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Michael A Unger

Showing results (11-20 of 26) with videos related to

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Environmental Toxicology and Chemistry|December 13, 2022
Immunofluorescence Visualization of Polycyclic Aromatic Hydrocarbon Mixtures in the Eastern Oyster Crassostrea virginicaKristen M Prossner, Hamish J Small, Ryan B Carnegie, et al.
Environmental Science and Pollution Research International|October 6, 2017
Erratum to: Effects-based spatial assessment of contaminated estuarine sediments from Bear Creek, Baltimore Harbor, MD, USASharon E Hartzell, Michael A Unger, Beth L McGee, et al.
Environmental Toxicology and Chemistry|November 2, 2017
Evaluating porewater polycyclic aromatic hydrocarbon-related toxicity at a contaminated sediment site using a spiked field-sediment approachSharon E Hartzell, Michael A Unger, George G Vadas, et al.
Environmental Toxicology and Chemistry|May 7, 2011
Near real-time, on-site, quantitative analysis of PAHs in the aqueous environment using an antibody-based biosensorCandace R Spier, George G Vadas, Stephen L Kaattari, et al.
Marine Pollution Bulletin|January 25, 2025
Decreases in TBT concentrations in southern Chesapeake Bay: Evidence for long-term TBT degradation and reduced imposex in the invasive gastropod, Rapana venosaMichael A Unger, Ellen Harvey, Melissa Southworth, et al.
Environmental Toxicology and Chemistry|March 12, 2003
Genetic structure and mtDNA diversity of Fundulus heteroclitus populations from polycyclic aromatic hydrocarbon-contaminated sitesMargaret Mulvey, Michael C Newman, Wolfgang K Vogelbein, et al.
Environmental Science & Technology|November 13, 2007
Validation of an antibody-based biosensor for rapid quantification of 2,4,6-trinitrotoluene (TNT) contamination in ground water and river waterErin S Bromage, George G Vadas, Ellen Harvey, et al.
Sensing and Bio-Sensing Research|March 1, 2016
A highly sensitive monoclonal antibody based biosensor for quantifying 3-5 ring polycyclic aromatic hydrocarbons (PAHs) in aqueous environmental samplesXin Li, Stephen L Kaattari, Mary A Vogelbein, et al.
Environmental Advances|August 2, 2021
Evaluation of a rapid biosensor tool for measuring PAH availability in petroleum-impacted sedimentJason Conder, Mehregan Jalalizadeh, Hong Luo, et al.
Environmental Science and Pollution Research International|July 17, 2017
Effects-based spatial assessment of contaminated estuarine sediments from Bear Creek, Baltimore Harbor, MD, USASharon E Hartzell, Michael A Unger, Beth L McGee, et al.
Pageof 3

Showing results (11-20 of 26) with videos related to

Sort By:
Pageof 3
Environmental Toxicology and Chemistry|December 13, 2022
Immunofluorescence Visualization of Polycyclic Aromatic Hydrocarbon Mixtures in the Eastern Oyster Crassostrea virginicaKristen M Prossner, Hamish J Small, Ryan B Carnegie, et al.
Environmental Science and Pollution Research International|October 6, 2017
Erratum to: Effects-based spatial assessment of contaminated estuarine sediments from Bear Creek, Baltimore Harbor, MD, USASharon E Hartzell, Michael A Unger, Beth L McGee, et al.
Environmental Toxicology and Chemistry|November 2, 2017
Evaluating porewater polycyclic aromatic hydrocarbon-related toxicity at a contaminated sediment site using a spiked field-sediment approachSharon E Hartzell, Michael A Unger, George G Vadas, et al.
Environmental Toxicology and Chemistry|May 7, 2011
Near real-time, on-site, quantitative analysis of PAHs in the aqueous environment using an antibody-based biosensorCandace R Spier, George G Vadas, Stephen L Kaattari, et al.
Marine Pollution Bulletin|January 25, 2025
Decreases in TBT concentrations in southern Chesapeake Bay: Evidence for long-term TBT degradation and reduced imposex in the invasive gastropod, Rapana venosaMichael A Unger, Ellen Harvey, Melissa Southworth, et al.
Environmental Toxicology and Chemistry|March 12, 2003
Genetic structure and mtDNA diversity of Fundulus heteroclitus populations from polycyclic aromatic hydrocarbon-contaminated sitesMargaret Mulvey, Michael C Newman, Wolfgang K Vogelbein, et al.
Environmental Science & Technology|November 13, 2007
Validation of an antibody-based biosensor for rapid quantification of 2,4,6-trinitrotoluene (TNT) contamination in ground water and river waterErin S Bromage, George G Vadas, Ellen Harvey, et al.
Sensing and Bio-Sensing Research|March 1, 2016
A highly sensitive monoclonal antibody based biosensor for quantifying 3-5 ring polycyclic aromatic hydrocarbons (PAHs) in aqueous environmental samplesXin Li, Stephen L Kaattari, Mary A Vogelbein, et al.
Environmental Advances|August 2, 2021
Evaluation of a rapid biosensor tool for measuring PAH availability in petroleum-impacted sedimentJason Conder, Mehregan Jalalizadeh, Hong Luo, et al.
Environmental Science and Pollution Research International|July 17, 2017
Effects-based spatial assessment of contaminated estuarine sediments from Bear Creek, Baltimore Harbor, MD, USASharon E Hartzell, Michael A Unger, Beth L McGee, et al.
Pageof 3