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Beam flatness modulation for a flattening filter free photon beam utilizing a novel direct leaf trajectory optimization model

机译:利用新颖的直接叶片轨迹优化模型对扁平化无滤光子束的光束平坦度进行调制

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摘要

Flattening filter free (FFF) linear accelerators produce a fluence distribution that is forward peaked. Various dosimetric benefits, such as increased dose rate, reduced leakage and out of field dose has led to the growth of FFF technology in the clinic. The literature has suggested the idea of vendors offering dedicated FFF units where the flattening filter (FF) is removed completely and manipulating the beam to deliver conventional flat radiotherapy treatments. This work aims to develop an effective way to deliver modulated flat beam treatments, rather than utilizing a physical FF. This novel optimization model is an extension of the direct leaf trajectory optimization (DLTO) previously developed for volumetric modulated radiation therapy (VMAT) and is capable of accounting for all machine and multileaf collimator (MLC) dynamic delivery constraints, using a combination of linear constraints and a convex objective function. Furthermore, the tongue and groove (T&G) effect was also incorporated directly into our model without introducing nonlinearity to the constraints, nor nonconvexity to the objective function. The overall beam flatness, machine deliverability, and treatment time efficiency were assessed. Regular square fields, including field sizes of 10 × 10 cm to 40 × 40 cm were analyzed, as well as three clinical fields, and three arbitrary contours with "concave" features. Quantitative flatness was measured for all modulated FFF fields, and the results were comparable or better than their open FF counterparts, with the majority having a quantitative flatness of less than 3.0%. The modulated FFF beams, due to the included efficiency constraint, were able to achieve acceptable delivery time compared to their open FF counterpart. The results indicated that the dose uniformity and flatness for the modulated FFF beams optimized with the DLTO model can successfully match the uniformity and flatness of their conventional FF counterparts, and may even provide further benefit by taking advantage of the unique FFF beam characteristics.
机译:无展平滤波器(FFF)线性加速器产生的通量分布正向达到峰值。各种剂量学好处,例如增加剂量率,减少泄漏和超出领域剂量,已导致FFF技术在临床中得到发展。文献提出了由供应商提供专用FFF装置的想法,其中完全去除了平坦滤光片(FF)并操纵光束以进行常规的平面放射治疗。这项工作旨在开发一种有效的方式来提供调制的平光束治疗,而不是利用物理FF。这种新颖的优化模型是先前为体积调制放射治疗(VMAT)开发的直接叶轨迹优化(DLTO)的扩展,并且能够结合线性约束,解决所有机器和多叶准直仪(MLC)动态传递约束和凸目标函数。此外,舌槽效应(T&G)也直接纳入了我们的模型,而没有将非线性引入约束条件,也没有将非线性引入目标函数。评估了总体光束平坦度,机器可交付性和处理时间效率。分析了规则的正方形视场,包括10×10 cm至40×40 cm的视场大小,以及三个临床视场和三个具有“凹”形特征的任意轮廓。测量了所有调制FFF场的定量平坦度,其结果与开放FF对应物相当或更好,其中大多数的定量平坦度小于3.0%。由于包括效率限制,与开放式FF光束相比,调制后的FFF光束能够实现可接受的传输时间。结果表明,用DLTO模型优化的已调制FFF光束的剂量均匀性和平坦度可以成功地匹配其传统FF对应物的均匀性和平坦度,甚至可以利用独特的FFF光束特性提供进一步的好处。

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