Identification of novel, cryptic Clostridioides species isolates from environmental samples collected from diverse geographical locationsCharles H. D. Williamson, Jason W. Sahl, Nathan E. Stone et al.|Microbial Genomics|2022Cited by 32
Domestic canines do not display evidence of gut microbial dysbiosis in the presence of Clostridioides (Clostridium) difficile, despite cellular susceptibility to its toxinsNathan E. Stone, David M. Wagner, Heidie Hornstra et al.|Anaerobe|2019Cited by 27
A local-scale One Health genomic surveillance of Clostridioides difficile demonstrates highly related strains from humans, canines, and the environmentCharles H. D. Williamson, Jason W. Sahl, Chandler C. Roe et al.|Microbial Genomics|2023Cited by 11
A global to local genomics analysis of Clostridioides difficile ST1/RT027 identifies cryptic transmission events in a northern Arizona healthcare networkCharles H. D. Williamson, Jason W. Sahl, Nathan E. Stone et al.|Microbial Genomics|2019Cited by 9
ColiSeq: a multiplex amplicon assay that provides strain level resolution of <i>Escherichia coli</i> directly from clinical specimensCharles H. D. Williamson, Jason W. Sahl, Adam J. Vazquez et al.|Microbiology Spectrum|2024Cited by 7