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Found 10483 publications. Showing page 364 of 420:

Publication  
Year  
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Temporal and spatial trend of perfluoroalkylated substances in harbour porpoise (Phocoena phocoena) livers from Northern Europe. NILU F

Huber, S.; Ahrens, L.; Bårdsen, B.J.; Siebert, U.; Bustnes, J.O.; Ebinghaus, R.; Herzke, D.

2011

Temporal and spatial trend of perfluoroalkylated substances in harbour porpoise (Phocoena phocoena) livers from Northern Europe. NILU F

Huber, S.; Ahrens, L.; Bårdsen, B.J.; Siebert, U.; Bustnes, J.O.; Ebinghaus, R.; Herzke, D.

2011

Temporal and spatial variability of Icelandic dust emissions and atmospheric transport.

Zwaaftink, C. D. G.; Arnalds, Ó.; Dagsson-Waldhauserova, P.; Eckhardt, S.; Prospero, J. M.; Stohl, A.

2017

Temporal changes in per and polyfluoroalkyl substances and their associations with type 2 diabetes

Berg, Vivian; Charles, Dolley; Huber, Sandra; Nøst, Therese Haugdahl; Sandanger, Torkjel M; Averina, Maria; Bergdahl, Ingvar A.; Nilsen, Mia; Wilsgaard, Tom; Rylander, Charlotta

We assessed temporal changes of PFAS and associations with T2DM over a period of 30 years in a nested case–control study with repeated measurements. Logistic regression was used to assess associations between 11 PFAS and T2DM at five time-points in 116 cases and 139 controls (3 pre- and 2 post-diagnostic time-points in cases). Mixed linear models were applied to assess if changes in PFAS were related to T2DM status. In the pre-diagnostic time-point T3 (2001), future cases had higher concentrations of PFHpA, PFNA, PFHxS and PFHpS compared to controls. In the post-diagnostic time point T5 (2015/16), PFNA and PFOS were higher in prevalent cases. PFHxS and PFHpS were positively associated with future T2DM at the pre-diagnostic time-point T3, whereas PFTrDA were inversely associated with future T2DM at T1 (1986/87) and prevalent T2DM at T4 (2007/8). Temporal changes in PFAS across the study period showed that cases experienced a greater increase in pre-diagnostic concentrations of PFHpA, PFTrDA, PFHxS and PFOSA, as well as a larger post-diagnostic decrease in PFOSA, compared to controls. This study is the first to show that temporal changes in PFAS are associated with T2DM status for certain PFAS, and associations between PFAS and T2DM vary according to sample year.

2025

Temporal constraints on ecosystem management: definitions and examples from Europe's regional seas.

O'Higgins, T.; Cooper, P.; Roth, E.; Newton, A.; Farmer, A.; Goulding, I.C.; Tett, P.

2014

Temporal dynamics of circulating persistent organic pollutants in a fasting seabird under different environmental conditions.

Bustnes, J.O.; Moe, B.; Hanssen, S.A.; Herzke, D.; Fenstad, A.A.; Nordstad, T.; Borgå, K.; Gabrielsen, G.W.

2012

Temporal trend and spatial differences of perfluoroalkylated substances in harbour porpoise (Phocoena phocoena) livers from Northern Europe. NILU F

Huber, S.; Ahrens, L.; Bårdsen, B.J.; Siebert, U.; Bustnes, J.O.; Ebinghaus, R.; Herzke, D.

2011

Temporal trends (1999-2010) of perfluoroalkyl acids in commonly consumed food items.

Johansson, J.H.; Berger, U.; Vestergren, R.; Cousins, I.T.; Bignert, A.; Glynn, A.; Darnerud, P.O.

2014

Temporal trends and spatial distribution of traace metals in mosses in Norway

Uggerud, Hilde Thelle; Steinnes, Eiliv; Pfaffhuber, Katrine Aspmo

2018

Temporal trends in Persistent Organic Pollutants and their association with dietary intake

Stensrud, Vanja; Rylander, Charlotta; Krogseth, Ingjerd Sunde; Sandanger, Torkjel M; Nøst, Therese Haugdahl

2026

Temporal trends of legacy organochlorines in a high Arctic seabird over 15 years: preliminary results

Blévin, Pierre; Chastel, Olivier; Angelier, Frédéric; Bech, Claus; Bustamante, Paco; Bustnes, Jan Ove; Herzke, Dorte; Goutte, Aurélie; Jouanneau, William; Krogseth, Ingjerd Sunde; Leandri-Breton, Don-Jean; Moe, Børge; Sagerup, Kjetil; Sebastiano, Manrico; Tartu, Sabrina; Eulaers, Igor; Gabrielsen, Geir Wing

2022

Temporal Trends of Organochlorine and Perfluorinated Contaminants in a Terrestrial Raptor in Northern Europe Over 34 years (1986–2019)

Bustnes, Jan Ove; Bårdsen, Bård-Jørgen; Herzke, Dorte; Bangjord, Georg; Bourgeon, Sophie; Fritsch, Clémentine; Eulaers, Igor

Fourteen legacy organochlorine (OC) contaminants and 12 perfluoroalkyl substances (PFASs) were measured in eggs of tawny owls (Strix alueco) in central Norway (1986–2019). We expected OCs to have reached stable equilibrium levels due to bans, and that recent phase-out of some PFASs would have slowed the increase of these compounds. ∑OC comprised on average approximately 92% of the measured compounds, whereas ∑PFAS accounted for approximately 8%. However, whereas the ∑OC to ∑PFAS ratio was approximately 60 in the first 5 years of the study, it was only approximately 11 in the last 5 years. Both OC pesticides and polychlorinated biphenyls (PCBs) showed substantial declines over the study period (~85%–98%): hexachlorocyclohexanes and chlordanes seemed to be levelling off, whereas p,p′-dichlorodiphenyldichloroethylene (p,p′-DDE) and hexachlororbenzene (HCB), and most PCB congeners still seemed to decline at a more or less constant rate. While the concentration of perfluorooctane sulfonic acid (PFOS), the dominating PFAS, was reduced by approximately 43%, other perfluorinated sulfonates (PFSAs) showed only minor changes. Moreover, the median concentrations of seven perfluorinated carboxylic acids (PFCAs) increased approximately five-fold over the study period. Perfluorononanoic acid and perfluoroundecanoate acid, however, seemed to be levelling off in recent years. In contrast, perfluorododecanoic acid, perfluorodecanoate acid, perfluorotridecanoic acid, and perfluorotetradecanoic acid seemed to increase more or less linearily. Finally, perfluorooctanoic acid (PFOA) was increasingly likely to be detected over the study period. Hence, most legacy OCs and PFOS have not reached a lower threshold with stable background levels, and voluntary elimination of perfluoroalkyl carboxylates still has not resulted in declining levels in tawny owls in central Norway.

2022

Temporal trends of perfluorooctanesulfonate isomer and enantiomer patterns in archived Swedish and American serum samples.

Liu, Y.; Pereira, A.S.; Beesoon, S.; Vestergren, R.; Berger, U.; Olsen, G.W.; Glynn, A.; Martin, J.W.

2015

Temporal trends of persistent organic pollutants (POPs) and other organic contaminants in Arctic air.

Hung, H.; Kallenborn, R.; Breivik, K.; Su, Y.; Ma, J.; Brorström-Lundén, E.; Olafsdottir, K.; Thorlacius, J.M.; Leppänen, S.; Bossi, R.; Skov, H.; Manø, S.; Konoplev, A.; Stern, G.; Sverko, E.; Shoeib, M.; Fellin, P.

2011

Temporal trends of persistent organic pollutants (POPs) in arctic air: 20 years of monitoring under the Arctic Monitoring and Assessment Programme (AMAP).

Hung, H.; Katsoyiannis, A.; Brorström-Lundén, E.; Olafsdottir, K.; Aas, W.; Breivik, K.; Bohlin-Nizzetto, P.; Sigurdsson, A.; Hakola, H.; Bossi, R.; Skov, H.; Sverko, E.; Barresi, E.; Fellin, P.; Wilson, S.

2016

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