Mathematical models have been widely used in the studies of biological signaling pathways. Among these studies, two systems biology approaches have been applied: top-down and bottom-up systems biology. The former approach focuses on X-omics researches involving the measurement of experimental data in a large scale, for example proteomics, metabolomics, or fluxomics and transcriptomics. In contrast, the bottom-up approach studies the interaction of the network components and employs mathematical models to gain some insights about the mechanisms and dynamics of biological systems. This chapter introduces how to use the bottom-up approach to establish mathematical models for cell signaling studies
Studies in living system in the past several decades have generated qualitative understanding of the...
Cellular signaling circuits handle an enormous range of computations. Beyond the housekeeping, repli...
Cellular signaling circuits handle an enormous range of computations. Beyond the housekeeping, repli...
Mathematical models have been widely used in the studies of biological signaling pathways. Among the...
Dynamic modeling and simulation of signal transduction pathways is an important topic in systems bio...
Dynamic modeling and simulation of signal transduction pathways is an important topic in systems bio...
The developments in the molecular biosciences have made possible a shift to combined molecular and s...
Cellular signaling is made up of complex networks of interacting molecules that are tightly intercon...
The use of methods for global and quantitative analysis of cells is providing new systems-level insi...
How ready is biology for systems biology? This review surveys some 250 models and supporting experim...
Recent advances in quantification methods of regulatory and signaling gene networks has lead to an i...
Dynamic modeling and simulation of signal transduction pathways is an important topic in systems bio...
The Iyengar laboratory is interested in understanding how signals are routed and processed through c...
Signal transduction systems coordinate complex cellular information to regulate biological events su...
Background: Cellular responses to extracellular perturbations require signaling pathways to capture ...
Studies in living system in the past several decades have generated qualitative understanding of the...
Cellular signaling circuits handle an enormous range of computations. Beyond the housekeeping, repli...
Cellular signaling circuits handle an enormous range of computations. Beyond the housekeeping, repli...
Mathematical models have been widely used in the studies of biological signaling pathways. Among the...
Dynamic modeling and simulation of signal transduction pathways is an important topic in systems bio...
Dynamic modeling and simulation of signal transduction pathways is an important topic in systems bio...
The developments in the molecular biosciences have made possible a shift to combined molecular and s...
Cellular signaling is made up of complex networks of interacting molecules that are tightly intercon...
The use of methods for global and quantitative analysis of cells is providing new systems-level insi...
How ready is biology for systems biology? This review surveys some 250 models and supporting experim...
Recent advances in quantification methods of regulatory and signaling gene networks has lead to an i...
Dynamic modeling and simulation of signal transduction pathways is an important topic in systems bio...
The Iyengar laboratory is interested in understanding how signals are routed and processed through c...
Signal transduction systems coordinate complex cellular information to regulate biological events su...
Background: Cellular responses to extracellular perturbations require signaling pathways to capture ...
Studies in living system in the past several decades have generated qualitative understanding of the...
Cellular signaling circuits handle an enormous range of computations. Beyond the housekeeping, repli...
Cellular signaling circuits handle an enormous range of computations. Beyond the housekeeping, repli...