Related Experiment Video
Updated: Nov 27, 2025

Radionuclide-fluorescence Reporter Gene Imaging to Track Tumor Progression in Rodent Tumor Models
Published on: March 13, 2018
Tissue quantification of radioiodine thyroid uptake in humans by an isotopic imaging technique on slides
Achwak Cherif1,2, Manel Nouira1,3, Nicole Barthe4
1Laboratory of Metabolic Biophysics and Environmental and Applied Toxicology, LR12ES02, Faculty of Medicine, Sousse University, Sousse, Tunisia.
Background:
Thyroid metabolism involves iodine, which allows us to use radioactive iodine for diagnostic and therapy purposes. The efficiency of radioiodine therapy depends on several parameters; the ability of thyroid tissue to uptake radioactive iodine is one of them.
Objective:
The objective of this work is to quantify the radioactive iodine uptake on thyroid tissue.
Methods:
In this work, we developed a method to quantify the in vivo uptake of iodine-131 on sections of thyroid glands removed by thyroidectomies. We performed an analysis of histological sections of the thyroid tissue by beta imaging. We had the opportunity to quantify the fixed radioactivity and to analyze its distribution in the thyroid gland, thanks to the good spatial resolution available with the type of detector used.
Results:
The results gave a high image resolution showing the heterogeneity of iodine-131 fixation by the thyroid tissue. We were able to quantify the tissue radioactivity in mega Becquerel (MBq) per volume unit.
Conclusion:
This work has shown that the direct quantification of the thyroid tissue uptake is possible using the beta imaging system.
More Related Videos
12:04Fluorescence-Activated Cell Sorting-Radioligand Treated Tissue FACS-RTT to Determine the Cellular Origin of Radioactive Signal
Published on: September 10, 2021
10:16Autoradiography as a Simple and Powerful Method for Visualization and Characterization of Pharmacological Targets
Published on: March 12, 2019