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Development of 3D-Printed Heterogeneous Tumour Phantom for Quantitative Analysis in PET/CT Imaging

机译:PET / CT成像中的3D印刷异质肿瘤幻像的研制

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Tumours are heterogenous growths that consists of different types of cells with varying genetic expressions. The complex structure of the tumour makes cancer treatment difficult due to the heterogeneity of each of the cancer cells that react differently to radiation treatment. Therefore, effective treatment requires proper characterization of the tumour heterogeneity, which is difficult to be assessed by most of the current medical imaging technologies. The purpose of this study was to develop a 3D printed heterogenous tumour phantom with multiple compartments to simulate tumour heterogeneity and to assess the accuracy of tumour characterization using Positron Emission Tomography/Computed Tomography (PET/CT) imaging. The tumour phantom was designed and modelled using SolidWorks and then constructed using the fused deposition modelling (FDM) method of 3D printing with polylactide (PLA) filament as the material. Multiple layer of waterproof coating was applied and the phantom was carefully tested for any leakage prior to the study. Each of the compartments of the tumour phantom was filled with different activity of the radiopharmaceutical (~(18)F-FDG). The phantom was then embedded in a water bath to simulate soft tissue and scanned under a PET/CT scanner using standard clinical protocol. The volume and radioactivity of each compartment were then measured using the clinical software as Standardized Uptake Values (SUVs). Results showed that PET/CT imaging able to delineate and quantify the radioactivity of each compartment within the tumour phantom, albeit some difficulties in detecting radioactivity below 100 μCi. Further research is required to improve the design of the tumour phantom to allow for easier injection of the radioactive solution as well as altering the dimensions of the internal compartments to better characterize actual tumour parameters.
机译:肿瘤是异质生长,其由不同类型的细胞具有不同遗传表达式。肿瘤的复杂结构使癌症治疗困难的​​,因为每一个癌细胞的反应不同的辐射治疗的异质性。因此,有效的治疗需要的肿瘤的异质性,这是难以被大多数目前的医学成像技术来评估的适当表征。本研究的目的是开发一种3D印刷异质肿瘤幻象与多个隔间,以模拟肿瘤的异质性,并评估使用正电子发射断层摄影术/计算机断层扫描(PET / CT)成像肿瘤表征的准确性。肿瘤体模的设计和使用SolidWorks建模,然后使用与聚乳酸(PLA)纤维作为材料3D打印熔融沉积成型(FDM)方法构成。涂布防水涂料的多个层和幻象小心地为之前的研究的任何泄漏测试。肿瘤体模的隔室中的每一个中填充放射性药物(〜(18)F-FDG)的不同的活性。然后将体模嵌入在水浴中,以模拟软组织,并使用标准临床方案的PET / CT扫描仪下扫描。然后使用临床软件标准化摄取值(SUV的)的体积和每个隔室的放射性进行测定。结果表明,PET / CT成像能够在肿瘤内幻象划定并量化每个隔室的放射性,尽管在检测低于100微居里的放射性一些困难。需要进一步的研究,以改善肿瘤体模的设计,以允许放射性溶液更容易注射,以及改变所述内部隔室的尺寸以更好地表征实际肿瘤参数。

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