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Reconstruction of high resolution MLC leaf positions using a low resolution detector for accurate 3D dose reconstruction in IMRT

机译:使用低分辨率检测器重建高分辨率MLC叶位置,以在IMRT中进行准确的3D剂量重建

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In pre-treatment dose verification, low resolution detector systems are unable to identify shifts of individual leafs of high resolution multi leaf collimator (MLC) systems from detected changes in the dose deposition. The goal of this study was to introduce an alternative approach (the shutter technique) combined with a previous described iterative reconstruction method to accurately reconstruct high resolution MLC leaf positions based on low resolution measurements. For the shutter technique, two additional radiotherapy treatment plans (RT-plans) were generated in addition to the original RT-plan; one with even MLC leafs closed for reconstructing uneven leaf positions and one with uneven MLC leafs closed for reconstructing even leaf positions. Reconstructed leaf positions were then implemented in the original RT-plan for 3D dose reconstruction. The shutter technique was evaluated for a 6 MV Elekta SLi linac with 5 mm MLC leafs (Agility (TM)) in combination with the MatriXX Evolution detector with detector spacing of 7.62mm. Dose reconstruction was performed with the COMPASS system (v2.0). The measurement setup allowed one row of ionization chambers to be affected by two adjacent leaf pairs. Measurements were obtained for various field sizes with MLC leaf position errors ranging from 1.0mm to 10.0mm. Furthermore, one clinical head and neck IMRT treatment beam with MLC introduced leaf position errors of 5.0mm was evaluated to illustrate the impact of the shutter technique on 3D dose reconstruction. Without the shutter technique, MLC leaf position reconstruction showed reconstruction errors up to 6.0mm. Introduction of the shutter technique allowed MLC leaf position reconstruction for the majority of leafs with sub-millimeter accuracy resulting in a reduction of dose reconstruction errors. The shutter technique in combination with the iterative reconstruction method allows high resolution MLC leaf position reconstruction using low resolution measurements with sub-millimeter accuracy.
机译:在预处理剂量验证中,低分辨率检测器系统无法从检测到的剂量沉积变化中识别高分辨率多叶片准直仪(MLC)系统的各个叶片的偏移。这项研究的目的是引入一种替代方法(快门技术),结合先前描述的迭代重建方法,以基于低分辨率测量值准确地重建高分辨率MLC叶位置。对于百叶窗技术,除原始的RT计划外,还生成了两个其他的放射治疗计划(RT计划)。一种关闭了MLC叶片,以重建叶片位置不均匀;另一种关闭了MLC叶片,以重建叶片位置不均匀。然后在3D剂量重建的原始RT计划中实施了重建的叶子位置。结合6 MV Elekta SLi直线加速器和5 mm MLC叶片(敏捷(TM)),结合具有7.62mm检测器间距的MatriXX Evolution检测器,评估了百叶窗技术。用COMPASS系统(v2.0)进行剂量重建。测量设置允许一排电离室受到两个相邻叶片对的影响。获得了各种田间尺寸的测量结果,MLC叶片位置误差范围为1.0mm至10.0mm。此外,对一根带有MLC引入的5.0mm叶片位置误差的临床头颈IMRT治疗光束进行了评估,以说明快门技术对3D剂量重建的影响。如果不使用百叶窗技术,MLC叶位置重建的重建误差可达6.0mm。百叶窗技术的引入允许大多数叶片的MLC叶片位置重建具有亚毫米级的精度,从而减少了剂量重建误差。快门技术与迭代重建方法相结合,可以使用亚毫米级精度的低分辨率测量来进行高分辨率MLC叶位置重建。

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