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Modeling of beam customization devices in the pencil-beam splitting algorithm for heavy charged particle radiotherapy

机译:重电荷粒子放射治疗的笔束分裂算法中的束定制设备建模

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A broad-beam-delivery system for radiotherapy with protons or ions often employs multiple collimators and a range-compensating filter, which offer complex and potentially useful beam customization. It is however difficult for conventional pencil-beam algorithms to deal with fine structures of these devices due to beam-size growth during transport. This study aims to avoid the difficulty with a novel computational model. The pencil beams are initially defined at the range-compensating filter with angular-acceptance correction for upstream collimation followed by stopping and scattering. They are individually transported with possible splitting near the aperture edge of a downstream collimator to form a sharp field edge. The dose distribution for a carbon-ion beam was calculated and compared with existing experimental data. The penumbra sizes of various collimator edges agreed between them to a submillimeter level. This beam-customization model will be used in the greater framework of the pencil-beam splitting algorithm for accurate and efficient patient dose calculation. ? 2011 Institute of Physics and Engineering in Medicine Printed in the UK.
机译:用于质子或离子放射治疗的宽束传输系统通常采用多个准直仪和一个距离补偿滤镜,从而提供复杂且可能有用的束定制。然而,由于在传输过程中光束尺寸的增长,传统的笔形光束算法很难处理这些设备的精细结构。这项研究旨在避免使用新型计算模型的困难。笔形光束最初是在距离补偿滤波器处定义的,具有角度接受校正,用于上游准直,然后停止和散射。它们在下游准直器的孔径边缘附近可能分开裂开地单独运输,以形成锐利的视野边缘。计算出碳离子束的剂量分布,并将其与现有的实验数据进行比较。各种准直仪边缘的半影大小在亚毫米级之间一致。此束定制模型将用于笔形束分割算法的更大框架中,以进行准确而有效的患者剂量计算。 ? 2011年英国医学物理与工程研究所在英国印刷。

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