<p>(A) Chronoamperometry of <i>P. aeruginosa</i> biofilms poised at potential of 400 mV vs. Ag/AgCl. (B) Differential pulse voltammetry of <i>P. aeruginosa</i> biofilms after 20 hr of growth poised at potential of 400 mV vs. Ag/AgCl. (C) Representative CVs of the four <i>P. aeruginosa</i> strains used in this study. The CV of the PAO1+sPqsE strain at 20 hr was truncated due to an off-scale condition of the potentiostat.</p
The development of an electrochemical detector to monitor the in situ formation of biofilms is descr...
International audienceThe decrease in the electrochemical activity of multi‐species microbial anodes...
On-line detectors of biofilm - platinum electrodes - were calibrated and validated in the laboratory...
Bacteria are ubiquitous, forming biofilms on nearly any surface in an aqueous environment. The accum...
International audienceDuring infections, fast identification of the microorganisms is critical to im...
Pseudomonas aeruginosa is one of the most common bacteria responsible for nosocomial infections. To ...
<p>A) Nonturnover CVs recorded in acetate-depleted medium at scan rates ranging from 0.5 to 200 mV s...
Electroactive microbial biofilms and the microorganisms embedded therein are not only of crucial fun...
Electroactivity is a property of microorganisms assembled in biofilms that has been highlighted in a...
Electroceutical wound dressings, especially those involving current flow with silver based electrode...
This study used a simple and efficient electrochemical technique, cyclic voltammogram (CV), to quant...
A biofilm of Geobacter sulfurreducens will grow on an anode surface and catalyze the generation of a...
Vis. Exp. (82), e50800, doi:10.3791/50800 (2013). The growth of anodic electroactive microbial biofi...
International audienceAims: To design a cyclic voltammetry (CV) procedure to check the electrochemic...
The study of electroactive microbial biofilms often requires knowledge of the biofilm thickness. Unf...
The development of an electrochemical detector to monitor the in situ formation of biofilms is descr...
International audienceThe decrease in the electrochemical activity of multi‐species microbial anodes...
On-line detectors of biofilm - platinum electrodes - were calibrated and validated in the laboratory...
Bacteria are ubiquitous, forming biofilms on nearly any surface in an aqueous environment. The accum...
International audienceDuring infections, fast identification of the microorganisms is critical to im...
Pseudomonas aeruginosa is one of the most common bacteria responsible for nosocomial infections. To ...
<p>A) Nonturnover CVs recorded in acetate-depleted medium at scan rates ranging from 0.5 to 200 mV s...
Electroactive microbial biofilms and the microorganisms embedded therein are not only of crucial fun...
Electroactivity is a property of microorganisms assembled in biofilms that has been highlighted in a...
Electroceutical wound dressings, especially those involving current flow with silver based electrode...
This study used a simple and efficient electrochemical technique, cyclic voltammogram (CV), to quant...
A biofilm of Geobacter sulfurreducens will grow on an anode surface and catalyze the generation of a...
Vis. Exp. (82), e50800, doi:10.3791/50800 (2013). The growth of anodic electroactive microbial biofi...
International audienceAims: To design a cyclic voltammetry (CV) procedure to check the electrochemic...
The study of electroactive microbial biofilms often requires knowledge of the biofilm thickness. Unf...
The development of an electrochemical detector to monitor the in situ formation of biofilms is descr...
International audienceThe decrease in the electrochemical activity of multi‐species microbial anodes...
On-line detectors of biofilm - platinum electrodes - were calibrated and validated in the laboratory...