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2-D energy-resolved imaging of gold nanoparticle distribution at concentrations relevant for in-vitro studies

机译:2-D在与体外研究相关的浓度下金纳米粒子分布的2-D能量分辨成像

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The present contribution lies in the framework of a research effort aimed at identifying the most suitable imaging techniques able to map the distribution of functionalized nanoparticles acting as biological markers taken up by specific cellular receptors in healthy and pathological biological tissues and to give a map of cellular radio-sensitivity across the tumor volume, in order to guide radiation dose prescription in intensity modulated radiotherapy (IMRT). To this aim we conceived and developed a custom compact spectroscopic module which accommodates a 10 mm2 Silicon Drift Detector as well as a thermoelectric Peltier cooler and the front-end electronics. A slightly focusing polycapillary optics coupled to the detector allows performing 2D mapping in step and scan mode. We present the results obtained during a beam time in DIAMOND synchrotron source at beamline B16. Different Perspex phantoms have been measured: both single holes and two-holes in a donut configuration filled with different concentrations of gold nanoparticles (starting from 8 mg/ml down to 0.005 mg/ml).
机译:本贡献在于旨在鉴定能够映射作为由健康和病理生物组织中特异性细胞受体占用的功能化纳米粒子的分布的最合适的成像技术的研究框架,并给予细胞肿瘤体积的无线电敏感性,以引导强度调节放射治疗(IMRT)中的辐射剂量处方。为了实现这一目标,我们构思和开发了一种自定义紧凑型光谱模块,其适用于10 mm 2 硅漂移探测器以及热电珀耳帖冷却器和前端电子设备。耦合到检测器的稍微聚焦的多百分点光学允许在步骤和扫描模式下执行2D映射。我们在BeamLine B16的钻石同步rotron源中的光束时间期间提出了结果。已经测量了不同的Perspex幻像:在填充不同浓度的金纳米颗粒(从8mg / ml下降至0.005mg / ml)的甜甜圈配置中的单孔和两个孔。

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