<p>State space of the 1024 possible network states (green circles) and their dynamical trajectories, all converging towards fixed point attractors. Each circle corresponds to one specific network state with each of the ten proteins being in one specific activation state (active/inactive). The largest attractor tree corresponds to all network states flowing to the G1 fixed point (blue node). Arrows between the network states indicate the direction of the dynamical flow from one network state to its subsequent state. The fission yeast cell-cycle sequence is shown with blue arrows.</p
<p>Nodes with states ON/OFF represent the presence of proteins. Arrows represent interactions betwee...
The state-space of a discrete dynamical network is connected into basins of attraction, mathematical...
<p>A, the network of mitotic cell cycle of budding yeast; B, the network of mitotic cell cycle of fi...
<p>Dynamic trajectories of the regulatory network with 256 initial states in state space. All states...
<p>Each column is associated with a node in the model, each row represents an attractor state (fixed...
Dynamic behaviors of protein-protein and protein-DNA interactions in living cells are investigated u...
<p>Shown are the state spaces of a single network of size <i>N</i> = 10 under four different environ...
We analyse paths through the regulatory networks that control gene-expression patterns in Yeast, in ...
We study the dynamics of gene activities in relatively small size biological networks (up to a few t...
Recent progresses in the protein regulatory network of budding yeast Saccharomyces cerevisiae have p...
A Boolean network model of the cell-cycle regulatory network of fission yeast (Schizosaccharomyces P...
<p>(A) A network of 9 linear threshold elements connected by excitatory (black) and inhibitory (red)...
The development process for biochemical network models follows the traditional pipeline: Biochemical...
<p>(A) State space of a network evolved in a population of 100 networks after 100 generations of sel...
Fixed-point attractors with global stability manifest themselves in a number of gene regulatory netw...
<p>Nodes with states ON/OFF represent the presence of proteins. Arrows represent interactions betwee...
The state-space of a discrete dynamical network is connected into basins of attraction, mathematical...
<p>A, the network of mitotic cell cycle of budding yeast; B, the network of mitotic cell cycle of fi...
<p>Dynamic trajectories of the regulatory network with 256 initial states in state space. All states...
<p>Each column is associated with a node in the model, each row represents an attractor state (fixed...
Dynamic behaviors of protein-protein and protein-DNA interactions in living cells are investigated u...
<p>Shown are the state spaces of a single network of size <i>N</i> = 10 under four different environ...
We analyse paths through the regulatory networks that control gene-expression patterns in Yeast, in ...
We study the dynamics of gene activities in relatively small size biological networks (up to a few t...
Recent progresses in the protein regulatory network of budding yeast Saccharomyces cerevisiae have p...
A Boolean network model of the cell-cycle regulatory network of fission yeast (Schizosaccharomyces P...
<p>(A) A network of 9 linear threshold elements connected by excitatory (black) and inhibitory (red)...
The development process for biochemical network models follows the traditional pipeline: Biochemical...
<p>(A) State space of a network evolved in a population of 100 networks after 100 generations of sel...
Fixed-point attractors with global stability manifest themselves in a number of gene regulatory netw...
<p>Nodes with states ON/OFF represent the presence of proteins. Arrows represent interactions betwee...
The state-space of a discrete dynamical network is connected into basins of attraction, mathematical...
<p>A, the network of mitotic cell cycle of budding yeast; B, the network of mitotic cell cycle of fi...