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Towards Radiotherapy Enhancement and Real Time Tumor Radiation Dosimetry Through 3D Imaging of Gold Nanoparticles Using XFCT

机译:通过XFCT通过金纳米粒子的3D成像实现放射治疗增强和实时肿瘤放射剂量测定

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To enhance the efficiency of radiotherapy, a promising strategy consists in tumor exposure simultaneously to ionizing radiation (IR) and gold nanoparticles (GNPs). Indeed, when exposed to the radiation beam, these GNPs exhibit a photoelectric effect that generates reactive oxygen species (ROS) within the tumor and enhances the direct IR related deleterious effects. The measurement of this photoelectric effect thanks to an additional detector could give new insight for in vivo quantification and distribution of the GNPs in the tumor and more importantly for measuring the precise dose deposition. As a first step towards such a challenge, we present here materials and methods designed for detecting and measuring very low concentrations of GNPs in solution and for performing 3D reconstruction of small gold objects whose size is representative with respect to the considered application. A matrix image detector, whose sensitivity is first validated through the detection of few hundreds of micrograms of GNPs, is combined with a pinhole element and moved along a limited circular trajectory to acquire 2D fluorescence images of a motionless object. We implement a direct back-projection algorithm that provides a 3D image of these objects from this sparse set of data.
机译:为了提高放射治疗的效率,一种有前途的策略是将肿瘤同时暴露于电离辐射(IR)和金纳米颗粒(GNPs)中。实际上,当这些GNP暴露在辐射束中时,它们会表现出光电效应,从而在肿瘤内产生活性氧(ROS),并增强与IR相关的直接有害作用。由于使用了额外的检测器,这种光电效应的测量可以为体内GNP在肿瘤中的定量和分布提供新的见解,更重要的是,可以测量精确的剂量沉积。作为应对这一挑战的第一步,我们在这里介绍设计​​用于检测和测量溶液中极低浓度的GNP以及用于执行小金物体的3D重建的材料和方法,这些小金物体的尺寸对于所考虑的应用而言具有代表性。矩阵图像检测器(其灵敏度首先通过检测数百微克的GNP来验证)与针孔元件组合,并沿有限的圆形轨迹移动,以获取静止物体的2D荧光图像。我们实现了直接反投影算法,该算法从该稀疏数据集中提供这些对象的3D图像。

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