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Biotechnology and Bioengineering|May 3, 2025
Detecting Excess Biofilm Thickness in Microbial Electrolysis Cells by Real-Time In-Situ Biofilm MonitoringAndreas Netsch, Inka Latussek, Harald Horn, et al.Biosensors|January 20, 2022
On-Line Monitoring of Biofilm Accumulation on Graphite-Polypropylene Electrode Material Using a Heat Transfer SensorAndreas Netsch, Harald Horn, Michael WagnerBiosensors|February 25, 2025
In Situ Biofilm Monitoring Using a Heat Transfer Sensor: The Impact of Flow Velocity in a Pipe and Planar SystemAndreas Netsch, Shaswata Sen, Harald Horn, et al.Biotechnology and Bioengineering|March 8, 2017
Optical coherence tomography in biofilm research: A comprehensive reviewMichael Wagner, Harald HornMicroorganisms|November 24, 2022
Impact of Fe2+ and Shear Stress on the Development and Mesoscopic Structure of Biofilms-A Bacillus subtilis Case StudyLuisa Gierl, Harald Horn, Michael WagnerBiotechnology and Bioengineering|March 20, 2015
Time-resolved biofilm deformation measurements using optical coherence tomographyFlorian Blauert, Harald Horn, Michael WagnerBiotechnology and Bioengineering|August 19, 2010
Investigation of the mesoscale structure and volumetric features of biofilms using optical coherence tomographyMichael Wagner, Danial Taherzadeh, Christoph Haisch, et al.Biotechnology and Bioengineering|October 27, 2015
Assessing the influence of biofilm surface roughness on mass transfer by combining optical coherence tomography and two-dimensional modelingChunyan Li, Michael Wagner, Susanne Lackner, et al.Water Research|September 11, 2018
Determination of mechanical properties of biofilms by modelling the deformation measured using optical coherence tomographyCristian Picioreanu, Florian Blauert, Harald Horn, et al.Scientific Reports|November 6, 2019
Quantifying Concentration Polarization - Raman Microspectroscopy for In-Situ Measurement in a Flat Sheet Cross-flow Nanofiltration Membrane UnitOliver Jung, Florencia Saravia, Michael Wagner, et al.Pageof 127