve the comparable accuracy with Monte Carlo simulations. In the present study, five nasopharyngeal carcinoma patients treated with the intensity-modulated radiation therapy were examined for their dose distributions calculated using the Acuros XB in the planning target volume and the organ-at-risk. Corresponding results of Monte Carlo simulations were computed from the electronic portal image data and the BEAMnrc/DOSXYZnrc code. Analysis of dose distributions in terms of the clinical indices indicated that the Acuros XB was in comparable accuracy with Monte Carlo simulations and better than the anisotropic analytical algorithm for dose calculations in real patients.
机译:强度调节的放射治疗是鼻咽癌的有效治疗方式。这种癌症治疗的一个重要方面是需要具有处理头颈区域中的复杂空气/骨/组织界面的准确剂量算法,以实现无辐射诱导的毒性的固化。 Acuros XB算法明确地解决了体蛋白化体中的线性Boltzmann传输方程,以考虑治疗领域的肺,骨,空气和软组织,接受放射治疗。通过幻影中的单光束设置,已经证明了该算法以实现与蒙特卡罗模拟的可比准确性。在本研究中,检查使用强度调制的放射疗法治疗的五个鼻咽癌患者,用于使用规划目标体积和器官风险中使用Acuros XB计算的剂量分布。从电子门户图像数据和CapNRC / DOSXYZNRC码计算蒙特卡罗模拟的相应结果。对临床指标的剂量分布分析表明,Acuros XB与蒙特卡罗模拟的可比准确性,比真正患者的剂量计算的各向异性分析算法更好。

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