Oderinde Oluwaseyi M, du Plessis F C P
Department of Medical Physics, University of the Free State, P.O. Box 339, Bloemfontein 9300, South Africa.
Comput Math Methods Med. 2017;2017:7025281. doi: 10.1155/2017/7025281. Epub 2017 Aug 27.
The Integral Quality Monitoring (IQM) System is a real-time beam output verifying system that validates the integrity and accuracy of patient treatment plan (TP) data during radiation treatment. The purpose of this study was to evaluate the sensitivity of the IQM to errors in segment using EGSnrc/BEAMnrc Monte Carlo (MC) codes. Sensitivity analysis (SA) techniques were applied to study the significance of small alterations of field sizes (segments) on the IQM signal response. One hundred and eighty multileaf segments were analyzed with methods that include scatter plots (SP), brute force, variance-based (VAR), and standard regression coefficient SA. The segments were altered randomly within ±1, ±2, and ±3 mm leaf steps for 10 MV photon beams. SP analysis gradient and VAR maximum index are 1.045 and 0.556 for the smallest segment while the largest segment has the value of 0.018 and 0.504, respectively. The brute force and standard regression displayed maximum sensitivity indices around the unaltered segments. These tests conclusively indicated that the IQM was more sensitive to alterations of small segments compared to larger segments. This is important since small segment variation will cause a higher dose output variation that should be picked up during online beam monitoring.
积分质量监测(IQM)系统是一种实时束流输出验证系统,可在放射治疗期间验证患者治疗计划(TP)数据的完整性和准确性。本研究的目的是使用EGSnrc/BEAMnrc蒙特卡罗(MC)代码评估IQM对射野误差的敏感性。应用敏感性分析(SA)技术研究射野尺寸(射野)的微小变化对IQM信号响应的影响。采用散点图(SP)、暴力法、基于方差(VAR)和标准回归系数SA等方法分析了180个多叶射野。对于10MV光子束,在±1、±2和±3mm的叶片步长范围内随机改变射野。最小射野的SP分析梯度和VAR最大指数分别为1.045和0.556,而最大射野的值分别为0.018和0.504。暴力法和标准回归显示在未改变的射野周围有最大的敏感性指数。这些测试最终表明,与大射野相比,IQM对小射野的变化更敏感。这很重要,因为小射野变化会导致更高的剂量输出变化,应在在线束流监测期间检测到。