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Dosimetric characteristics of dual‐layer multileaf collimation for small‐field and intensity‐modulated radiation therapy applications

机译:用于小视野和强度调制放射治疗应用的双层多叶准直的剂量学特征

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摘要

The purpose of the present work was to measure the performance characteristics in the penumbra region and on the leaf‐end of an innovative dual‐layer micro multileaf collimator (DmMLC). The DmMLC consists of two orthogonal (upper and lower) layers of leaves; a standard MLC consists of one layer. The DmMLC provides unique performance characteristics in smoothing dose undulation, reducing leaf‐end transmission, and reducing MLC field dependence of the leaf stepping angle. Two standard MLCs (80‐leaf and 120‐leaf versions: Varian Medical Systems, Palo Alto, CA), a DmMLC (AccuKnife: Initia Medical Technology, Canton, MA), and a Cerrobend (Cerro Metal Products, Bellefonte, PA) block were used in performance studies involving a triangular field, a cross leaf‐end field, and a circular field. Measurements were made with 6‐MV X‐rays and extended dose range film at a depth of 5 cm in Solid Water (Gammex rmi, Middleton, WI) at a source–axis distance of 100 cm. The field penumbra width measured between the 20% and 80% isodose lines through the MLC‐80, MLC‐120, DmMLC, and Cerrobend block were 9.0, 5.0, 3.0, and 2.0 mm respectively. The dose undulation amplitude of the 50% isodose line was measured as 5.5, 2.0, and 0.5 mm for the MLC‐80, MLC‐120, and DmMLC respectively. The planar dose difference between the MLC‐80, MLC‐120, and DmMLC against Cerrobend block was measured as ranging at ±52.5%, ±35.0%, and ±20.0% respectively. The leaf‐end transmission was measured at 22.4% in maximum and 15.4% in average when closing a single layer of the DmMLC, and at 2.4% in maximum and 2.1% in average when closing both layers. The MLC dependence of the leaf stepping angle with the DmMLC ranged from 45 degrees to 90 degrees. The standard MLC leaf stepping angle ranged from 0 degrees to 90 degrees. In conclusion, the dose undulation, leaf‐end transmission, and MLC field dependence of the leaf stepping angle with the DmMLC were remarkably reduced as compared with those of the standard MLCs. And as compared with Cerrobend block, the DmMLC provided very comparable performance in field‐edge smoothing and in the shaping of complex fields.PACS numbers: 87.56.Jk, 87.56.Nk, 87.56.Nj, 87.57.Nt
机译:本研究的目的是测量创新型双层微多叶准直仪(DmMLC)在半影区和叶端的性能特征。 DmMLC由两层正交的(上层和下层)叶子组成;标准MLC包含一层。 DmMLC提供了独特的性能特征,可平滑剂量波动,减少叶端传输以及降低MLC场对叶步进角的依赖性。两个标准MLC(80叶和120叶版本:Varian Medical Systems,加利福尼亚州帕洛阿尔托),DmMLC(AccuKnife:Initia Medical Technology,加拿大马萨诸塞州)和Cerrobend(Cerro Metal Products,Bellefonte,PA)模块用于涉及三角场,交叉叶端场和圆形场的性能研究。在固体水(Gammex rmi,Middleton,WI)中在5 cm深度处使用6-MV X射线和扩展剂量范围的胶片进行了测量,其源轴距离为100 cm。通过MLC-80,MLC-120,DmMLC和Cerrobend模块在20%和80%等剂量线之间测量的半影场宽度分别为9.0、5.0、3.0和2.0 mm。对于MLC-80,MLC-120和DmMLC,50%等剂量线的剂量波动幅度分别为5.5、2.0和0.5 mm。 MLC-80,MLC-120和DmMLC相对于Cerrobend模块的平面剂量差异分别为±52.5%,±35.0%和±20.0%。当关闭单层DmMLC时,测得的叶端传输率最大为22.4%,平均为15.4%,而当关闭两层时,最大为2.4%,平均为2.1%。叶片步进角与DmMLC的MLC依赖性介于45度到90度之间。标准的MLC叶片步进角范围为0度到90度。总之,与标准MLC相比,DmMLC显着降低了叶片踏步角的剂量波动,叶端传输和MLC场依赖性。与Cerrobend块相比,DmMLC在场边缘平滑和复杂场的整形方面具有非常可比的性能.PACS编号:87.56.Jk,87.56.Nk,87.56.Nj,87.57.Nt

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