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基于 Farmer chamber 测量的治疗计划系统中确定最佳多叶准直器配置参数的新方法。

A novel procedure for determining the optimal MLC configuration parameters in treatment planning systems based on measurements with a Farmer chamber.

机构信息

Department of Radiation Oncology, Hospital Clínic de Barcelona, 08036 Barcelona, Spain. The first two authors contributed equally to this work.

出版信息

Phys Med Biol. 2020 Jul 27;65(15):155006. doi: 10.1088/1361-6560/ab8cd5.

Abstract

Modelling of the multi-leaf collimator (MLC) in treatment planning systems (TPS) is crucial for the dose calculation accuracy of intensity-modulated radiation therapy plans. However, no standardised methodology for their configuration exists to date. In this study we present a method that separates the effect of each dosimetric characteristic of the MLC, offering comprehensive equations for the determination of the configuration parameters used in the TPS model. The main advantage of the method is that it only requires prior knowledge of the nominal leaf width and is based on doses measured with a Farmer chamber, which is a very well established and robust methodology. Another significant advantage is the required time, since measuring the tests takes only about 30 minutes per energy. Firstly, we provide a theoretical general formalism in terms of the primary fluence constructed from the transmission map obtained from an MLC model for synchronous and asynchronous sweeping beams. Secondly, we apply the formalism to the RayStation TPS as a proof of concept and we derive analytical expressions that allow the determination of the configuration parameters (leaf tip width, tongue-and-groove width, x-position offset and MLC transmission) and describe how they intertwine. Finally, we apply the method to Varian's Millennium120 and HD120 MLCs in a TrueBeam linear accelerator for different energies and determine the optimal configuration parameters. The proposed procedure is much faster and streamlined than the typical trial-and-error methods and increases the accuracy of dose calculation in clinical plans. Additionally, the procedure can be useful for standardising the MLC configuration process and it exposes the limitations of the implemented MLC model, providing guidance for further improvement of these models in TPSs.

摘要

在治疗计划系统(TPS)中对多叶准直器(MLC)进行建模对于强度调制放射治疗计划的剂量计算准确性至关重要。然而,迄今为止,还没有针对其配置的标准化方法。在这项研究中,我们提出了一种方法,可分离 MLC 每个剂量学特性的影响,为 TPS 模型中使用的配置参数的确定提供全面的方程。该方法的主要优点是它仅需要标称叶片宽度的先验知识,并且基于使用 Farmer 室测量的剂量,这是一种非常成熟且可靠的方法。另一个重要的优势是所需的时间,因为每个能量的测试测量仅需约 30 分钟。首先,我们以从同步和异步扫描束的 MLC 模型获得的传输图构建的初级通量为理论提供了一般形式主义。其次,我们将形式主义应用于 RayStation TPS 作为概念验证,并推导出允许确定配置参数(叶片尖端宽度,齿槽宽度,x 位置偏移和 MLC 传输)的解析表达式,并描述它们如何交织。最后,我们将该方法应用于瓦里安的 Millennium120 和 HD120 MLC 在 TrueBeam 直线加速器中,用于不同的能量,并确定最佳的配置参数。与典型的反复试验方法相比,所提出的方法更快、更精简,并且可以提高临床计划中的剂量计算准确性。此外,该过程对于标准化 MLC 配置过程很有用,并暴露了所实现的 MLC 模型的局限性,为进一步改进 TPS 中的这些模型提供了指导。

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