I thyroid activity and committed dose assessment among family members of patients treated with radioactive iodine.

K Brudecki, A Kluczewska-Gałka, P Zagrodzki, B Jarząb, K Gorzkiewicz, T Mróz

Journal: Radiation and environmental biophysics 2021;59(3):559-564

PMID: 32564132

Abstract

The main goal of the present study was estimation of an internal contamination of I among family members of patients treated with radioactive iodine. Thyroid activity measurements of I in examined volunteers were performed using a whole-body spectrometer at the institute of nuclear physics, Polish academy of sciences. During this research, 20 relatives of patients treated with I were examined: eight women and 12 men with an age in the range from 3 to 72 years. In the case of nine individuals, the activity of I in the thyroid was below the detection limit, but among the remaining 11 individuals, the activity varied from (9 ± 3) Bq up to (1140 ± 295) Bq. Subsequently, based on the measurements of thyroid I activities, the corresponding doses were assessed. The highest estimated effective dose reached 218 μSv, while the thyroid equivalent dose was 2.4 mSv. In addition, the experimental data obtained were statistically analysed together with the results of surveys of the individuals participating in the study by means of correspondence analysis and nonparametric tests: Mann-Whitney, gamma, χ and Yule Phi coefficient. These analyses revealed relationships between I activities in the thyroids of the examined individuals and their housing conditions as well as consumption of meals prepared by the patients.

Address: Polish Academy of Sciences, Institute of Nuclear Physics, Radzikowskiego 152, 31-342, Kraków, Poland. [email protected].; Department of Nuclear Medicine and Endocrine Oncology Comprehensive Cancer Center, M. Skłodowska-Curie Memorial Institute of Oncology, Wybrzeże Armii Krajowej 15, 44-101, Gliwice, Poland.; Department of Food Chemistry and Nutrition, Medical College Jagiellonian University, Medyczna 9, 30-688, Kraków, Poland.; Polish Academy of Sciences, Institute of Nuclear Physics, Radzikowskiego 152, 31-342, Kraków, Poland.; Institute of Physics, Jagiellonian University, Łojasiewicza 11, 30-348, Kraków, Poland.
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