We undertake a detailed mathematical analysis of a recent nonlinear ordinary differential equation (ODE) model describing the chemotactic signalling cascade within an {\it Escherichia coli} cell. The model includes a detailed description of the cell signalling cascade and an average approximation of the receptor activity. A steady-state stability analysis reveals the system exhibits one positive real steady-state which is shown to be asymptotically stable. Given the occurrence of a negative feedback between phosphorylated CheB (CheB-P) and the receptor state, we ask under what conditions, the system may exhibit oscillatory type behaviour. A detailed analysis of parameter space reveals that whilst variation in kinetic rate parameters within ...
AbstractEvolution has provided many organisms with sophisticated sensory systems that enable them to...
Mathematical modeling of bacterial chemotaxis systems has been influential and insightful in helping...
Individual cells utilize series of biochemical reactions, called signaling pathways, to translate en...
We undertake a detailed mathematical analysis of a recent nonlinear ordinary differential equation (...
We formulate an agent-based population model of Escherichia coli cells which incorporates a descript...
AbstractWe formulate an agent-based population model of Escherichia coli cells which incorporates a ...
The chemotaxis pathway of Escherichia coli is one of the best studied and modelled biological signal...
Biological systems are exposed to various perturbations that affect performance of the cellular netw...
ABSTRACTThe signaling apparatus mediating bacterial chemotaxis can adapt to a wide range of persiste...
Background: The chemotaxis pathway in the bacterium Escherichia coli allows cells to detect changes ...
Chemotaxis is a fundamental cellular process by which cells sense and navigate in their environment...
AbstractA general “multi-stage” regulation model, based on linearly connected regulatory units, is f...
AbstractChemotaxis is the process, by which cells sense changes in their chemical environment and mo...
Stochasticity is ubiquitous in all processes. Its contribution in shaping the output response is not...
Thesis (Ph. D.)--Harvard-MIT Division of Health Sciences and Technology, 2008.This electronic versio...
AbstractEvolution has provided many organisms with sophisticated sensory systems that enable them to...
Mathematical modeling of bacterial chemotaxis systems has been influential and insightful in helping...
Individual cells utilize series of biochemical reactions, called signaling pathways, to translate en...
We undertake a detailed mathematical analysis of a recent nonlinear ordinary differential equation (...
We formulate an agent-based population model of Escherichia coli cells which incorporates a descript...
AbstractWe formulate an agent-based population model of Escherichia coli cells which incorporates a ...
The chemotaxis pathway of Escherichia coli is one of the best studied and modelled biological signal...
Biological systems are exposed to various perturbations that affect performance of the cellular netw...
ABSTRACTThe signaling apparatus mediating bacterial chemotaxis can adapt to a wide range of persiste...
Background: The chemotaxis pathway in the bacterium Escherichia coli allows cells to detect changes ...
Chemotaxis is a fundamental cellular process by which cells sense and navigate in their environment...
AbstractA general “multi-stage” regulation model, based on linearly connected regulatory units, is f...
AbstractChemotaxis is the process, by which cells sense changes in their chemical environment and mo...
Stochasticity is ubiquitous in all processes. Its contribution in shaping the output response is not...
Thesis (Ph. D.)--Harvard-MIT Division of Health Sciences and Technology, 2008.This electronic versio...
AbstractEvolution has provided many organisms with sophisticated sensory systems that enable them to...
Mathematical modeling of bacterial chemotaxis systems has been influential and insightful in helping...
Individual cells utilize series of biochemical reactions, called signaling pathways, to translate en...