BACKGROUND: Biological systems are inherently inhomogeneous and spatial effects play a significant role in processes such as pattern formation. At the cellular level proteins are often localised either through static attachment or via a dynamic equilibrium. As well as spatial heterogeneity many cellular processes exhibit stochastic fluctuations and so to make inferences about the location of molecules there is a need for spatial stochastic models. A test case for spatial models has been bacterial chemotaxis which has been studied extensively as a model of signal transduction. RESULTS: By creating specific models of a cellular system that incorporate the spatial distributions of molecules we have shown how the fit between simulated and exper...
Chemotaxis, the directed motion of a cell toward a chemical source, plays a key role in many essenti...
Neutrophilic chemotaxis is essential to immune system response to external threats. During this proc...
Spatial stochastic models of single cell kinetics are capable of capturing both fluctuations in mole...
Biological systems are inherently inhomogeneous and spatial effects play a significant role in proce...
Background: Biological systems are inherently inhomogeneous and spatial effects play a significant r...
Computational simulation of cellular processes can provide us with important insights into the dynam...
Computational simulation of cellular processes can provide us with important insights into the dynam...
Motivation: Many biochemical networks involve reactions localized on the cell membrane. This can gi...
Recent advances in biology have shown that proteins and genes often interact probabilistically. The ...
AbstractRecent technological and theoretical advances are only now allowing the simulation of detail...
One important direction of synthetic biology is to establish desired spatial structures from microbi...
Chemotaxis, the directed motion of a cell toward a chemical source, plays a key role in many essenti...
One of the fundamental motivations underlying computational cell biology is to gain insight into the...
Chemotaxis, the directed motion of a cell toward a chemical source, plays a key role in many essenti...
Motivation: Many biochemical networks involve reactions localized on the cell membrane. This can gi...
Chemotaxis, the directed motion of a cell toward a chemical source, plays a key role in many essenti...
Neutrophilic chemotaxis is essential to immune system response to external threats. During this proc...
Spatial stochastic models of single cell kinetics are capable of capturing both fluctuations in mole...
Biological systems are inherently inhomogeneous and spatial effects play a significant role in proce...
Background: Biological systems are inherently inhomogeneous and spatial effects play a significant r...
Computational simulation of cellular processes can provide us with important insights into the dynam...
Computational simulation of cellular processes can provide us with important insights into the dynam...
Motivation: Many biochemical networks involve reactions localized on the cell membrane. This can gi...
Recent advances in biology have shown that proteins and genes often interact probabilistically. The ...
AbstractRecent technological and theoretical advances are only now allowing the simulation of detail...
One important direction of synthetic biology is to establish desired spatial structures from microbi...
Chemotaxis, the directed motion of a cell toward a chemical source, plays a key role in many essenti...
One of the fundamental motivations underlying computational cell biology is to gain insight into the...
Chemotaxis, the directed motion of a cell toward a chemical source, plays a key role in many essenti...
Motivation: Many biochemical networks involve reactions localized on the cell membrane. This can gi...
Chemotaxis, the directed motion of a cell toward a chemical source, plays a key role in many essenti...
Neutrophilic chemotaxis is essential to immune system response to external threats. During this proc...
Spatial stochastic models of single cell kinetics are capable of capturing both fluctuations in mole...