Using fission yeast cell cycle as an example, we uncovered that the non-equilibrium network dynamics and global properties are determined by two essential features: the potential landscape and the flux landscape. These two landscapes can be quantified through the decomposition of the dynamics into the detailed balance preserving part and detailed balance breaking non-equilibrium part. While the funneled potential landscape is often crucial for the stability of the single attractor networks, we have uncovered that the funneled flux landscape is crucial for the emergence and maintenance of the stable limit cycle oscillation flow. This provides a new interpretation of the origin for the limit cycle oscillations: There are many cycles and loops...
We study the robustness and stability of the yeast cell regulatory network by using a general inhomo...
We study the robustness and stability of the yeast cell regulatory network by using a general inhomo...
We developed a potential flux landscape theory to investigate the dynamics and the global stability ...
Studying the cell cycle process is crucial for understanding cell growth, proliferation, development...
We uncovered the underlying energy landscape for a cellular network. We discovered that the energy l...
AbstractWe study the origin of robustness of yeast cell cycle cellular network through uncovering it...
The global stability of dynamical systems and networks is still challenging to study. We developed a...
<p>(A) When nutrient availability is poor, the system has a global stable state shown as G1, and res...
We established a theoretical framework for studying nonequilibrium networks with two distinct nature...
Metabolic networks have gained broad attention in recent years as a result of their important roles ...
We uncover the underlying potential energy landscape for a cellular network. We find that the potent...
In this dissertation, we study the control network that governs the cell division cycle of budding y...
We develop a theoretical framework for exploring global natures of non-equilibrium dynamical systems...
Attribution of biological robustness to the specific structural properties of a regulatory network i...
We established the potential and flux landscape theory for evolution. We found explicitly the conven...
We study the robustness and stability of the yeast cell regulatory network by using a general inhomo...
We study the robustness and stability of the yeast cell regulatory network by using a general inhomo...
We developed a potential flux landscape theory to investigate the dynamics and the global stability ...
Studying the cell cycle process is crucial for understanding cell growth, proliferation, development...
We uncovered the underlying energy landscape for a cellular network. We discovered that the energy l...
AbstractWe study the origin of robustness of yeast cell cycle cellular network through uncovering it...
The global stability of dynamical systems and networks is still challenging to study. We developed a...
<p>(A) When nutrient availability is poor, the system has a global stable state shown as G1, and res...
We established a theoretical framework for studying nonequilibrium networks with two distinct nature...
Metabolic networks have gained broad attention in recent years as a result of their important roles ...
We uncover the underlying potential energy landscape for a cellular network. We find that the potent...
In this dissertation, we study the control network that governs the cell division cycle of budding y...
We develop a theoretical framework for exploring global natures of non-equilibrium dynamical systems...
Attribution of biological robustness to the specific structural properties of a regulatory network i...
We established the potential and flux landscape theory for evolution. We found explicitly the conven...
We study the robustness and stability of the yeast cell regulatory network by using a general inhomo...
We study the robustness and stability of the yeast cell regulatory network by using a general inhomo...
We developed a potential flux landscape theory to investigate the dynamics and the global stability ...