Density dependence is important in the ecology and evolution of microbial and cancer cells. Typically, we can only measure net growth rates, but the underlying density-dependent mechanisms that give rise to the observed dynamics can manifest in birth processes, death processes, or both. Therefore, we utilize the mean and variance of cell number fluctuations to separately identify birth and death rates from time series that follow stochastic birth-death processes with logistic growth. Our method provides a novel perspective on stochastic parameter identifiability, which we validate by analyzing the accuracy in terms of the discretization bin size. We apply our method to the scenario where a homogeneous cell population goes through three stag...
In this paper we present a new methodology that allows us to formulate and analyse stochastic multis...
We used a simple discrete-time population model to investigate how temporally structured density-dep...
Biological systems involving proliferation, migration and death are observed across all scales. For ...
The growth function of populations is central in biomathematics. The main dogma is the existence of ...
Mathematical descriptions of birth–death–movement processes are often calibrated to measurements fro...
In order to model random density-dependence in population dynamics, we construct the random analogue...
International audienceThe relative role of density-dependent and density-independent variation in vi...
Fluctuations of cell state, e.g., abundances of some proteins, have attracted much attention both th...
The evolution of the probability density of a biological population is described using nonlinear sto...
In many biological processes heterogeneity within clonal cell populations is an important issue. One...
(A) Growth and death dynamics regulation is composed out of two environmental factors and described ...
Maintenance and regeneration of adult tissues rely on the self-renewal of stem cells. Regeneration w...
International audienceIndividual cells exhibit specific proliferative responses to changes in microe...
In this paper we present a new methodology that allows us to formulate and analyse stochas...
The classic Luria-Delbrück model can be interpreted as a Poisson compound (number of mutations) of e...
In this paper we present a new methodology that allows us to formulate and analyse stochastic multis...
We used a simple discrete-time population model to investigate how temporally structured density-dep...
Biological systems involving proliferation, migration and death are observed across all scales. For ...
The growth function of populations is central in biomathematics. The main dogma is the existence of ...
Mathematical descriptions of birth–death–movement processes are often calibrated to measurements fro...
In order to model random density-dependence in population dynamics, we construct the random analogue...
International audienceThe relative role of density-dependent and density-independent variation in vi...
Fluctuations of cell state, e.g., abundances of some proteins, have attracted much attention both th...
The evolution of the probability density of a biological population is described using nonlinear sto...
In many biological processes heterogeneity within clonal cell populations is an important issue. One...
(A) Growth and death dynamics regulation is composed out of two environmental factors and described ...
Maintenance and regeneration of adult tissues rely on the self-renewal of stem cells. Regeneration w...
International audienceIndividual cells exhibit specific proliferative responses to changes in microe...
In this paper we present a new methodology that allows us to formulate and analyse stochas...
The classic Luria-Delbrück model can be interpreted as a Poisson compound (number of mutations) of e...
In this paper we present a new methodology that allows us to formulate and analyse stochastic multis...
We used a simple discrete-time population model to investigate how temporally structured density-dep...
Biological systems involving proliferation, migration and death are observed across all scales. For ...