Aaki Fujio, Ishidoya Tatsuya, Ikegami Tohru, Moribe Nobuyuki, Yamashita Yasuyuki
Department of Radiological Technology, Kumamoto University School of Health Sciences, Kumamoto, 862-0976, Japan.
Med Phys. 2005 Jun;32(6):1548-54. doi: 10.1118/1.1925187.
We have recently developed a prototypical radiophotoluminescent glass plate dosimeter (GPD) system as a device for small field dosimetry. The purpose of this study is to examine the usefulness of the GPD system for small field dosimetry. The profiles measured with the GPD were evaluated by comparing them to those from Kodak X-Omat V and GAFCROMIC XR type R film dosimeters for 2, 5, 9, and 15 mm circular collimators created by a linear accelerator-based radiosurgery system. The GPD output factors were compared with those of various detectors including an ion chamber, a p-type silicon diode detector, a glass rod dosimeter (GRD), and a diamond detector. The results measured with the GPD were also confirmed by comparing them to those from Monte Carlo simulations. The accuracy of a simulated beam is validated by the excellent agreement between Monte Carlo calculated and measured central axis depth-dose curves for 9- and 15 mm circular collimators using 4- and 10 MV photon beams. The GPD profiles show almost the same full width at half maximum as those of film dosimeters and Monte Carlo simulations at 4- and 10 MV photon beams, but a little narrower penumbrae than the film dosimeters and Monte Carlo simulations. The output factors measured with the GPD are in good agreement with those from a diode detector, a diamond detector, and the GRD with a small active volume and Monte Carlo simulations, except for a very small 2 mm circular collimator. It was found that the GPD is a very useful detector for small field dosimetry.
我们最近开发了一种原型放射光致发光玻璃板剂量计(GPD)系统,作为一种用于小射野剂量测定的设备。本研究的目的是检验GPD系统在小射野剂量测定中的实用性。通过将GPD测量的剂量分布与柯达X-Omat V和GAFCROMIC XR型R胶片剂量计在基于直线加速器的放射外科系统所产生的2、5、9和15毫米圆形准直器下的剂量分布进行比较,对GPD测量的剂量分布进行了评估。将GPD的输出因子与包括电离室、p型硅二极管探测器、玻璃棒剂量计(GRD)和金刚石探测器在内的各种探测器的输出因子进行了比较。通过将GPD测量的结果与蒙特卡罗模拟的结果进行比较,也对GPD测量的结果进行了验证。利用4和10 MV光子束,通过蒙特卡罗计算和测量的9和15毫米圆形准直器中心轴深度剂量曲线之间的良好一致性,验证了模拟射束的准确性。在4和10 MV光子束下,GPD的剂量分布半高宽与胶片剂量计和蒙特卡罗模拟的半高宽几乎相同,但半影比胶片剂量计和蒙特卡罗模拟的稍窄。除了非常小的2毫米圆形准直器外,GPD测量的输出因子与二极管探测器、金刚石探测器以及具有小有效体积的GRD和蒙特卡罗模拟的输出因子高度一致。结果发现,GPD是一种非常适用于小射野剂量测定的探测器。