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The International Commission on Radiological Protection (ICRP) recently adopted a detailed biokinetic model for systemic iodine with reference transfer coefficients based on typical worldwide dietary intakes of stable iodine. The regional data provided demonstrate that the ICRP reference thyroidal biokinetics may differ substantially across regions with atypically low or high dietary intakes of stable iodine. Importantly, the design of the ICRP model facilitates modifications of reference thyroidal kinetics based on regional dietary iodine intake. The present study extended the ICRP model to the South Korean population, whose dietary iodine intake is much higher than the global mean. The following three transfer coefficients were selected as targets for Korean-specific values: thyroidal uptake rate (), hormonal secretion rate () and leakage rate of thyroidal organic iodine as inorganic iodide (). The Korean-specific values for,andwere determined to be 4.48, 0.0086 and 0.0171 d, respectively, to yield the measurements of thyroidal iodine and physiological status of Korean adults. The determinedandvalues differed noticeably from the ICRP values, whereas thevalue was comparable to that of the ICRP. Compared with the ICRP reference model, the Korean model, in which the Korean-specific transfer coefficients were adopted, predicted noticeably lower thyroidal uptake and faster decrease of thyroidal iodine. In addition, the predicted cumulative activities of radioiodine in the thyroid were substantially lower (40-80%) than those predicted by the ICRP model. The Korean model developed in this study demonstrates that the iodine biokinetics for Koreans (i.e. a population with a high iodine consumption) obviously differ from the prediction of the ICRP model. Hence, the Korean model may serve to improve the accuracy of thyroid dose estimation for Koreans and will lead to practical changes in matters concerned with radiological protection.
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http://dx.doi.org/10.1088/1361-6498/abd842 | DOI Listing |
Appl Radiat Isot
November 2024
Federal Fluminense University, Department of General Biology (LARARA / LASBIV / LCR / PPGDOT), São Domingos, Niterói, RJ, 24210-201, Brazil. Electronic address:
Concern about radiation exposure to non-human biota and the environment has increased since the 1990s, resulting in several publications by UNSCEAR, IAEA, ICRP, among other agencies, which highlighted significant gaps in knowledge regarding non-human biota and resulted in the establishment of Reference Animals and Plants (RAPs). In Brazil, the Atlantic Forest biome has vast biodiversity, but there is a lack of information on the radiometric profile of plant species growing there. Thus, the objective of this study was to evaluate the radiometric profile of Ouratea miersii (Malpighiales), endemic to the Atlantic Rainforest, collected in the State of Rio de Janeiro, city of Niterói, at the Municipal Natural Park (PARNIT), which covers a region of protected Atlantic Rainforest.
View Article and Find Full Text PDFInt J Radiat Oncol Biol Phys
November 2024
Massachusetts General Hospital, Harvard Medical school, Boston, MA.
Purpose: To assess the impact of liver model complexity on the estimated radiation dose to circulating blood during radiotherapy.
Methods: Six hepatocellular carcinoma patients were selected covering a range of clinical treatment volume (CTV) sizes and locations. Photon and proton treatment plans were generated for each patient.
Dentomaxillofac Radiol
November 2024
Department of Dentistry and Oral Health, Aarhus University, Denmark.
Objective: To develop an accurate method for converting dose-area product (DAP) to patient dose for dental cone-beam computed tomography (CBCT) using deep learning.
Methods: 24,384 CBCT exposures of an adult phantom were simulated with PCXMC 2.0, using permutations of tube voltage, filtration, source-isocenter distance, beam width/height and isocenter position.
Phys Med
December 2024
Semmelweis University, Department of Biophysics and Radiation Biology, Budapest, Hungary; Kinepict Health Ltd., Budapest, Hungary.
Objective: By modelling patient exposures of interventional procedures, this study compares the reduction of radiation detriment between Digital Variance Angiography (DVA) and Digital Subtraction Angiography (DSA).
Methods: The paper presents a retrospective risk assessment using an in-house developed tool on 107 patient exposures from a clinical trial of DVA used to diagnose peripheral arterial disease (PAD). DICOM exposure parameters were used to initiate the PENELOPE (PENetration and Energy LOss of Positrons and Electrons) Monte Carlo simulation, radiation quality and quantity, and irradiation geometry.
Front Med (Lausanne)
November 2024
Shulan International Medical College, Zhejiang Shuren University, Hangzhou, Zhejiang, China.
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