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The impact of pencil beam scanning techniques on the effectiveness and efficiency of rescanning moving targets

机译:铅笔梁扫描技术对重新加工目标的效力和效率的影响

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Therapeutic pencil beams are typically scanned using one of the following three techniques: spot scanning, raster scanning or line scanning. While providing similar dose distributions to the target, these three techniques can differ significantly in their delivery time sequence. Thus, we can expect differences in effectiveness and time efficiency when trying to mitigate interplay effects using rescanning. At the Paul Scherrer Institute, we are able to irradiate treatment plans using either of the three delivery techniques. Hence, we can compare them directly with identical underlying machine parameters such as energy switching time or minimum/maximum beam current. For this purpose, we selected three different liver targets, optimized plans for spots, and converted them to equivalent raster and line scanning plans.
机译:通常使用以下三种技术之一扫描治疗铅笔梁:点扫描,光栅扫描或线扫描。 在向目标提供类似的剂量分布的同时,在其递送时间序列中可以显着差异。 因此,我们可以期望在尝试使用重新扫描来减轻相互作用效果时有效和时间效率的差异。 在Paul Scherrer Institute,我们能够使用三种递送技术中的任何一种照射治疗计划。 因此,我们可以将它们直接与相同的底层机器参数进行比较,例如能量切换时间或最小/最大光束电流。 为此目的,我们选择了三个不同的肝脏目标,优化了斑点的计划,并将它们转换为等效光栅和线路扫描计划。

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