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Real-Time Compensation of Target Motion with a Dynamic Multileaf Collimator

机译:动态多叶准直器对目标运动进行实时补偿

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Advanced high quality radiation therapy techniques such as IMRT require an accurate delivery of precisely modulated fluence patterns to the target volume. Intrafrac-tional motion, however, may considerably deteriorate the accuracy of the dose delivery. To compensate for these errors, a dynamic real-time capable MLC control system was designed and implemented which compensates during the delivery for the motion and deformation of the target volume. Specialized algorithms were developed which constantly optimize the MLC aperture based on online provided target information allowing the sparing of adjacent organs-at-risk from additional dose. These algorithms were implemented in a dynamic target tracking control system for the Siemens 160 MLC™. Experiments using different phantom setups were performed to assess and quantify the quality of the tracking technique. The results showed that 2-dimensional target motion can be compensated for with the new control system. For a clinical IMRT dose distribution, the congruence within 2 % / 2 mm with a static reference delivery was increased from 18.75% to 76.79 %. Similar improvements were achieved for the delivery of a complete IMRT treatment fraction to a moving lung phantom. However, the quality of the tracking system is limited by the system's latency times. The experiments proved that the tracking concept, the new algorithms and the dynamic control system allow to effectively compensate for target motion in real-time. It therefore can increase the accuracy and the quality of the treatment delivery.
机译:先进的高质量放射治疗技术(例如IMRT)要求将精确调制的注量模式准确地传递到目标体积。但是,碎片内运动可能会大大降低剂量输送的准确性。为了补偿这些错误,设计并实现了具有动态实时功能的MLC控制系统,该系统可以在交付过程中补偿目标体积的运动和变形。开发了专门的算法,该算法基于在线提供的目标信息不断优化MLC孔径,从而可以避免因额外剂量而处于危险中的邻近器官。这些算法在Siemens 160 MLC™的动态目标跟踪控制系统中实现。使用不同的幻像设置进行了实验,以评估和量化跟踪技术的质量。结果表明,新的控制系统可以补偿二维目标运动。对于临床IMRT剂量分布,静态参考递送中2%/ 2 mm以内的一致性从18.75%增加到76.79%。对于将完整的IMRT治疗组分递送至运动中的肺部幻影,也实现了类似的改进。但是,跟踪系统的质量受到系统等待时间的限制。实验证明,跟踪概念,新算法和动态控制系统可以有效地实时补偿目标运动。因此,它可以提高治疗递送的准确性和质量。

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