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Cobalt-60 tomotherapy: Clinical treatment planning and phantom dose delivery studies

机译:Cobalt-60 Tomotherapy:临床治疗计划和幻影剂量递送研究

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Purpose: Investigations have shown that a Cobalt-60 (Co-60) radioactive source has the potential to play a role in intensity modulated radiation therapy (IMRT). In this paper, Co-60 tomotherapy's conformal dose delivery potential is evaluated by delivering conformal dose plans on a cylindrical homogeneous phantom containing clinical structures similar to those found in a typical head and neck (HN) cancer. Also, the clinical potential of Co-60 tomotherapy is investigated by generating 2D clinical treatment plans for HN and prostate anatomical regions. These plans are compared with the 6 MV based treatment plans for modalities such as linear accelerator-based tomotherapy and broad beam IMRT, and 15 MV based 3D conformal radiation therapy (3DCRT). Methods: For experimental validation studies, clinical and nonclinical conformal dose patterns were delivered on circular, homogeneous phantoms containing GafChromic film. For clinical planning study, dose calculations were performed with the EGSnrc Monte Carlo program, where a Theratronics 780C Co-60 unit and a 6 MV linear accelerator were modeled with a MIMiC binary multileaf collimator. An inhouse inverse treatment planning system was used to optimize tomotherapy plans using the same optimization parameters for both Co-60 and 6 MV beams. The IMRT and 3DCRT plans for the clinical cases were generated entirely in the Eclipse treatment planning system based on inhouse IMRT and 3DCRT site specific protocols. Results: The doses delivered to the homogeneous phantoms agreed with the calculations, indicating that it is possible to deliver highly conformal doses with the Co-60 unit. The dose distributions for Co-60 tomotherapy clinical plans for both clinical cases were similar to those obtained with 6 MV based tomotherapy and IMRT, and much more conformal compared to 3DCRT plans. The dose area histograms showed that the Co-60 plans achieve the dose objectives for the targets and organs at risk. Conclusions: These results confirm that Co-60 tomotherapy is capable of providing state-of-the-art conformal dose delivery and could be used for the treatment of targets in both small and larger separation anatomical regions.
机译:目的:研究表明,钴-60(CO-60)放射源有可能在强度调制的放射治疗(IMRT)中发挥作用。本文通过在含有典型头部和颈部(HN)癌症中的临床结构上的圆柱形均匀幻像上的共形剂量计划来评估CO-60 TOMOTHERAPY的共形剂形剂量输送电位。此外,通过为HN和前列腺解剖区产生2D临床治疗计划来研究CO-60 COMOTOMOPY的临床潜力。这些计划与基于线性加速器的可疗法和宽光束IMRT等诸如基于线性加速器的可分类和宽光束IMRT的6MV的治疗计划进行了比较,以及15个基于3D全成形放射治疗(3DCRT)。方法:对于实验验证研究,在含有Gafchromic膜的圆形,均匀的幽灵上递送临床和非临床保形剂量图案。对于临床规划研究,用EGSNRC蒙特卡罗程序进行剂量计算,其中具有模拟二元多叶准直器的Theratronics 780C CO-60单元和6MV线性加速器进行建模。使用内部逆治疗计划系统使用同样的CO-60和6 MV梁的优化参数来优化TOMOTIONAY计划。基于Inhouse IMRT和3DCRT站点特定协议的Eclipse治疗计划系统,IMRT和3DCRT计划完全生成了临床病例。结果:递送到均质杂色的剂量与计算同意,表明可以用CO-60单元提供高度保形剂量。两种临床病例的CO-60 COMOTHERAPY临床计划的剂量分布类似于以6mV基于6mV的Comotapy和IMRT获得的临床计划,与3DCRT计划相比,更加符合。剂量区域的直方图表明,CO-60计划达到危险目标和器官的剂量目标。结论:这些结果证实,CO-60 Comotherapy能够提供最先进的保形剂量递送,可用于治疗小型和较大分离解剖区域的靶。

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