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An Assessment of Photoacoustic and Photon Counting Multispectral x-Ray Imaging Techniques for Imaging Gold Nanorods in vivo as Part of Predicting Dose Enhancing Effects

机译:作为预测剂量增强效果的一部分,对多光谱X射线成像技术进行了多光谱X射线成像技术的评估

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Radiotherapy, whilst useful in the treatment of many cancers, suffers from the drawback of unavoidably delivering radiation doses to healthy tissue. Gold nanoparticles (GNPs) have been the subject of much interest as they are able to generate a local dose enhancing effect (DEE), allowing lower intensity beams to achieve a given effect, sparing healthy tissue. It is important that GNP distributions can be ascertained before radiotherapy begins so that accurate treatment plans can be made. Two imaging modalities that show great promise in being able to identify these GNPs in vivo without delivering excessive DEEs are photoacoustic imaging (PAI) and photon counting multi-spectral x-ray imaging (x-CSI). This work forms part of a larger project to assess the feasibility of using x-CSI and PAI to predict DEEs during radiotherapy planning. This work assessed the degradation of gold nanorods (GNRs) in a photoacoustic system sold by iThera, specifically comparing the protective effects against degradation afforded by a silica coating as opposed to GNR PEGylation. This coating is also hoped to prevent spectral broadening when the GNRs are endocytosed, allowing PAI to confirm uptake of GNRs by cells. With regards x-CSI, this work uses a combination of Monte Carlo and Finite Element modelling techniques to realistically model cylindrical phantoms of high-Z materials in order to demonstrate the potential improvements in imaging contrast that x-CSI can produce over traditional energy integrated x-ray imaging techniques. Results on the assessment of both techniques are discussed.
机译:放射疗法,同时有用于治疗许多癌症,遭受不可避免地输送辐射剂量的缺点对健康组织。金纳米粒子(GNPS)一直是兴趣的主题,因为它们能够产生局部剂量增强效果(DEE),使得较低强度梁达到给定的效果,使健康组织施加。重要的是,在放射疗法开始之前可以确定GNP分布,以便可以进行准确的治疗计划。两个成像模型,其能够在不提供过多的诸如在不提供过多的诸如没有传递过量的田地的体内识别这些GNP的巨大希望是光声成像(PAI)和光子计数多光谱X射线成像(X-CSI)。这项工作构成了更大项目的一部分,以评估使用X-CSI和PAI在放射治疗计划期间使用X-CSI和PAI的可行性。这项工作评估了It托塔销售的光声系统中的金纳米棒(GNRS)的降解,特别是将保护效果与二氧化硅涂层所提供的降解,而不是GNR PEG化。当GNR是内核的时,该涂层也希望防止光谱展宽,允许PAI通过细胞确认GNR的摄取。关于X-CSI,这项工作采用了蒙特卡罗和有限元建模技术的组合来实现高Z材料的圆柱形模型,以便展示X-CSI可以产生传统能量集成X的成像对比度的潜在改进-Ray成像技术。讨论了两种技术的评估。

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