The Physics of Complex Systems has recently taken a more and more important role in the description of natural systems because of the interactions, both deterministic and noisy, between such systems and the environment. In particular the noise plays a relevant role in biological systems, whose dynamics is strongly influenced by environmental variables subject to random fluctuations. In this work a stochastic model is exploited to reproduce the growth of bacteria in food of animal origin. Specifically the dynamics of a bacterial species, Listeria monocytogenes, is analyzed in the presence of lactic acid bacteria (LAB) during the period of the fermentation of meat products. The model, based on a generalization of the Lotka-Volterra equations ...
We develop a stochastic differential equation for the purpose of studying experiments in long-term e...
The aim of this thesis is to use mathematical models to develop understanding of bacteria and phage ...
Predictive models are mathematical expressions that describe the growth, survival, inactivation, or ...
The Physics of Complex Systems has recently taken a more and more important role in the description ...
Copyright © 2013 Davide Valenti et al. This is an open access article distributed under the Creative...
The present article discusses the use of modified Lotka\u2013Volterra equations in order to stochast...
This article presents a Listeria monocytogenes growth model in milk at the farm bulk tank stage. The...
Daily or other periodic microbial counts in many foods, particularly ground meats, poultry, and raw ...
We analyze properties of experimental microbial time series, from plankton and the human microbiome,...
A simplified stochastic model of bacterial nutrient uptake and metabolism is presented. An evolution...
Predicting the growth and behaviour of microorganisms in food has long been an aim in food microbiol...
In this monograph, we have provided a general framework of how noise can arise and be incorporated ...
International audienceWe revisit the modeling of the diauxic growth of a pure microorganism on two d...
International audienceA stochastic modelling approach was developed to describe the distribution of ...
At the single cell level, bacterial gene expression is a highly stochastic process. Protein concentr...
We develop a stochastic differential equation for the purpose of studying experiments in long-term e...
The aim of this thesis is to use mathematical models to develop understanding of bacteria and phage ...
Predictive models are mathematical expressions that describe the growth, survival, inactivation, or ...
The Physics of Complex Systems has recently taken a more and more important role in the description ...
Copyright © 2013 Davide Valenti et al. This is an open access article distributed under the Creative...
The present article discusses the use of modified Lotka\u2013Volterra equations in order to stochast...
This article presents a Listeria monocytogenes growth model in milk at the farm bulk tank stage. The...
Daily or other periodic microbial counts in many foods, particularly ground meats, poultry, and raw ...
We analyze properties of experimental microbial time series, from plankton and the human microbiome,...
A simplified stochastic model of bacterial nutrient uptake and metabolism is presented. An evolution...
Predicting the growth and behaviour of microorganisms in food has long been an aim in food microbiol...
In this monograph, we have provided a general framework of how noise can arise and be incorporated ...
International audienceWe revisit the modeling of the diauxic growth of a pure microorganism on two d...
International audienceA stochastic modelling approach was developed to describe the distribution of ...
At the single cell level, bacterial gene expression is a highly stochastic process. Protein concentr...
We develop a stochastic differential equation for the purpose of studying experiments in long-term e...
The aim of this thesis is to use mathematical models to develop understanding of bacteria and phage ...
Predictive models are mathematical expressions that describe the growth, survival, inactivation, or ...