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Food Microbiology|December 3, 2013
Exposure of Escherichia coli O157:H7 to soil, manure, or water influences its survival on plants and initiation of plant defense responseSeungwook Seo, Karl R MatthewsTrends in Parasitology|November 21, 2007
Modelling trypanosome chronicity: VSG dynasties and parasite densityPaula MacGregor, Keith R MatthewsBiochemistry|October 21, 1998
The role of ligand binding in the kinetic folding mechanism of human p21(H-ras) proteinJ Zhang, C R MatthewsAnalytical Biochemistry|May 15, 1993
Protein phosphatase assay suitable for acid-labile substratesY Kim, H R MatthewsJournal of Applied Microbiology|April 23, 2002
A reverse transcriptase-polymerase chain reaction assay for detection of viable Escherichia coli O157:H7: investigation of specific target genesS Yaron, K R MatthewsChemical Senses|August 17, 2000
Adaptation-induced changes in sensitivity in frog olfactory receptor cellsJ Reisert, H R MatthewsJournal of Cell Science|February 12, 1998
Commitment to differentiation and cell cycle re-entry are coincident but separable events in the transformation of African trypanosomes from their bloodstream to their insect formK R Matthews, K GullFood Research International (Ottawa, Ont.)|May 9, 2018
Survival and interaction of Escherichia coli O104:H4 on Arabidopsis thaliana and lettuce (Lactuca sativa) in comparison to E. coli O157:H7: Influence of plant defense response and bacterial capsular polysaccharideHyein Jang, Karl R MatthewsFood Microbiology|August 25, 2016
Potential transfer of extended spectrum β-lactamase encoding gene, blashv18 gene, between Klebsiella pneumoniae in raw foodsYangjin Jung, Karl R MatthewsApplied and Environmental Microbiology|June 19, 2012
Influence of the plant defense response to Escherichia coli O157:H7 cell surface structures on survival of that enteric pathogen on plant surfacesSuengwook Seo, Karl R MatthewsPageof 226