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Found 9887 publications. Showing page 110 of 396:

Publication  
Year  
Category

Plastic fantastic

Hanssen, Linda

2019

Plastic fantastic

Hanssen, Linda

2019

Plastic fantastic

Hanssen, Linda

2018

Plastic fantastic

Hanssen, Linda

2018

Plastic contamination in fulmars in the European Arctic over 25 years

Collard, France; Tulatz, Felix; Husabø, Eirin; Benjaminsen, Stine Charlotte; Krapp, Rupert; Strøm, Hallvard; Gabrielsen, Geir Wing; Herzke, Dorte; Harju, Mikael; Halsband, Claudia; Sagerup, Kjetil; Tarroux, Arnaud; Danielsen, Jóhannis; Anderssen, Kathryn Elizabeth

2023

Plastic contamination in fulmars in the European Arctic over 25 years

Collard, France; Tulatz, Felix; Benjaminsen, Stine Charlotte; Krapp, Rupert; Strøm, Hallvard; Gabrielsen, Geir; Hertzke, Dorte; Harju, Mikael; Halsband, Claudia; Sagerup, Kjetil; Tarroux, Arnaud; Danielsen, Jóhannis; Anderssen, Kate

2024

Plastic burdens in northern fulmars from Svalbard: looking back 25 years

Collard, France; Bangjord, Georg; Herzke, Dorte; Gabrielsen, Geir Wing

The northern fulmar Fulmarus glacialis ingests a larger number of (micro)plastics than many other seabirds due to its feeding habits and gut morphology. Since 2002, they are bioindicators of marine plastics in the North Sea region, and data are needed to extend the programme to other parts of their distribution areas, such as the Arctic. In this study, we provide data on ingested plastics by fulmars collected in 1997 in Kongsfjorden, Svalbard. An extraction protocol with KOH was used and for half of the birds, the gizzard and the proventricular contents were analysed separately. Ninety-one percent of the birds had ingested at least one piece of plastic with an average of 10.3 (±11.9 SD) pieces. The gizzards contained significantly more plastics than the proventriculus. Hard fragments and polyethylene were the most common characteristics. Twelve percent of the birds exceeded the EcoQO value of 0.1 g.

Elsevier

2022

Plastic burdens in northern fulmars from Svalbard: looking back 25 years

Collard, France; Bangjord, Georg; Herzke, Dorte; Gabrielsen, Geir Wing

2023

Plast. Hva-Hvor-Hvorfor.

Hanssen, Linda

2019

Plasma concentrations of selected organobromine compounds and polychlorinated biphenyls in postmenopausal women of Québec, Canada.

Sandanger, T.; Sinotte, M.; Dumas, P.; Marchand, M.; Sandau, C.D.; Pereg, D.; Berube, S.; Brisson, J.; Ayotte, P.

2007

Plasma concentrations of organohalogenated pollutants in predatory bird nestlings: Associations to growth rate and dietary tracers.

Bustnes, J.O.; Bårdsen, B.J.; Herzke, D.; Johnsen, T.V.; Eulaers, I.; Ballesteros, M.; Hanssen, S.A.; Covaci, A.; Jaspers, V.L.B.; Eens, M.; Sonne, C.; Halley, D.; Moum, T.; Nøst, T.H.; Erikstad, K.E.; Ims, R.A.

2013

Plasma concentrations of organohalogenated contaminants in white-tailed eagle nestlings – The role of age and diet

Løseth, Mari Engvig; Briels, Nathalie; Eulaers, Igor; Nygård, Torgeir; Malarvannan, Govindan; Poma, Giulia; Covaci, Adrian; Herzke, Dorte; Bustnes, Jan Ove; Lepoint, Gilles; Jenssen, Bjørn Munro; Jaspers, Veerle

Concentrations of organohalogenated contaminants (OHCs) can show significant temporal and spatial variation in the environment and wildlife. Most of the variation is due to changes in use and production, but environmental and biological factors may also contribute to the variation. Nestlings of top predators are exposed to maternally transferred OHCs in the egg and through their dietary intake after hatching. The present study investigated spatial and temporal variation of OHCs and the role of age and diet on these variations in plasma of Norwegian white-tailed eagle (Haliaeetus albicilla) nestlings. The nestlings were sampled at two locations, Smøla and Steigen, in 2015 and 2016. The age of the nestlings was recorded (range: 44 - 87 days old) and stable carbon and nitrogen isotopes (δ13C and δ15N) were applied as dietary proxies for carbon source and trophic position, respectively. In total, 14 polychlorinated biphenyls (PCBs, range: 0.82 - 59.05 ng/mL), 7 organochlorinated pesticides (OCPs, range: 0.89 - 52.19 ng/mL), 5 polybrominated diphenyl ethers (PBDEs, range: 0.03 - 2.64 ng/mL) and 8 perfluoroalkyl substances (PFASs, range: 4.58 - 52.94 ng/mL) were quantified in plasma samples from each location and year. The OHC concentrations, age and dietary proxies displayed temporal and spatial variations. The age of the nestlings was indicated as the most important predictor for OHC variation as the models displayed significantly decreasing plasma concentrations of PCBs, OCPs, and PBDEs with increasing age, while concentrations of PFASs were significantly increasing with age. Together with age, the variations in PCB, OCP and PBDE concentrations were also explained by δ13C and indicated decreasing concentrations with a more marine diet. Our findings emphasise age and diet as important factors to consider when investigating variations in plasma OHC concentrations in nestlings.

Elsevier

2018

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