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Ambient neutron dose equivalent during proton therapy using wobbling scanning system: Measurements and calculations

机译:使用摆动扫描系统的质子疗法期间的环境中子剂量等同物:测量和计算

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Neutron production is a concern in proton therapy, particularly in scattering proton beam delivery systems. Despite this fact, little is known about the effects of secondary neutron exposure around wobbling scattered proton treatment nozzles. The objective of this study was to estimate the neutron dose level resulting from the use of a wobbling scattered proton treatment unit. We applied the Monte Carlo method for predict the ambient neutron dose equivalent, H-*(10), per absorbed dose at the treatment isocenter, D, in the proton therapy center of Chang Gung Memorial Hospital, Linkou, Taiwan. For a 190-MeV proton beam, H*(10)/D values typically decreased with the distance from the isocenter, being 1.106 mSv/Gy at the isocenter versus 0.112 mSv/Gy at a distance of 150 cm from the isocenter. The H*(10)/D values generally decreased as the neutron receptors moved away from the isocenter, and increased when the angle from the initial beam axis increased. The ambient neutron dose equivalents were observed to be slightly lower in the direction of multileaf collimator movement. For radiation protection, the central axis of a proton-treated patient is suggested to be at the 0 angle of the beam. If the beam direction at the 90 degrees angle is necessary, the patient axis is suggested to be along with the direction of MLC movement. Our study provides the neutron dose level and neutron energy fluence for the first wobbling proton system at the proton therapy center of Chang Gung Memorial Hospital.
机译:中子生产是质子疗法的关注,特别是在散射质子束输送系统中。尽管这一事实,关于次散中子曝光的影响很少,但散布散射的质子处理喷嘴。本研究的目的是估计由于使用摆动散射的质子处理单元而导致的中子剂量水平。我们应用了Monte Carlo方法,用于预测Asocenter,D,台湾昌康纪念医院的质子治疗中心,在治疗中,每次吸收剂量,H - *(10),H - *(10)。对于190meV质子束,H *(10)/ D值通常随着距离等中心的距离而减小,在距离等中心的距离为150厘米的距离为0.112msv / gy的1.106msv / gy。当中子受体远离等中心的中子受体移动时,H *(10)/ d通常降低,并且当与初始梁轴的角度增加时增加。观察到环境中子剂量等同物在多叶准直器运动方向上略低。对于辐射保护,建议质子处理的患者的中心轴线在光束的0角。如果需要在90度角处的光束方向是必要的,则建议患者轴与MLC运动的方向一起。我们的研究为昌康纪念医院质子治疗中心的第一个摆动质子系统提供了中子剂量水平和中子能量。

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