Citation: Akt. Kirschner et al., Degradation of emergent and submerged macrophytes in an oxbow lake of an embanked backwater system: Implications for the terrestrialization process, INT REV HYD, 86(4-5), 2001, pp. 555-571
Authors:
Farnleitner, AH
Hocke, L
Beiwl, C
Kavka, GG
Zechmeister, T
Kirschner, AKT
Mach, RL
Citation: Ah. Farnleitner et al., Rapid enzymatic detection of Escherichia coli contamination in polluted river water, LETT APPL M, 33(3), 2001, pp. 246-250
Authors:
Wieltschnig, C
Kirschner, AKT
Steitz, A
Velimirov, B
Citation: C. Wieltschnig et al., Weak coupling between heterotrophic nanoflagellates and bacteria in a eutrophic freshwater environment, MICROB ECOL, 42(2), 2001, pp. 159-167
Authors:
Kirschner, AKT
Ulbricht, T
Steitz, A
Velimirov, B
Citation: Akt. Kirschner et al., Material fluxes through the procaryotic compartment in a eutrophic backwater branch of the River Danube, AQUAT MIC E, 17(3), 1999, pp. 211-230
Citation: Akt. Kirschner et B. Velimirov, Modification of the H-3-leucine centrifugation method for determining bacterial protein synthesis in freshwater samples, AQUAT MIC E, 17(2), 1999, pp. 201-206
Authors:
Wieltschnig, C
Wihlidal, P
Ulbricht, T
Kirschner, AKT
Velimirov, B
Citation: C. Wieltschnig et al., Low control of bacterial production by heterotrophic nanoflagellates in a eutrophic backwater environment, AQUAT MIC E, 17(1), 1999, pp. 77-89
Citation: Akt. Kirschner et B. Velimirov, Benthic bacterial secondary production measured via simultaneous H-3-thymidine and C-14-leucine incorporation, and its implication for the carbon cycle of a shallow macrophyte-dominated backwater system, LIMN OCEAN, 44(8), 1999, pp. 1871-1881