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Three-dimensional radiation dosimetry with optical projection tomography

机译:具有光学投影层析造影的三维辐射剂量法

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Here we present initial results on the study of the dosimetric properties of a normoxic N-Vinylpyrrolidone based polymer gel dosimeter using a newly developed optical projection tomography (OPT) system. The system employs a sensitive CCD camera, a rotation stage allowing full 360 deg rotation and a wide field homogeneous light source which transilluminates the gel sample. This setup is capable of producing high resolution images of the light attenuation map inside the sample's volume in three dimensions (3D). The experimental procedure involves the capturing of two-dimensional projection images of the polymer sample in rotation steps of 1 deg. Data analysis is performed by back projecting the photons using an inverse Radon transform resulting in the reconstruction of 3D images of the attenuation coefficient. The resulting 3D attenuation map of the irradiated volume can be directly correlated to the radiation dose imparted. The OPT system may operate in 'dry' conditions without the use of any refractive index matching fluids. The sensitivity and dynamic range offered by the methodology covers the range of radiotherapy doses in modern clinical practice.
机译:在这里,我们使用新开发的光学投影断层扫描(OPT)系统对常氧N-乙烯基吡咯烷酮聚合物凝胶剂量计的分性性质进行研究的初始结果。该系统采用敏感的CCD摄像机,旋转级允许完整的360°旋转和传递过凝胶样品的宽场均匀光源。该设置能够在三维(3D)中产生样品体积内的光衰减图的高分辨率图像。实验程序涉及在1℃的旋转步骤中捕获聚合物样品的二维投影图像。通过使用逆氡变换突出光子来执行数据分析,从而导致衰减系数的3D图像的重建。所得到的照射体积的3D衰减图可以与赋予辐射剂量直接相关。 OPT系统可以在不使用任何折射率匹配的液体的情况下在“干燥”条件下操作。方法提供的敏感性和动态范围涵盖了现代临床实践中放射治疗剂量的范围。

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