Publications

  • Valve gape behaviour of mussels ( Mytilus edulis ) exposed to dispersed oil as an environmental monitoring endpoint

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  • Effect of dispersed crude oil on the feeding activity, retention efficiency, and filtration rate of differently sized blue mussels (Mytilus edulis)

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  • From SELDI-TOF MS to protein identification by on-chip elution

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  • From SELDI-TOF to identificaiton

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  • Gender-specific proteome changes in atlantic cod exposed to produced water and C4-C7 alkylphenols

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  • DNA Damage in Mussels following exposure to three potential endocrine disruptors using the comet assay and the alkaline unwinding assay

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  • Data processing and classification analysis of proteomic changes: a case study of oil pollution in the mussel, Mytilus edulis

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  • Mass spectrometric profiling – a diagnostic tool in fish ?

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  • Investigation of micronuclei and other nuclear abnormalities in peripheral blood and kidney of marine fish treated with crude oil (Cellular and histopatology)

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  • The BEEP Stavanger Workshop: Mesocosm exposures (Workshop and design and Chemistry)

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  • An ecotoxicoproteomic approach (SELDI-TOF mass spectrometry) to biomarker discovery in crab exposed to pollutants under laboratory conditions (Molecular Biology)

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  • An overview of the BEEP Stavanger Workshop (Conclusion)

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  • Preliminary study of responses in mussel (Mytilus edilus) exposed to bisphenol A, diallyl phthalate and tetrabromodiphenyl ether (Biochemistry)

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  • Comparison of protein expression in plasma from nonylphenol and bisphenol A-exposed Atlantic cod (Gadus Morhua) and turbot (Scophthalmus maximus) by use of SELDI-TOF (Molecular Biology)

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  • Background for the BEEP Stavanger Workshop: Biological effects on marine organisms in two common, large, laboratory experiments and in a field study. Comparison of the value (sensitivity, specificity, etc.) of core and new biomarkers.

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  • The potential of ecotoxicoproteomics in environmental monitoring: biomarker profiling in mussel plasma using proteinchip® array technology

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  • Mass Spectrometric protein profiling of mucus and plasma from commercially farmed Atlantic salmon-searching for biomerkers

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  • A proteomic (SELDI-TOF MS) approach to ecotoxicological research

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  • Health Status in fish by protein profiling

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  • Mass spectrometric profiling - a diagnostic tool in fish?

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  • Hormone Distruption in marine invertebrates

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  • WP4, C3 – Mosjøen (Norway): Protein expression, TOSC, GST/CAT and Alkaline unwinding in mussels (Mytilus edulis)

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  • BEEP WP 1 laboratory exposure experiment II

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  • Detecting a field gradient of PAH exposure in decapod crustacean using a novel urinary biomarker

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  • Analysis of micronuclei in blue mussels and fish from the Baltic and the North Seas

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  • Surface-enhanced laser desorption/ionization-time of flight-mass spectrometry approach to biomarker discovery in blue mussels (Mytilus edulis) exposed to polyaromatic hydrocarbons and heavy metals under field conditions

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  • Rapid assessment of polycyclic aromatic hydrocarbon (PAH) exposure in decapod crustaceans by fluorimetric analysis of urine and heamolymph

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  • PAH metabolites in bile from cod and turbot – exposure experiment I

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  • DNA damage in mussels following exposure to three potential endocrine disruptors using comet assay

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  • Use of Proteomics (SELDI-TOF) in assessment of Endocrine Disruption in Molluscs and Crustaceans

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  • Fixed fluorescence - PAH metabolites in bile of fish from field survey Sweden (campaign 2)

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  • BEEP WP4 Campaigns: Heavy metals in water, sediment and biota

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  • BEEP WP 1 laboratory exposure experiment I

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  • Altered protein expression in mussels exposed to endocrine disruptors: DAP, PBDE and Bisphenol A

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  • VTG and ZRP levels in fish from the BEEP WP1 (I and III) laboratory exposures

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  • Biota chemistry data from TBDE 47 exposure

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  • Altered protein expression in mussels exposed to endocrine disruptors: DAP, PBDE and Bisphenol A

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  • Protein expression, TOSC, GST/CAT and Alkaline unwinding in mussels (Mytilus edulis).

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  • DNA damage in mussels following exposure to three potential endocrine disruptors using the comet assay alkaline unwinding assay

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  • : BEEP WP 1 laboratory exposure experiment III

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  • Responses to questions raised by the Greek authorities with regard to the use of deltamethrin in sea bass culture operations

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  • Protein Expression in Chronic Exposure Field Samples Compared to Controlled Laboratory Exposures

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  • Biological Effects of environmental pollution

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  • Use of proteomics (Seldi-TOF) in assessment of endocrine disruption in molluscs and crustaceans

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  • BEEP WP4 Campaigns: PAH body burden in mussels and shore crab

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  • : VTG and ZRP levels in fish from the BEEP WP1 (I and III) laboratory exposures

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  • BEEP WP4 Campaign 1, Norway 2001

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  • Glutathione S-transferase (GST) and Total Oxyradical Scavening Capacity (TOSC) in mussels, crabs and fish

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  • PAH metabolites in bile and urine of fish - Exposure bioarmer for PAH contamination from an aluminium works

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  • EROD, ELISA-CYPIA, VTG and ZRP levels in fish collected at clean and contaminated fiels sistes in Norway

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  • Evidence of bioaccumulation, biotransformation and DNA binding of polyaromatic hydrocarbons (PAH) in Atlantic cod (Gadus morhua) and corkwing wrasse (Symphodus melops) caught in the vicinity of an aluminium works

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  • PAH metabolites in bile, cytochrome P4501A and DNA adducts as environmental risk parameters for chronic oil exposure. A laboratory experiment with Atlantic cod.

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  • Accumulation, effects and biodegradation of dissolved and dispersed oils in sewater column

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  • SPE 61134 - Molecular responses in fish as risk parameters of long term-effects of produced water

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  • Evidence of PAH exposure and DNA adduct formation in fish caught near an aluminium works

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  • Erfaringsrapport for Åsgard Transport - Karmsundet. Legging av gassrørledning i PAH-kontaminert farvann.

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  • Veiledning for etterkantundersøkelse etter akutt oljeforurensning i marint miljø

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  • PAH uptake and metabolism in Atlantic cod (Gadus morhua) chronically exposed to dispersed crude oil.

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  • The use of bile in fishes as an indicator for trace metal pollution in the aquatic environment

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  • "Disposal of oil-based cuttings"

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  • The ratio of two fluorescent probes in haemocytes of mussels as a biomarker of pollution.

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  • Biomarkers as a diagnostic tool to detect environmental effects of produced water in open sea.

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  • Investigation of environmental effects in the field

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  • Algeberedskapssystem for oppdrettsfisk

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  • Resipientundersøkelse i Lysefjorden

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  • Analyser av luftutslipp og avfallsstrømmer fra et røykdykkeranlegg, basert på flytende drivstoff

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  • Sediment og strandsoneundersøkelse i Lundevågen ved Farsund

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  • Uttesting av utstyr for algeberedskap i merdanlegg

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  • Biological Sensors and Indicator Species - Preproject

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  • Resipientundersøkelse i Høgsfjorden

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  • Evaluation of the environmental impact of the produced water discharged at 5 m depth at Heimdal (HMP-1)

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  • Forslag til overvåking av Fensfjorden

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  • Vannproduksjon og behandling av produsert vann offshore

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  • Resipientundersøkelse i ytre deler av Sandsfjorden, Rogaland

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  • Fastlandsforbindelse til Langøy og Vassøy - Hydrografiske forhold

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  • Zeepipe Development Project-Environmental Monitoring Program

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  • Selvabsorberende oljelenser - Delprosjekt 1. Resultater fra laboratorieforsøk

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  • Undersøkelse i Hjelmelands-, Fister- og Årdalsfjorden. Tilstand i dype deler av resipienten og sammenligning av forskjelige utslippskilder

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  • Matfiskoppdrett av kveite. Karkonsept og produksjonsfaktorer

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  • Undersøkelse i Skaaravågen i forbindelse med utplassering av anlegg for Oddsig Fiskeoppdrett A/S

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International Research Institute of Stavanger
Mailing address:
Visiting address:
P.O. Box 8046, N-4068 Stavanger, Norway
Prof. Olav Hanssensvei 15, 4021 Stavanger


Phone:
Fax:

+47 51 87 50 00
+47 51 87 52 00

General email address: firmapost@iris.no
International Research Institute of Stavanger
Mailing address:
Visiting address:
P.O. Box 8046, N-4068 Stavanger, Norway
Prof. Olav Hanssensvei 15, 4021 Stavanger


Phone:
Fax:

+47 51 87 50 00
+47 51 87 52 00

General email address: firmapost@iris.no
International Research Institute of Stavanger
Mailing address:



Visiting address:
P.O. Box 8046
N-4068 Stavanger
Norway

Prof. Olav Hanssensvei 15 
4021 Stavanger

 
Phone:
Fax:
General email:
+47 51 87 50 00
+47 51 87 52 00
firmapost@iris.no