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Environmental Toxicology and Chemistry|February 8, 2011
Fate of the antifungal drug clotrimazole in agricultural soilLyne Sabourin, Abdul Jabbar Al-Rajab, Ralph Chapman, et al.The Science of the Total Environment|September 8, 2009
Impact of biosolids on the persistence and dissipation pathways of triclosan and triclocarban in an agricultural soilAbdul Jabbar Al-Rajab, Lyne Sabourin, Andrew Scott, et al.The Science of the Total Environment|December 3, 2013
Triclocarban, triclosan and its transformation product methyl triclosan in native earthworm species four years after a commercial-scale biosolids applicationAndré Macherius, David R Lapen, Thorsten Reemtsma, et al.Applied and Environmental Microbiology|March 18, 2014
Safely coupling livestock and crop production systems: how rapidly do antibiotic resistance genes dissipate in soil following a commercial application of swine or dairy manure?Romain Marti, Yuan-Ching Tien, Roger Murray, et al.Water Research|October 23, 2012
Fecal source tracking in water using a mitochondrial DNA microarrayNguyet-Minh Vuong, Richard Villemur, Pierre Payment, et al.The Science of the Total Environment|August 31, 2010
Fate of the antiretroviral drug tenofovir in agricultural soilAbdul Jabbar Al-Rajab, Lyne Sabourin, Ralph Chapman, et al.Canadian Journal of Microbiology|January 18, 2018
Enrichment of antibiotic resistance genes in soil receiving composts derived from swine manure, yard wastes, or food wastes, and evidence for multiyear persistence of swine Clostridium sppAndrew Scott, Yuan-Ching Tien, Craig F Drury, et al.Applied and Environmental Microbiology|September 15, 2009
Pathotype and antibiotic resistance gene distributions of Escherichia coli isolates from broiler chickens raised on antimicrobial-supplemented dietsClaudie Bonnet, Fatoumata Diarrassouba, Roland Brousseau, et al.The Science of the Total Environment|April 18, 2024
Persistence and evidence for accelerated biodegradation of streptomycin in agricultural soilsMegan Demars, Tim McDowell, Justin B Renaud, et al.Environmental Science and Pollution Research International|March 30, 2018
Explaining the accelerated degradation of ciprofloxacin, sulfamethazine, and erythromycin in different soil exposure scenarios by their aqueous extractabilityAnaïs Goulas, Lyne Sabourin, Farah Asghar, et al.Pageof 21