Tore Haug
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Explore the profile of Tore Haug including associated specialties, affiliations and a list of published articles.
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Articles
12
Citations
72
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Recent Articles
1.
Andvik C, Jourdain E, Borgen A, Lyche J, Karoliussen R, Haug T, et al.
Environ Sci Technol
. 2024 Aug;
58(33):14797-14811.
PMID: 39120259
Short-, medium-, and long-chain chlorinated paraffins (CPs) (SCCPs, MCCPs, and LCCPs) and dechloranes are chemicals of emerging concern; however, little is known of their bioaccumulative potential compared to legacy contaminants...
2.
de la Vega C, Kershaw J, Stenson G, Frie A, Biuw M, Haug T, et al.
Glob Chang Biol
. 2023 Jul;
29(19):5582-5595.
PMID: 37477068
Arctic food webs are being impacted by borealisation and environmental change. To quantify the impact of these multiple forcings, it is crucial to accurately determine the temporal change in key...
3.
Andvik C, Haug T, Lyche J, Borga K
Environ Pollut
. 2023 Jan;
319:121001.
PMID: 36610650
Persistent organic pollutants (POPs), including brominated flame retardants (BFRs), perfluoroalkyl substances (PFAS) and metals, can accumulate in marine mammals and be transferred to offspring. In this study, we analyzed 64...
4.
de la Vega C, Buchanan P, Tagliabue A, Hopkins J, Jeffreys R, Frie A, et al.
Glob Chang Biol
. 2022 Feb;
28(9):3054-3065.
PMID: 35202506
Multiple environmental forcings, such as warming and changes in ocean circulation and nutrient supply, are affecting the base of Arctic marine ecosystems, with cascading effects on the entire food web...
5.
Cabrera A, Schall E, Berube M, Anderwald P, Bachmann L, Berrow S, et al.
Glob Chang Biol
. 2022 Feb;
28(8):2657-2677.
PMID: 35106859
Global warming is affecting the population dynamics and trophic interactions across a wide range of ecosystems and habitats. Translating these real-time effects into their long-term consequences remains a challenge. The...
6.
Vacquie-Garcia J, Lydersen C, Biuw M, Haug T, Fedak M, Kovacs K
PLoS One
. 2017 Dec;
12(12):e0187889.
PMID: 29211797
Identifying environmental characteristics that define the ecological niche of a species is essential to understanding how changes in physical conditions might affect its distribution and other aspects of its ecology....
7.
Malde K, Seliussen B, Quintela M, Dahle G, Besnier F, Skaug H, et al.
BMC Genomics
. 2017 Jan;
18(1):76.
PMID: 28086785
Background: In the marine environment, where there are few absolute physical barriers, contemporary contact between previously isolated species can occur across great distances, and in some cases, may be inter-oceanic....
8.
Quintela M, Skaug H, Oien N, Haug T, Seliussen B, Solvang H, et al.
PLoS One
. 2014 Oct;
9(9):e108640.
PMID: 25268591
Inferring the number of genetically distinct populations and their levels of connectivity is of key importance for the sustainable management and conservation of wildlife. This represents an extra challenge in...
9.
Nymo I, Tryland M, Frie A, Haug T, Foster G, Rodven R, et al.
Dis Aquat Organ
. 2013 Nov;
106(3):187-96.
PMID: 24191996
Investigations of hooded seals Cystophora cristata have revealed high prevalences of Brucella-positive seals in the reduced Northeast Atlantic stock, compared to the increasing Northwest Atlantic stock. This study evaluated the...
10.
Glover K, Kanda N, Haug T, Pastene L, Oien N, Seliussen B, et al.
BMC Genet
. 2013 Apr;
14:25.
PMID: 23586609
Background: Minke whales are separated into two genetically distinct species: the Antarctic minke whale found in the southern hemisphere, and the common minke whale which is cosmopolitan. The common minke...