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Monte Carlo study of the impact of a magnetic field on the dose distribution in MRI-guided HDR brachytherapy using Ir-192

机译:蒙特卡洛研究使用Ir-192在MRI指导的HDR近距离放射治疗中磁场对剂量分布的影响

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In the process of developing a robotic MRI-guided high-dose-rate (HDR) prostate brachytherapy treatment, the influence of the MRI scanner's magnetic field on the dose distribution needs to be investigated. A magnetic field causes a deflection of electrons in the plane perpendicular to the magnetic field, and it leads to less lateral scattering along the direction parallel with the magnetic field. Monte Carlo simulations were carried out to determine the influence of the magnetic field on the electron behavior and on the total dose distribution around an Ir-192 source. Furthermore, the influence of air pockets being present near the source was studied. The Monte Carlo package Geant4 was utilized for the simulations. The simulated geometries consisted of a simplified point source inside a water phantom. Magnetic field strengths of 0 T, 1.5 T, 3 T, and 7 T were considered. The simulation results demonstrated that the dose distribution was nearly unaffected by the magnetic field for all investigated magnetic field strengths. Evidence was found that, from a dose perspective, the HDR prostate brachytherapy treatment using Ir-192 can be performed safely inside the MRI scanner. No need was found to account for the magnetic field during treatment planning. Nevertheless, the presence of air pockets in close vicinity to the source, particularly along the direction parallel with the magnetic field, appeared to be an important point for consideration.
机译:在开发以MRI为指导的机器人高剂量率(HDR)机器人近距离放射治疗的过程中,需要研究MRI扫描仪磁场对剂量分布的影响。磁场会导致电子在垂直于磁场的平面内发生偏转,从而导致沿与磁场平行的方向发生较小的横向散射。进行了蒙特卡洛模拟,以确定磁场对电子行为以及Ir-192源周围总剂量分布的影响。此外,还研究了气源附近存在气穴的影响。仿真使用了蒙特卡洛软件包Geant4。模拟的几何图形由水模型内的简化点源组成。考虑了0 T,1.5 T,3 T和7 T的磁场强度。仿真结果表明,对于所有调查的磁场强度,剂量分布几乎不受磁场的影响。有证据表明,从剂量角度来看,使用Ir-192进行HDR前列腺近距离放射治疗可以在MRI扫描仪内安全进行。无需在治疗计划期间考虑磁场。然而,在气源附近,尤其是在平行于磁场的方向上存在气穴似乎是需要考虑的重要问题。

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