Recent advances in biology have shown that proteins and genes often interact probabilistically. The resulting effects that arise from these stochastic dynamics differ significantly than traditional deterministic formulations, and have biologically significant ramifications. This has led to the development of computational models of the discrete stochastic biochemical pathways found in living organisms. These include spatial stochastic models, where the physical extent of the domain plays an important role; analogous to traditional partial differential equations. Simulation of spatial stochastic models is a computationally intensive task. We have developed a new algorithm, the Diffusive Finite State Projection (DFSP) method for the efficient...
Motivation: In biological systems formed by living cells, the small populations of some reactant spe...
Linda Petzold of University of California, Santa Barbara presented a lecture on April 19, 2011 from ...
AbstractRecent technological and theoretical advances are only now allowing the simulation of detail...
We have developed a method for modeling spatial stochastic biochemical reactions in complex, three-d...
We have developed a method for modeling spatial stochastic biochemical reactions in complex, three-d...
One of the fundamental motivations underlying computational cell biology is to gain insight into the...
Computational simulation of cellular processes can provide us with important insights into the dynam...
Cell signaling dynamics mediate myriad processes in biology. It has become increasingly clear that i...
Computational simulation of cellular processes can provide us with important insights into the dynam...
AbstractRecent technological and theoretical advances are only now allowing the simulation of detail...
Stochasticity (that is, randomness) is an inherent property of many biological systems. For example,...
Motivation: Many biochemical networks involve reactions localized on the cell membrane. This can gi...
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...
Quantitative descriptions of reaction kinetics formulated at the stochastic mesoscopic level are fre...
Motivation: In biological systems formed by living cells, the small populations of some reactant spe...
Linda Petzold of University of California, Santa Barbara presented a lecture on April 19, 2011 from ...
AbstractRecent technological and theoretical advances are only now allowing the simulation of detail...
We have developed a method for modeling spatial stochastic biochemical reactions in complex, three-d...
We have developed a method for modeling spatial stochastic biochemical reactions in complex, three-d...
One of the fundamental motivations underlying computational cell biology is to gain insight into the...
Computational simulation of cellular processes can provide us with important insights into the dynam...
Cell signaling dynamics mediate myriad processes in biology. It has become increasingly clear that i...
Computational simulation of cellular processes can provide us with important insights into the dynam...
AbstractRecent technological and theoretical advances are only now allowing the simulation of detail...
Stochasticity (that is, randomness) is an inherent property of many biological systems. For example,...
Motivation: Many biochemical networks involve reactions localized on the cell membrane. This can gi...
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...
Quantitative descriptions of reaction kinetics formulated at the stochastic mesoscopic level are fre...
Motivation: In biological systems formed by living cells, the small populations of some reactant spe...
Linda Petzold of University of California, Santa Barbara presented a lecture on April 19, 2011 from ...
AbstractRecent technological and theoretical advances are only now allowing the simulation of detail...