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基于光学CT的商用三维凝胶剂量计的初步评估

Initial evaluation of commercial optical CT-based 3D gel dosimeter.

作者信息

Islam K T S, Dempsey James F, Ranade Manisha K, Maryanski Marek J, Low Daniel A

机构信息

Department of Radiation Oncology, Mallinckrodt Institute, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

Med Phys. 2003 Aug;30(8):2159-68. doi: 10.1118/1.1593636.

Abstract

We evaluated the OCTOPUS-ONE research laser CT scanner developed and manufactured by MGS Research, Inc. (Madison, CT). The scanner is designed for imaging 3D optical density distributions in BANG gels. The scanner operates in a translate-rotate configuration with a single scanning laser beam. The rotating cylindrical gel phantom is immersed in a refractive index matching solution and positioned at the center of a square tank made of plastic and glass. A stationary polarized He-Ne laser beam (633 nm) is reflected from a mirror moving parallel to the tank wall and scans the gel. Another mirror moves synchronously along the opposite side of the tank and collects the transmitted light and sends it to a single stationary silicon photodetector. A filtered backprojection algorithm is used to reconstruct projection data in a plane. The laser-mirrors-detector assembly is mounted on a horizontal platform that moves vertically for slice selection. We have tested the mechanical and optical setup, projection centering on the axis of rotation, linearity, and spatial resolution. We found the optical detector to respond linearly to transmitted light from control samples. The spatial resolution of the scanner was determined by employing a split field resolution technique. We obtained the horizontal and vertical full widths at half maxima of the laser beam intensity profiles as 0.6 and 0.8 mm, respectively. Dose calibration tests of the gel were performed using a nine-field (2 x 2 cm2 each) dose pattern irradiated at different dose levels. Finally, we compared gel-derived 2D planar dose distribution against radiochromic film measured dose distribution for both the nine-field and a uniform 5 x 5 cm2 field of 6 MV x rays. Very similar dose distributions were observed in gel and radiochromic film except in regions of steep dose gradient and highest dose. A dose normalization of 15.6% was required between the two dosimeters due to differences in overall radiation response. After normalization, analysis using the gamma evaluation showed that the radiochromic film and gel-measured dose distributions differed by a maximum gamma of 1.3 using 5% and 1.5 mm dose difference and distance-to-agreement criteria. The optical CT scanner has great potential as a 3D dosimeter, but a few refinements and further testing are necessary before its routine clinical use.

摘要

我们评估了由MGS Research公司(位于康涅狄格州麦迪逊市)研发制造的OCTOPUS-ONE研究型激光CT扫描仪。该扫描仪旨在对BANG凝胶中的三维光密度分布进行成像。扫描仪采用平移-旋转配置,配备单束扫描激光束。旋转的圆柱形凝胶体模浸没在折射率匹配溶液中,并放置在由塑料和玻璃制成的方形水箱中心。一束固定的偏振氦氖激光束(633纳米)从平行于水箱壁移动的镜子反射,扫描凝胶。另一面镜子沿水箱的另一侧同步移动,收集透射光并将其发送到单个固定的硅光电探测器。采用滤波反投影算法在平面上重建投影数据。激光-镜子-探测器组件安装在一个水平平台上,该平台垂直移动以进行切片选择。我们测试了机械和光学装置、投影在旋转轴上的对中、线性度和空间分辨率。我们发现光学探测器对来自对照样品的透射光呈线性响应。扫描仪的空间分辨率通过采用分裂场分辨率技术来确定。我们获得激光束强度分布的水平和垂直半高全宽分别为0.6毫米和0.8毫米。使用在不同剂量水平照射的九野(每野2×2平方厘米)剂量模式对凝胶进行剂量校准测试。最后,我们将凝胶衍生的二维平面剂量分布与针对九野和6兆伏X射线的均匀5×5平方厘米野的放射变色胶片测量的剂量分布进行了比较。除了在剂量梯度陡峭和剂量最高的区域外,在凝胶和放射变色胶片中观察到非常相似的剂量分布。由于总体辐射响应的差异,两种剂量计之间需要15.6%的剂量归一化。归一化后,使用伽马评估进行分析表明,使用5%和1.5毫米的剂量差异以及距离一致性标准,放射变色胶片和凝胶测量的剂量分布的最大伽马值为1.3。光学CT扫描仪作为一种三维剂量计具有很大潜力,但在其常规临床应用之前还需要一些改进和进一步测试。

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