首页> 外文期刊>Journal of Cancer Research and Therapeutics >Investigation of the dose perturbation effect for therapeutic beams with the presence of a 1.5 T transverse magnetic field in magnetic resonance imaging-guided radiotherapy
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Investigation of the dose perturbation effect for therapeutic beams with the presence of a 1.5 T transverse magnetic field in magnetic resonance imaging-guided radiotherapy

机译:在磁共振成像引导放射治疗中存在1.5吨横向磁场的治疗梁剂量扰动效果

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Background: Magnetic resonance imaging (MRI)-guided radiotherapy is a promising image-guided cancer radiotherapy method. For MRI-guided radiotherapy, the proper energy of a therapeutic beam is important for beam-designing processes, and the magnetic-induced dose perturbation would be mainly influenced, especially the perturbation surrounding the tissue–air or air–tissue interfaces. Thus, it was necessary to investigate the impact of beam energy from photon, proton, and carbon ion beams on the magnetic-induced dose perturbations. Materials and Methods: Using a phantom of a water-air-water structure, the dose distributions were calculated with or without the presence of a 1.5 T uniform magnetic field through GEANT4. Based on the calculated doses, magnetic-induced dose perturbations were then obtained. For investigating the effects of beam energies on magnetic-induced dose perturbations, low-, middle-, and high-beam energies were adopted for each beam type. Results and Discussion: For photon beams, the dose perturbations were increased as the beam energies increased. At the up water–air interface, the maximum perturbations exceeded 50%. Near the edge of the radiation field, perturbations of 5%–20% were achieved. For proton and carbon ion beams, their Bragg peaks were shifted from original positions, and the shifting distances were increased with the increased beam energies. However, no evident magnetic-induced dose perturbations were noted at the up water–air interface and bottom air–water interface for all the beam energies. To some extent, this study provided references for assessing the effects of beam energies on magnetic-induced dose perturbations, especially the perturbations around the air cavities inside cancer patients. Conclusion: In MRI-guided cancer radiotherapy, the dose perturbation effects for therapeutic beams are relatively obvious, and the beam energies of therapeutic beams have large impacts on the magnetic-induced dose perturbations with the presence of a 1.5 T transverse magnetic field.
机译:背景:磁共振成像(MRI) - 指导放射疗法是一个有前途的图像引导癌症放射疗法方法。对于MRI引导放射疗法,治疗梁的适当能量对于光束设计过程很重要,并且磁诱导剂量扰动主要是影响,尤其是围绕组织空气或空气组织界面的扰动。因此,有必要研究光子,质子和碳离子束对磁诱导剂量扰动的影响。材料和方法:采用水 - 水结构的幻影,用或不通过GEANT4计算使用1.5 T均匀磁场的剂量分布。基于计算的剂量,然后获得磁诱导剂量扰动。为了研究梁能量对磁性诱导剂量扰动的影响,为每个光束类型采用低,中间和高光束能量。结果与讨论:对于光子束,随着光束能量增加而增加剂量扰动。在升水空中界面处,最大扰动超过50%。在辐射场的边缘附近,实现了5%-20%的扰动。对于质子和碳离子束,它们的布拉格峰从原始位置移位,并且随着梁能量的增加而增加距离距离。然而,对于所有光束能量的底部空气界面,在上部空中界面和底部空气界面上没有没有明显的磁诱导剂量扰动。在一定程度上,本研究提供了评估射线能量对磁诱导剂量扰动的影响,尤其是癌症患者内部空洞的扰动。结论:在MRI引导癌症放射治疗中,治疗梁的剂量扰动效果相对明显,治疗梁的光束能量对磁性诱导剂量扰动的影响大的存在1.5 T横向磁场。

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