Quantifying the Dynamics of Coupled Networks of Switches and Oscillators
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Summary
A new modeling framework that describes the dynamics of networks composed of both oscillators and switches and provides the ability to incorporate mechanisms that underlie the synchronized stimulus response ubiquitous in biochemical systems is introduced.
- Type
- article
- Published
- 2011-11-30
- Cited by
- 5
- References
- 62
- Access
- Open access
- OpenAlex
- https://openalex.org/W1559305849
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:13535923
Keywords
Synchronization (alternating current), Synchronization networks, Network dynamics, Computer science, Systems biology
References
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- Synchronization transitions on small-world neuronal networks: Effects of information transmission delay and rewiring probability
- The hallmarks of cancer
- Hybrid Modeling of Cell Signaling and Transcriptional Reprogramming and Its Application in C. elegans Development
- Synchronization in large directed networks of coupled phase oscillators.
- Dynamic Properties of Network Motifs Contribute to Biological Network Organization
- Synchronization in Relaxation Oscillator Networks with Conduction Delays
- Coupled feedback loops form dynamic motifs of cellular networks.
- System size resonance in coupled noisy systems and in the Ising model.
Cited by
- Noise and delays in adaptive interacting oscillatory systems
- Dynamics in hybrid complex systems of switches and oscillators.
- Exit from sliding in piecewise-smooth flows: Deterministic vs. determinacy-breaking.
- Simulating the phase behavior of the Kuramoto tree
- Single and Multi-objective in Silico Evolution of Tunable Genetic Oscillators
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