We established a theoretical framework for studying nonequilibrium networks with two distinct natures essential for characterizing the global probabilistic dynamics: the underlying potential landscape and the corresponding curl flux. We applied the idea to a biochemical oscillation network and found that the underlying potential landscape for the oscillation limit cycle has a distinct closed ring valley (Mexican hat-like) shape when the fluctuations are small. This global landscape structure leads to attractions of the system to the ring valley
The species in ecosystems are mutually interacting and self sustainable stable for a certain period....
Studying the cell cycle process is crucial for understanding cell growth, proliferation, development...
We established a potential and flux field landscape theory to quantify the global stability and dyna...
We develop a theoretical framework for exploring global natures of non-equilibrium dynamical systems...
Predator-prey system, as an essential element of ecological dynamics, has been recently studied expe...
The global stability of dynamical systems and networks is still challenging to study. We developed a...
Predator-prey system, as an essential element of ecological dynamics, has been recently studied expe...
In this review, we summarize our recent efforts in exploring the non-equilibrium potential and flux ...
Physical and biological systems are often involved with coupled processes of different time scales. ...
We developed a general framework to quantify three key ingredients for dynamics of nonequilibrium sy...
AbstractWe quantify the potential landscape to determine the global stability and coherence of biolo...
Metabolic networks have gained broad attention in recent years as a result of their important roles ...
The brainmap project aims tomap out the neuron connections of the human brain. Even with all of the ...
The species in ecosystems are mutually interacting and self sustainable stable for a certain period....
We developed a potential flux landscape theory to investigate the dynamics and the global stability ...
The species in ecosystems are mutually interacting and self sustainable stable for a certain period....
Studying the cell cycle process is crucial for understanding cell growth, proliferation, development...
We established a potential and flux field landscape theory to quantify the global stability and dyna...
We develop a theoretical framework for exploring global natures of non-equilibrium dynamical systems...
Predator-prey system, as an essential element of ecological dynamics, has been recently studied expe...
The global stability of dynamical systems and networks is still challenging to study. We developed a...
Predator-prey system, as an essential element of ecological dynamics, has been recently studied expe...
In this review, we summarize our recent efforts in exploring the non-equilibrium potential and flux ...
Physical and biological systems are often involved with coupled processes of different time scales. ...
We developed a general framework to quantify three key ingredients for dynamics of nonequilibrium sy...
AbstractWe quantify the potential landscape to determine the global stability and coherence of biolo...
Metabolic networks have gained broad attention in recent years as a result of their important roles ...
The brainmap project aims tomap out the neuron connections of the human brain. Even with all of the ...
The species in ecosystems are mutually interacting and self sustainable stable for a certain period....
We developed a potential flux landscape theory to investigate the dynamics and the global stability ...
The species in ecosystems are mutually interacting and self sustainable stable for a certain period....
Studying the cell cycle process is crucial for understanding cell growth, proliferation, development...
We established a potential and flux field landscape theory to quantify the global stability and dyna...