BACKGROUND: One of the most efficient radiation protection methods to reduce the risk of adverse health outcomes in case of accidental radioactive iodine release is the administration of potassium iodine (KI). Although KI administration is recommended by WHO’s guidelines for iodine prophylaxis following nuclear accidents and is also widely implemented in most national guidelines, the scientific evidence for the guidelines lacks as the guidelines are mostly based on expert opinions and recommendations. Therefore, this study will provide evidence by systematically reviewing the effects of KI administration in case of accidental radioactive iodine release on thyroid cancer, hypothyroidism, and benign nodules. METHODS: We will apply standard sy...
15th Coordination and Planning Meeting of the World-Health-Organization's Radiation-Emergency-Medica...
BACKGROUND: Treatment modalities like targeted radiotherapy with (131)I-meta-iodobenzylguanidine ((1...
Background: Treatment of differentiated thyroid carcinoma (DTC) often involves administration of rad...
The effects of iodine blocking following nuclear accidents on thyroid cancer, hypothyroidism, and be...
Spallek L, Krille L, Reiners C, Schneider R, Yamashita S, Zeeb H. Adverse effects of iodine thyroid ...
Severe nuclear accidents may lead to a release of radioactivity, including radioactive iodine, into ...
The recent nuclear disaster at Japan has raised global concerns about effects of radioactive leakage...
Chernobyl demonstrated that iodine-131 (131I) released in a nuclear accident can cause malignant thy...
Abstract: Chernobyl demonstrated that iodine-131 ( 131 I) released in a nuclear accident can cause m...
Iodine is an essential element for the production of thyroid hormones (THs). Both deficient and exce...
Purpose of review: This is a summary of the nuclear accident at the Tokyo Electric Power Company Fuk...
15th Coordination and Planning Meeting of the World-Health-Organization's Radiation-Emergency-Medica...
BACKGROUND: Treatment modalities like targeted radiotherapy with (131)I-meta-iodobenzylguanidine ((1...
Background: Treatment of differentiated thyroid carcinoma (DTC) often involves administration of rad...
The effects of iodine blocking following nuclear accidents on thyroid cancer, hypothyroidism, and be...
Spallek L, Krille L, Reiners C, Schneider R, Yamashita S, Zeeb H. Adverse effects of iodine thyroid ...
Severe nuclear accidents may lead to a release of radioactivity, including radioactive iodine, into ...
The recent nuclear disaster at Japan has raised global concerns about effects of radioactive leakage...
Chernobyl demonstrated that iodine-131 (131I) released in a nuclear accident can cause malignant thy...
Abstract: Chernobyl demonstrated that iodine-131 ( 131 I) released in a nuclear accident can cause m...
Iodine is an essential element for the production of thyroid hormones (THs). Both deficient and exce...
Purpose of review: This is a summary of the nuclear accident at the Tokyo Electric Power Company Fuk...
15th Coordination and Planning Meeting of the World-Health-Organization's Radiation-Emergency-Medica...
BACKGROUND: Treatment modalities like targeted radiotherapy with (131)I-meta-iodobenzylguanidine ((1...
Background: Treatment of differentiated thyroid carcinoma (DTC) often involves administration of rad...