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一种在瓦里安直线加速器上使用监测单元矩阵进行动态调强放疗的剂量验证方法。

A dose verification method using a monitor unit matrix for dynamic IMRT on Varian linear accelerators.

作者信息

Chen Xuangen, Yue Ning J, Chen Weimin, Saw Cheng B, Heron Dwight E, Stefanik David, Antemann Richard, Huq M Saiful

机构信息

University of Pittsburgh Cancer Institute, Department of Radiation Oncology, PA 15901, USA.

出版信息

Phys Med Biol. 2005 Dec 7;50(23):5641-52. doi: 10.1088/0031-9155/50/23/016. Epub 2005 Nov 23.

Abstract

Dosimetry verification is an important step during intensity modulated radiotherapy treatment (IMRT). The verification is usually conducted with measurements and independent dose calculations. However, currently available independent dose calculation methods were developed for step-and-shoot beam delivery methods, and their uses for dynamic multi-leaf collimator (MLC) delivery methods are not efficient. In this study, a dose calculation method was developed to perform independent dose verifications for a dynamic MLC-based IMRT technique for Varian linear accelerators. This method extracts the machine delivery parameters from the dynamic MLC (DMLC) files generated by the IMRT treatment planning system. Based on the parameters a monitor unit (MU) matrix was separately calculated as two terms: direct exposure from the open MLC field and leakage contributions, where the leaf-end leakage contribution becomes more important in higher dose gradient regions. The MU matrix was used to compute the primary dose and the scattered dose with a modified Clarkson technique. The doses computed using the method were compared with both measurement and treatment planning for 14 and 25 plans respectively. An average of less than 2% agreement was observed and the standard deviation was about 1.9%.

摘要

剂量验证是调强放射治疗(IMRT)过程中的重要步骤。该验证通常通过测量和独立剂量计算来进行。然而,目前可用的独立剂量计算方法是为步进式射野输送方法开发的,其在动态多叶准直器(MLC)输送方法中的应用效率不高。在本研究中,开发了一种剂量计算方法,用于对瓦里安直线加速器基于动态MLC的IMRT技术进行独立剂量验证。该方法从IMRT治疗计划系统生成的动态MLC(DMLC)文件中提取机器输送参数。基于这些参数,将监测单位(MU)矩阵分别计算为两项:开放MLC射野的直接照射和泄漏贡献,其中叶端泄漏贡献在高剂量梯度区域更为重要。MU矩阵用于通过改进的克拉克森技术计算原发射线剂量和散射剂量。分别将使用该方法计算的剂量与14个和25个计划的测量值和治疗计划进行了比较。观察到平均一致性小于2%,标准差约为1.9%。

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