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10.1097/HP.0000000000000198

http://scihub22266oqcxt.onion/10.1097/HP.0000000000000198
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C4558551!4558551!25627948
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suck abstract from ncbi


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pmid25627948      Health+Phys 2015 ; 108 (3): 357-63
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  • A PUBLIC HEALTH PERSPECTIVE ON THE U S RESPONSE TO THE FUKUSHIMA RADIOLOGICAL EMERGENCY #MMPMID25627948
  • Whitcomb RC; Ansari AJ; Buzzell JJ; McCurley MC; Miller CW; Smith JM; Evans DL
  • Health Phys 2015[Mar]; 108 (3): 357-63 PMID25627948show ga
  • On 11 March 2011, northern Japan was struck by first a magnitude 9.0 earthquake off the eastern coast and then by an ensuing tsunami. At the Fukushima Dai-ichi Nuclear Power Plant (NPP), these twin disasters initiated a cascade of events that led to radionuclide releases. Radioactive material from Japan was subsequently transported to locations around the globe, including the U.S. The levels of radioactive material that arrived in the U.S. were never large enough to cause health effects, but the presence of this material in the environment was enough to require a response from the public health community. Events during the response illustrated some U.S. preparedness challenges that previously had been anticipated and others that were newly identified. Some of these challenges include the following: (1) Capacity, including radiation health experts, for monitoring potentially exposed people for radioactive contamination are limited and may not be adequate at the time of a large-scale radiological incident; (2) there is no public health authority to detain people contaminated with radioactive materials; (3) public health and medical capacities for response to radiation emergencies are limited; (4) public health communications regarding radiation emergencies can be improved to enhance public health response; (5) national and international exposure standards for radiation measurements (and units) and protective action guides lack uniformity; (6) access to radiation emergency monitoring data can be limited; and (7) the Strategic National Stockpile may not be currently prepared to meet the public health need for KI in the case of a surge in demand from a large-scale radiation emergency. Members of the public health community can draw on this experience to improve public health preparedness.
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