Yearly intake of 137Cs from various dietary components by the average population of Arctic Russia

Yearly intake of 137Cs from various dietary components by the average population of Arctic Russia
Yearly intake of 137Cs from various dietary components by the average population of Arctic Russia

Yearly intake of 137Cs from various dietary components by the ‘selected’ population of eastern Arctic Russia

Yearly intake of 137Cs from various dietary components by the ‘selected’ population of eastern Arctic Russia
Yearly intake of 137Cs from various dietary components by the ‘selected’ population of eastern Arctic Russia

Yearly intake of 137Cs from various dietary components by the ‘selected’ population of western Arctic Russia

Yearly intake of 137Cs from various dietary components by the ‘selected’ population of western Arctic Russia
Yearly intake of 137Cs from various dietary components by the ‘selected’ population of western Arctic Russia

Yearly intake of 137Cs from various dietary components by the average population of Arctic Norway

Yearly intake of 137Cs from various dietary components by the average population of Arctic Norway
Yearly intake of 137Cs from various dietary components by the average population of Arctic Norway

Yearly intake of 137Cs from various dietary components by the ‘selected’ population of Arctic Norway

Yearly intake of 137Cs from various dietary components by the ‘selected’ population of Arctic Norway
Yearly intake of 137Cs from various dietary components by the ‘selected’ population of Arctic Norway

Yearly intake of 137Cs from various dietary components by the average population of Arctic Sweden

Yearly intake of 137Cs from various dietary components by the average population of Arctic Sweden
Yearly intake of 137Cs from various dietary components by the average population of Arctic Sweden

Yearly intake of 137Cs from various dietary components by the ‘selected’ population of Arctic Sweden

Yearly intake of 137Cs from various dietary components by the ‘selected’ population of Arctic Sweden
Yearly intake of 137Cs from various dietary components by the ‘selected’ population of Arctic Sweden

Changes with time in concentrations of Cd, Pb and Hg in liver and muscle tissue of reindeer (Rangifer tarandus) sampled in three districts in eastern Sweden

Changes with time in concentrations of Cd, Pb and Hg in liver and muscle tissue of reindeer (Rangifer tarandus) sampled in three districts in eastern Sweden
Changes with time in concentrations of Cd, Pb and Hg in liver and muscle tissue of reindeer (Rangifer tarandus) sampled in three districts in eastern Sweden

Concentrations of Hg in dated sediment cores from lakes in Arctic Finland and Canada

Concentrations of Hg in dated sediment cores from lakes in Arctic Finland and Canada
Concentrations of Hg in dated sediment cores from lakes in Arctic Finland and Canada

Lead in sediments near the cryolite mine at Ivittuut, south Greenland Stations 1, 3 and 9 are located at distances of 800 m, 1600 m and 5600 m, respectively, from the mine

Lead in sediments near the cryolite mine at Ivittuut, south Greenland Stations 1, 3 and 9 are located at distances of 800 m, 1600 m and 5600 m, respectively, from the mine
Lead in sediments near the cryolite mine at Ivittuut, south Greenland Stations 1, 3 and 9 are located at distances of 800 m, 1600 m and 5600 m, respectively, from the mine

Changes with time in (weight adjusted, geometric mean) concentrations of Hg in muscle tissue of pike (Esox lucius) in Sweden

Changes with time in (weight adjusted, geometric mean) concentrations of Hg in muscle tissue of pike (Esox lucius) in Sweden
Changes with time in (weight adjusted, geometric mean) concentrations of Hg in muscle tissue of pike (Esox lucius) in Sweden

Concentrations of Hg in Arctic marine sediment cores

Concentrations of Hg in Arctic marine sediment cores
Concentrations of Hg in Arctic marine sediment cores

Temporal trend of Pb concentrations in growing tips of seaweed (Fucus vesiculosus) at the Black Angel lead-zinc mine in West Greenland The background value is estimated to be 02 µg/g dw

Temporal trend of Pb concentrations in growing tips of seaweed (Fucus vesiculosus) at the Black Angel lead-zinc mine in West Greenland The background value is estimated to be 02 µg/g dw
Temporal trend of Pb concentrations in growing tips of seaweed (Fucus vesiculosus) at the Black Angel lead-zinc mine in West Greenland The background value is estimated to be 02 µg/g dw

Temporal trend of Pb concentrations in liver tissue of spotted wolffish (Anarhichas minor) at the Black Angel lead-zinc mine in West Greenland

Temporal trend of Pb concentrations in liver tissue of spotted wolffish (Anarhichas minor) at the Black Angel lead-zinc mine in West Greenland
Temporal trend of Pb concentrations in liver tissue of spotted wolffish (Anarhichas minor) at the Black Angel lead-zinc mine in West Greenland

Age accumulation and temporal comparison of mean concentrations of Hg in liver tissue of ringed seal (Phoca hispida) and beluga whale (Delphinapterus leucas) fron the Canadian Arctic

Age accumulation and temporal comparison of mean concentrations of Hg in liver tissue of ringed seal (Phoca hispida) and beluga whale (Delphinapterus leucas) fron the Canadian Arctic
Age accumulation and temporal comparison of mean concentrations of Hg in liver tissue of ringed seal (Phoca hispida) and beluga whale (Delphinapterus leucas) fron the Canadian Arctic



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