首页> 外文期刊>Journal of Medical Physics/Association of Medical Physicists of India >Characterization of the Mixed Radiation Field Produced by Carbon and Oxygen Ion Beams of Therapeutic Energy: A Monte Carlo Simulation Study
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Characterization of the Mixed Radiation Field Produced by Carbon and Oxygen Ion Beams of Therapeutic Energy: A Monte Carlo Simulation Study

机译:治疗能源碳和氧离子束产生的混合辐射场的特征:蒙特卡罗模拟研究

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Purpose: The main advantages of charged particle radiotherapy compared to conventional X-ray external beam radiotherapy are a better tumor conformality coupled with the capability of treating deep-seated radio-resistant tumors. This work investigates the possibility to use oxygen beams for hadron therapy, as an alternative to carbon ions. Materials and Methods: Oxygen ions have the advantage of a higher relative biological effectiveness (RBE) and better conformality to the tumor target. This work describes the mixed radiation field produced by an oxygen beam in water and compares it to the one produced by a therapeutic carbon ion beam. The study has been performed using Geant4 simulations. The dose is calculated for incident carbon ions with energies of 162 MeV/u and 290 MeV/u, and oxygen ions with energies of 192 MeV/u and 245 MeV/u, and hence that the range of the primary oxygen ions projectiles in water was located at the same depth as the carbon ions. Results: The results show that the benefits of oxygen ions are more pronounced when using lower energies because of a slightly higher peak-to-entrance ratio, which allows either providing higher dose in tumor target or reducing it in the surrounding healthy tissues. It is observed that, per incident particle, oxygen ions deliver higher doses than carbon ions. Conclusions: This result coupled with the higher RBE shows that it may be possible to use a lower fluence of oxygen ions to achieve the same therapeutic dose in the patient as that obtained with carbon ion therapy.
机译:目的:与常规X射线外光线放射相比,带电粒子放射疗法的主要优点是更好的肿瘤统一性,其具有处理深层抗射频肿瘤的能力。这项工作调查了利用氧气射线的可能性,作为碳离子的替代品。材料和方法:氧离子具有更高的相对生物效果(RBE)和更好地对肿瘤靶标的优点。该工作描述了在水中产生的混合辐射场,并将其与治疗碳离子束产生的射线进行比较。使用Geant4模拟进行了该研究。用122mEV / U和290meV / U的活性的入射碳离子和具有192meV / U和245meV / U的能量的氧离子计算的剂量,因此初级氧离子在水中射出的范围位于与碳离子相同的深度。结果表明,由于略高的峰值比率,使用较低的能量时,氧离子的益处更加明显,这允许在肿瘤靶点中提供更高剂量的剂量或在周围的健康组织中将其降低。观察到,每个入射颗粒,氧离子比碳离子递送更高的剂量。结论:该结果与较高的RBE耦合表明,可以使用较低的氧离子的流量,以在患者中获得与用碳离子疗法获得的相同的治疗剂量。

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