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The Combination of In vivo124I-PET and CT Small Animal Imaging for Evaluation of Thyroid Physiology and Dosimetry

机译:体内结合用于甲状腺生理和剂量测定的124I-PET和CT小动物成像

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摘要

>Objective:A thyroid rat model combining functional and anatomical information would be of great benefit for better modeling of thyroid physiology and for absorbed dose calculations. Our aim was to show that 124I-PET and CT small animal imaging are useful as a combined model for studying thyroid physiology and dose calculation. >Methods: Seven rats were subjects for multiple thyroid 124I-imaging and CT-scans. S-values [mGy/MBqs] for different thyroid sizes were simulated. A phantom with spheres was designed for validation of performances of the small animal PET and CT imaging systems. >Results:Small animal image-based measurements of the activity amount and the volumes of the spheres with a priori known volumes showed a good agreement with their corresponding actual volumes. The CT scans of the rats showed thyroid volumes from 34–70 mL. >Conclusions:The wide span in volumes of thyroid glands indicates the importance of using an accurate volume-measuring technique such as the small animal CT. The small animal PET system was on the other hand able to accurately estimate the activity concentration in the thyroid volumes. We conclude that the combination of the PET and CT image information is essential for quantitative thyroid imaging and accurate thyroid absorbed dose calculation.
机译:>目的:结合功能和解剖信息的甲状腺大鼠模型对于更好地建模甲状腺生理学和吸收剂量计算将大有裨益。我们的目的是证明 124 I-PET和CT小动物成像作为研究甲状腺生理学和剂量计算的组合模型是有用的。 >方法:对7只大鼠进行了多次甲状腺 124 I显像和CT扫描。模拟了不同甲状腺大小的S值[mGy / MBqs]。设计了带球体的幻像,用于验证小动物PET和CT成像系统的性能。 >结果:基于动物图像的小测量活动量和先验已知体积的球体体积与相应的实际体积具有很好的一致性。大鼠的CT扫描显示,甲状腺体积为34–70 mL。 >结论:甲状腺的体积跨度很大,表明使用精确的体积测量技术(例如小动物CT)的重要性。另一方面,小型动物PET系统能够准确估计甲状腺体积中的活性浓度。我们得出结论,PET和CT图像信息的结合对于定量甲状腺成像和准确计算甲状腺吸收剂量至关重要。

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