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Fast range compensation inside the beam line for beam tracking in particle therapy

机译:光束线内部的快速范围补偿,用于粒子治疗中的光束跟踪

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Fast range adaptation is essential for three dimensional (3D) beam tracking for precise irradiations of moving targets with scanned ion beams.Electromagnetically controlled ion beam deflection in combination with a fixed absorber inside an ion beam delivery system has been considered as a fast range adaptation method for moving targets. As a feasibility test of this method, ion beams were deflected with magnets on a static wedge degrader at a thickness corresponding to the required range adaptation. Beam profiles at target position were investigated both in experiments and simulations. The measured horizontal and vertical beam profiles of 5-11 mm FWHM for specified range shifts of up to ±15 mm water equivalence were found to be in good agreement with simulations.
机译:快速范围自适应对于三维(3D)束跟踪至关重要,以用扫描的离子束精确照射移动的目标。 电磁控制的离子束偏转与离子束传输系统内部的固定吸收器相结合已被认为是用于移动目标的快速范围自适应方法。作为此方法的可行性测试,离子束在固定楔形降膜器上被磁体偏转,其厚度与所需的距离适应性相对应。在实验和模拟中都研究了目标位置处的光束轮廓。对于指定的范围偏移(最大水当量为±15 mm),测得的5-11 mm FWHM的水平和垂直光束轮廓与模拟非常吻合。

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