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A Method for Manufacturing Oncological Phantoms for the Quantification of 18F-FDG PET and DW-MRI Studies

机译:一种用于量化18F-FDG PET和DW-MRI研究的肿瘤学模型的方法

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摘要

The aim of this work was to develop a method to manufacture oncological phantoms for quantitation purposes in 18F-FDG PET and DW-MRI studies. Radioactive and diffusion materials were prepared using a mixture of agarose and sucrose radioactive gels. T2 relaxation and diffusion properties of gels at different sucrose concentrations were evaluated. Realistic oncological lesions were created using 3D-printed plastic molds filled with the gel mixture. Once solidified, gels were extracted from molds and immersed in a low-radioactivity gel simulating normal background tissue. A breast cancer phantom was manufactured using the proposed method as an exploratory feasibility study, including several realistic oncological configurations in terms of both radioactivity and diffusion. The phantom was acquired in PET with 18F-FDG, immediately after solidification, and in DW-MRI the following day. Functional volumes characterizing the simulated BC lesions were segmented from PET and DW-MRI images. Measured radioactive uptake and ADC values were compared with gold standards. Phantom preparation was straightforward, and the time schedule was compatible with both PET and MRI measurements. Lesions appeared on 18F-FDG PET and DW-MRI images as expected, without visible artifacts. Lesion functional parameters revealed the phantom's potential for validating quantification methods, in particular for new generation hybrid PET-MRI systems.
机译:这项工作的目的是开发一种在18F-FDG PET和DW-MRI研究中用于定量的制造肿瘤模型的方法。使用琼脂糖和蔗糖放射性凝​​胶的混合物制备放射性和扩散材料。评估了在不同蔗糖浓度下凝胶的T2弛豫和扩散特性。使用填充有凝胶混合物的3D打印塑料模具可以创建逼真的肿瘤学病变。固化后,从模具中提取凝胶,并将其浸入模拟正常背景组织的低放射性凝胶中。使用提议的方法作为探索性可行性研究制造了乳腺癌模型,包括在放射性和扩散方面的几种现实的肿瘤学配置。固化后立即在带有18F-FDG的PET中获得体模,第二天在DW-MRI中获得体模。从PET和DW-MRI图像中分割出表征模拟BC病变的功能体积。将测得的放射性吸收和ADC值与金标准进行比较。幻像的准备很简单,时间表与PET和MRI测量都兼容。如预期的那样,病变出现在18F-FDG PET和DW-MRI图像上,没有可见的伪影。病变功能参数揭示了模型的潜力,可用于验证定量方法,特别是对于新一代混合PET-MRI系统。

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