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Journal of Applied Microbiology|November 27, 1998
Rapid method for fluorescent in situ ribosomal RNA labelling of Cryptosporidium parvumD Deere, G Vesey, M Milner, et al.Parasitology Research|December 11, 2002
Comparison of tests for viable and infectious Cryptosporidium parvum oocystsM Jenkins, J M Trout, J Higgins, et al.Physical Review Letters|February 3, 2004
Intrinsic electron accumulation at clean InN surfacesI Mahboob, T D Veal, C F McConville, et al.Applied and Environmental Microbiology|January 3, 2001
Detection of oxytetracycline production by Streptomyces rimosus in soil microcosms by combining whole-cell biosensors and flow cytometryL H Hansen, B Ferrari, A H Sørensen, et al.Scientific Reports|December 27, 2024
Heterostructure growth, electrical transport and electronic structure of crystalline Dirac nodal arc semimetal PtSn4Edward L Beynon, Oliver J Barker, Tim D Veal, et al.Journal of Applied Microbiology|January 16, 2004
Determination of Cryptosporidium parvum oocyst viability by fluorescence in situ hybridization using a ribosomal RNA-directed probeJ J Smith, T S Gunasekera, C R M Barardi, et al.Letters in Applied Microbiology|January 1, 1999
Evaluation of fluorochromes for flow cytometric detection of Cryptosporidium parvum oocysts labelled by fluorescent in situ hybridizationD Deere, G Vesey, N Ashbolt, et al.Cytometry|May 1, 1994
Application of flow cytometric methods for the routine detection of Cryptosporidium and Giardia in waterG Vesey, P Hutton, A Champion, et al.Cytometry|December 1, 1996
Observation of single-cell fluorescence spectra in laser flow cytometryM R Gauci, G Vesey, J Narai, et al.International Journal for Parasitology|October 8, 1998
Viable Cryptosporidium parvum oocysts exposed to chlorine or other oxidising conditions may lack identifying epitopesA G Moore, G Vesey, A Champion, et al.Pageof 7