Prediction of microbial growth kinetics can differ from the actual behavior of the target microorganisms. In the present study, the impact of strain variability on maximum specific growth rate (µmax) (h- 1) was quantified using twenty Listeria monocytogenes strains. The µmax was determined as function of four different variables, namely pH, water activity (aw)/NaCl concentration [NaCl], undissociated lactic acid concentration ([HA]), and temperature (T). The strain variability was compared to biological and experimental variabilities to determine their importance. The experiment was done in duplicate at the same time to quantify experimental variability and reproduced at least twice on different experimental days to quantify biological (rep...
Temperature effect on growth rates of Listeria monocytogenes, Salmonella, Escherichia coli, Clostrid...
<p>Microbial growth and inactivation kinetics in food can be predicted when the effects of food prop...
Background and Objective: Variability of foodborne pathogens plays important roles in microbial risk...
Prediction of microbial growth kinetics can differ from the actual behavior of the target microorgan...
Prediction of microbial growth kinetics can differ from the actual behavior of the target microorgan...
Listeria monocytogenes causes the severe foodborne illness listeriosis and survives in food-associat...
AbstractHereby, we showed that the experimental and biological variability in culture preparation ha...
Growth/no growth models can be used to determine the chance that microorganisms will grow in specifi...
Knowledge of the impact of strain variability and growth history on thermal resistance is needed to ...
Microbial growth and inactivation kinetics in food can be predicted when the effects of intrinsic fo...
Listeria monocytogenes is a bacterium widespread in the environment, which has a capacity to survive...
Microbial growth and inactivation kinetics in food can be predicted when the effects of food propert...
Microbial growth and inactivation kinetics in food can be predicted when the effects of food propert...
One of the recommendations of the EURL Listeria monocytogenes (Lm) Technical Guidance Document on sh...
Temperature effect on growth rates of Listeria monocytogenes, Salmonella, Escherichia coli, Clostrid...
Temperature effect on growth rates of Listeria monocytogenes, Salmonella, Escherichia coli, Clostrid...
<p>Microbial growth and inactivation kinetics in food can be predicted when the effects of food prop...
Background and Objective: Variability of foodborne pathogens plays important roles in microbial risk...
Prediction of microbial growth kinetics can differ from the actual behavior of the target microorgan...
Prediction of microbial growth kinetics can differ from the actual behavior of the target microorgan...
Listeria monocytogenes causes the severe foodborne illness listeriosis and survives in food-associat...
AbstractHereby, we showed that the experimental and biological variability in culture preparation ha...
Growth/no growth models can be used to determine the chance that microorganisms will grow in specifi...
Knowledge of the impact of strain variability and growth history on thermal resistance is needed to ...
Microbial growth and inactivation kinetics in food can be predicted when the effects of intrinsic fo...
Listeria monocytogenes is a bacterium widespread in the environment, which has a capacity to survive...
Microbial growth and inactivation kinetics in food can be predicted when the effects of food propert...
Microbial growth and inactivation kinetics in food can be predicted when the effects of food propert...
One of the recommendations of the EURL Listeria monocytogenes (Lm) Technical Guidance Document on sh...
Temperature effect on growth rates of Listeria monocytogenes, Salmonella, Escherichia coli, Clostrid...
Temperature effect on growth rates of Listeria monocytogenes, Salmonella, Escherichia coli, Clostrid...
<p>Microbial growth and inactivation kinetics in food can be predicted when the effects of food prop...
Background and Objective: Variability of foodborne pathogens plays important roles in microbial risk...