Winkler Peter, Hefner Alfred, Georg Dietmar
Division of Medical Radiation Physics, Department of Radiotherapy, Medical University of Vienna, Waehringer Guertel 18-20, A-1090 Vienna, Austria.
Phys Med Biol. 2007 Aug 7;52(15):N355-65. doi: 10.1088/0031-9155/52/15/N05. Epub 2007 Jul 17.
The purpose of this study was to develop, implement and validate a method for portal dosimetry with an amorphous silicon EPID for a wide energy range. Analytic functions were applied in order to correct for nonlinearities in detector response with dose rate, irradiation time and total dose. EPID scattering processes were corrected for by means of empirically determined convolution kernels. For a variety of rectangular and irregularly shaped fields, head scatter factors determined from central axis portal dose values and those measured with an ionization chamber showed a maximum deviation of 0.5%. The accuracy of our method was further investigated for pretreatment IMRT verification (i.e. without absorbers in the beam). The agreement between EPID and film dosimetry was quantified using gamma (gamma) evaluation, with 2% dose and 2 mm distance-to-agreement criteria. All gamma-distributions showed a gamma(mean) < 0.5, a 99th percentile <1.5 and a fraction of pixels with gamma > 1 smaller than 7%. The number of monitor units delivered by single segments of the IMRT fields could be extracted from the portal images with high accuracy. Measured and delivered doses were within +/-3% for more than 98% of data points. Ghosting effects were found to have limited effects on dosimetric IMRT verification.
本研究的目的是开发、实施并验证一种使用非晶硅电子射野影像装置(EPID)在宽能量范围内进行射野剂量测定的方法。应用解析函数来校正探测器响应随剂量率、照射时间和总剂量的非线性。通过经验确定的卷积核校正EPID散射过程。对于各种矩形和不规则形状的射野,由中心轴射野剂量值确定的头部散射因子与用电离室测量的散射因子相比,最大偏差为0.5%。我们进一步研究了该方法在治疗前调强放射治疗(IMRT)验证(即射束中无吸收体)时的准确性。使用γ评估对EPID和胶片剂量测定之间的一致性进行量化,剂量标准为2%,距离一致性标准为2毫米。所有γ分布显示γ(均值)<0.5,第99百分位数<1.5,且γ>1的像素比例小于7%。可以从射野图像中高精度提取IMRT射野单段输送的监测单位数量。对于超过98%的数据点,测量剂量和输送剂量在±3%以内。发现重影效应在剂量学IMRT验证中的影响有限。