Although the Cold Atmospheric Plasma (CAP) technology proved promising for inactivation of biofilms present on abiotic food contact surfaces, more research is required to examine the behavior of the CAP surviving biofilm-associated cells. It was therefore examined whether (i) CAP treated (Listeria monocytogenes and Salmonella Typhimurium) biofilm-associated cells were able to further colonize the already established biofilms during a subsequent incubation period and (ii) isolates of the surviving population became less susceptible toward CAP when the number of biofilm development-CAP treatment cycles increased. For this purpose, a direct treatment was applied using a helium-based Dielectric Barrier Discharge electrode configuration. Results...
The main objectives of this work were to investigate the effect of atmospheric cold plasma (ACP) aga...
Microbial biofilms and bacteria internalised in produce tissue may reduce the effectiveness of decon...
Cold atmospheric pressure plasma (CAP) is a novel non‐thermal technology that is gain-ing increasing...
The last decades, it has become clear that most (pathogenic) bacteria, such as the target microorgan...
Cold Atmospheric Plasma (CAP) is a promising novel method for biofilm inactivation as log-reduction ...
Most environmental biofilms contain a variety of species. These species can establish cooperative an...
The large potential of cold atmospheric plasma (CAP) for food decontamination has recently been reco...
Atmospheric cold plasma (ACP) offers great potential for decontamination of food borne pathogens. Th...
We investigate the ability to disrupt and limit growth biofilms of Pseudomonas aeruginosa using appl...
The biofilm mode of growth protects bacterial cells against currently applied disinfection methods f...
Cold atmospheric plasma (CAP) is a minimal food processing technology of increasing interest in the ...
The biofilm mode of growth protects bacterial cells from applied disinfection methods for abiotic (f...
Experimental studies into the use of cold atmospheric plasmas for inactivating foodborne pathogens a...
The main objectives of this work were to investigate the effect of atmospheric cold plasma (ACP) aga...
Despite many efforts, a high number of foodborne outbreaks is reported yearly. In order to ensure th...
The main objectives of this work were to investigate the effect of atmospheric cold plasma (ACP) aga...
Microbial biofilms and bacteria internalised in produce tissue may reduce the effectiveness of decon...
Cold atmospheric pressure plasma (CAP) is a novel non‐thermal technology that is gain-ing increasing...
The last decades, it has become clear that most (pathogenic) bacteria, such as the target microorgan...
Cold Atmospheric Plasma (CAP) is a promising novel method for biofilm inactivation as log-reduction ...
Most environmental biofilms contain a variety of species. These species can establish cooperative an...
The large potential of cold atmospheric plasma (CAP) for food decontamination has recently been reco...
Atmospheric cold plasma (ACP) offers great potential for decontamination of food borne pathogens. Th...
We investigate the ability to disrupt and limit growth biofilms of Pseudomonas aeruginosa using appl...
The biofilm mode of growth protects bacterial cells against currently applied disinfection methods f...
Cold atmospheric plasma (CAP) is a minimal food processing technology of increasing interest in the ...
The biofilm mode of growth protects bacterial cells from applied disinfection methods for abiotic (f...
Experimental studies into the use of cold atmospheric plasmas for inactivating foodborne pathogens a...
The main objectives of this work were to investigate the effect of atmospheric cold plasma (ACP) aga...
Despite many efforts, a high number of foodborne outbreaks is reported yearly. In order to ensure th...
The main objectives of this work were to investigate the effect of atmospheric cold plasma (ACP) aga...
Microbial biofilms and bacteria internalised in produce tissue may reduce the effectiveness of decon...
Cold atmospheric pressure plasma (CAP) is a novel non‐thermal technology that is gain-ing increasing...