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Radiotherapy dosimetry assessment with optical projection tomography

机译:光学投影断层扫描的放射疗法剂量测定评估

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Recent advances in radiotherapy have created the need to develop novel methods for the accurate, three-dimensional assessment of the applied radiation dose during specific radiotherapy plans. Here we present a study based on the use of polymer gel dosimeters in combination with a novel Optical Projection Tomography system, which allows the association of optical properties, namely the attenuation coefficient, to the irradiation dose. Polymer gel dosimeters are polymerized after X-ray irradiation via free radical production during water radiolysis resulting to increased optical opacity as well as change of the nuclear magnetic resonance relaxation times, thus making it possible to study them with both optical and MRI techniques. The optical tomographic system employs a sensitive CCD camera, a rotation stage allowing full 360 degrees rotation and a homogeneous white light source transilluminating the samples. This setup allows the calculation of the optical attenuation coefficient which can then be directly related to the applied radiotherapy dose, as well as the definition of the surface of the sample in space. The experimental procedure involves the recording of transillumination images of the polymer samples in steps of 1 degree to get the desired resolution. Data analysis is performed by back propagating the photons using an inverse Radon transform resulting to the reconstruction of three dimensional images of the attenuation coefficient or equivalently the dose distribution. The sensitivity and dynamic range offered by the technique covers the range of radiotherapy doses in modern clinical practice and are compared with the corresponding achieved with MRI.
机译:放射疗法的最新进展已经创造了在特定放射治疗计划期间制定了对应用辐射剂量的准确,三维评估的新方法。在这里,我们提出了一种基于使用聚合物凝胶剂量计的研究与新的光学投影断层摄影系统组合使用,这允许光学性质的关联,即衰减系数,辐照剂量。聚合物凝胶剂量计在水辐射过程中通过自由基产生在X射线照射之后聚合,导致光透射度增加以及核磁共振弛豫时间的变化,从而可以用光学和MRI技术研究它们。光学断层系统采用敏感的CCD摄像机,旋转级允许完整的360度旋转和经过滤样品的均匀白光源。该设置允许计算可以与所施加的放射疗法剂量直接相关的光衰减系数,以及空间中样品表面的定义。实验程序涉及以1度的步骤记录聚合物样品的过敏图像以获得所需的分辨率。通过使用逆氡变换返回传播光子来执行数据分析,从而改变衰减系数的三维图像或等效的剂量分布。该技术提供的灵敏度和动态范围涵盖了现代临床实践中的放射治疗剂量的范围,并与MRI的相应实现的相应进行比较。

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