A five-compartmental biokinetic model of I-131 radioiodine based on in-vivo gamma camera scanning results was developed and successfully applied to nine thyroid cancer patients who were administered 1,110 MBq I-131 in capsules for the residual thyroid gland ablation. The I-131 solution activity among internal organs was analyzed via the revised biokinetic model of iodine recommended by the ICRP-30 and -56 reports. Accordingly, a five-compartmental (stomach, body fluid, thyroid, whole body, and excretion) model was established to simulate the metabolic mechanism of I-131 in thyroid cancer patients, whereas the respective four simultaneous differential equations were solved via a self-developed program run in MATLAB. This made it possible to ...
Radioiodine (131I iodide) has long been a safe, effective and widely used treatment in the managemen...
The aim of this study was to determine the external dose rate of iodine retention as a function of t...
Thyroid metabolism involves iodine, which allows us to use radioactive iodine for diagnostic and the...
The thyroid biokinetic model of radioactive I-131 was re-evaluated using a refined nine-compartmenta...
The use of radioisotopes of iodine in the diagnostic and therapy of thyroid diseases is among the ol...
This study evaluated biokinetic behavior of radioiodine in the bodies of ten female adult patients, ...
Radioiodine (I-131) therapy is the common treatment option for benign thyroid diseases. The objectiv...
The dosimetric studies required for planning individually tailored radioiodine therapy of benign thy...
International audienceProcedures using iodine-131 represent more than 90% of all therapies in nuclea...
131I treatment in thyroid cancer patients may induce side effects, including extrathyroidal cancer a...
The treatment for some thyroid carcinomas involves surgically removing the thyroid gland and adminis...
Radioactive iodine is commonly used for the treatment of different thyroid conditions since the 1940...
Iodine-131 (131I) is one of the most frequently used radionuclides for diagnosis and therapy of thyr...
The objective of this work was to determine normal organ 131I dosimetry in patients undergoing radio...
Accurate measurements of radiation dose are necessary if radiation treatment with I-131 is to be use...
Radioiodine (131I iodide) has long been a safe, effective and widely used treatment in the managemen...
The aim of this study was to determine the external dose rate of iodine retention as a function of t...
Thyroid metabolism involves iodine, which allows us to use radioactive iodine for diagnostic and the...
The thyroid biokinetic model of radioactive I-131 was re-evaluated using a refined nine-compartmenta...
The use of radioisotopes of iodine in the diagnostic and therapy of thyroid diseases is among the ol...
This study evaluated biokinetic behavior of radioiodine in the bodies of ten female adult patients, ...
Radioiodine (I-131) therapy is the common treatment option for benign thyroid diseases. The objectiv...
The dosimetric studies required for planning individually tailored radioiodine therapy of benign thy...
International audienceProcedures using iodine-131 represent more than 90% of all therapies in nuclea...
131I treatment in thyroid cancer patients may induce side effects, including extrathyroidal cancer a...
The treatment for some thyroid carcinomas involves surgically removing the thyroid gland and adminis...
Radioactive iodine is commonly used for the treatment of different thyroid conditions since the 1940...
Iodine-131 (131I) is one of the most frequently used radionuclides for diagnosis and therapy of thyr...
The objective of this work was to determine normal organ 131I dosimetry in patients undergoing radio...
Accurate measurements of radiation dose are necessary if radiation treatment with I-131 is to be use...
Radioiodine (131I iodide) has long been a safe, effective and widely used treatment in the managemen...
The aim of this study was to determine the external dose rate of iodine retention as a function of t...
Thyroid metabolism involves iodine, which allows us to use radioactive iodine for diagnostic and the...