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Mycoses|June 24, 2000
The continuous flow culture as an in vitro model in experimental mycologyH Bernhardt, K Zimmermann, M KnokeZeitschrift Fur Urologie Und Nephrologie|January 1, 1977
[Fungal infestation of the excretory urinary ways in chronic pyelonephritis]G Kraatz, H Bernhardt, R RanftMycoses|January 1, 1997
[Candida identification: experiences with the Vitek automated system]K Schulz, H Bernhardt, G SchröderEuropean Journal of Biochemistry|January 3, 1977
Kinetic studies on a 4-methoxybenzoate O-demethylase from Pseudomonas putidaF H Bernhardt, W Nastainczyk, V SeydewitzEuropean Journal of Biochemistry|September 21, 2000
Substrate and solvent isotope effects on the fate of the active oxygen species in substrate-modulated reactions of putidamonooxinH Twilfer, G Sandfort, F H BernhardtEuropean Journal of Biochemistry|February 15, 1985
Dioxygen-activating iron center in putidamonooxin. Electron spin resonance investigation of the nitrosylated putidamonooxinH Twilfer, F H Bernhardt, K GersondeDie Nahrung|January 1, 1987
[Tests for anaerobes in patients with hemoblastosis]T F Bootz, H Bernhardt, M SchwenkeEuropean Journal of Biochemistry|April 15, 1989
Substrate-modulated reactions of putidamonooxin. The nature of the active oxygen species formed and its reaction mechanismP Wende, F H Bernhardt, K PflegerEuropean Journal of Biochemistry|September 1, 1975
A 4-methoxybenzoate O-demethylase from Pseudomonas putida. A new type of monooxygenase systemF H Bernhardt, H Pachowsky, H StaudingerEuropean Journal of Biochemistry|December 1, 1978
Chemical and spectral properties of putidamonooxin, the iron-containing and acid-labile-sulfur-containing monooxygenase of a 4-methoxybenzoate O-demethylase from Pseudomonas putidaF H Bernhardt, E Heymann, P S TraylorPageof 413