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Impact of magnetic field regulation in conjunction with the volumetric repainting technique on the spot positions and beam range in pencil beam scanning proton therapy

机译:磁场调节与铅笔梁扫描质子疗法中的体积重新绘制技术结合的影响

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Purpose The objective of this study was to evaluate the impact of the magnetic field regulation in conjunction with the volumetric repainting technique on the spot positions and range in pencil beam scanning proton therapy. Methods “Field regulation” — a feature to reduce the switching time between layers by applying a magnetic field setpoint (instead of a current setpoint) has been implemented on the proton beam delivery system at the Miami Cancer Institute. To investigate the impact of field regulation for the volumetric repainting technique, several spot maps were generated with beam delivery sequence in both directions, that is, irradiating from the deepest layer to the most proximal layer (“down” direction) as well as irradiating from the most proximal layer to the deepest layer (“up” direction). Range measurements were performed using a multi‐layer ionization chamber array. Spot positions were measured using two‐dimensional and three‐dimensional scintillation detectors. For range and central‐axis spot position, spot maps were delivered for energies ranging from 70–225?MeV. For off‐axis spot positions, the maps were delivered for high‐, medium, and low‐energies at eight different gantry angles. The results were then compared between the “up” and “down” directions. Results The average difference in range for given energy between “up” and “down” directions was 0.0?±?0.1?mm. The off‐axis spot position results showed that 846/864 of the spots were within ±1?mm, and all off‐axis spot positions were within ±1.2?mm. For spots (n?=?126) at the isocenter, the evaluation between “up” and “down” directions for given energy showed the spot position difference within ±0.25?mm. At the nozzle entrance, the average differences in X and Y positions for given energy were 0.0?±?0.2?mm and ?0.0?±?0.4?mm, respectively. At the nozzle exit, the average differences in X and Y positions for given energy were 0.0?±?0.1?mm and ?0.1?±?0.1?mm, respectively. Conclusion The volumetric repainting technique in magnetic field regulation mode resulted in acceptable spot position and range differences for our beam delivery system. The range differences were found to be within ±1?mm (TG224). For the spot positions (TG224: ±1?mm), the central axis measurements were within ±1?mm, whereas for the off‐axis measurements, 97.9% of the spots were within ±1?mm, and all spots were within ±1.2?mm.
机译:目的本研究的目的是评估磁场调节与铅笔扫描质子疗法的斑点位置和范围内的体积重新绘制技术的影响。方法“现场调节” - 通过应用磁场设定点(代替当前设定点)来降低层之间的切换时间的特征在迈阿密癌症研究所的质子梁输送系统上实现了。为了研究现场调节对体积重新绘制技术的影响,在两个方向上的光束输送序列产生了几个点映射,即,从最深层到最近似层(“向下”方向)以及照射最近似的层到最深层(“向上”方向)。使用多层电离室阵列进行范围测量。使用二维和三维闪烁探测器测量点位置。对于范围和中央轴点位置,可以为70-225的能量提供点映射。对于轴轴点位置,地图以八个不同的龙门角度提供高,培养基和低能量。然后将结果进行比较“向上”和“向下”方向。结果“向上”和“向下”方向之间给定能量的范围内的平均差为0.0?±0.1?mm。偏离轴点位置结果表明,846/864的斑点在±1?mm内,并且所有偏离轴点位置在±1.2Ω·mm内。对于在Isocenter处的斑点(n?= 126),给定能量的“向上”和“向下”方向之间的评估显示出±0.25Ωmm内的点位置差。在喷嘴入口处,给定能量的X和Y位置的平均差异分别为0.0?±0.2Ωmm和?0.0?±0.4ΩΩmm。在喷嘴出口处,给定能量的X和Y位置的平均差异为0.0?±0.1Ωmm和?0.1?±0.1?mm。结论磁场调节模式中的体积重排技术导致光束输送系统可接受的点位置和范围差异。发现范围差异在±1±mm(TG224)范围内。对于点位置(TG224:±1?mm),中心轴测量在±1?mm内,而对于轴外测量,97.9%的斑点在±1?mm内,并且在±末端1.2?mm。

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