Synchronization with Molecular Signals on Spatial-Temporal Complex Networks
Author:
Affiliation:
1. University of Warwick, UK, Tongji University, Shanghai, China
2. University of Warwick, UK
3. Tongji University, Shanghai, China
Publisher
ACM
Reference23 articles.
1. Bio-Inspired Synchronization for Nanocommunication Networks
2. U. Abraham A. Granada P. Westermark M. Heine A. Kramer and H. Herzel. 2010. Coupling governs entrainment range of circadian clocks. Molecular Systems Biology 6 (2010). U. Abraham A. Granada P. Westermark M. Heine A. Kramer and H. Herzel. 2010. Coupling governs entrainment range of circadian clocks. Molecular Systems Biology 6 (2010).
3. J. Acebron L. Bonilla C. Perez Vicente F. Ritort and R. Spigler. 2005. The Kuramoto model: A simple paradigm for synchronization phenomena. Reviews of Modern Physics 77 (2005). J. Acebron L. Bonilla C. Perez Vicente F. Ritort and R. Spigler. 2005. The Kuramoto model: A simple paradigm for synchronization phenomena. Reviews of Modern Physics 77 (2005).
4. The internet of Bio-Nano things
5. L. Arola-Fernandez A. Guilera and A. Arenas. 2018. Synchronization invariance under network structural transformations. Physical Review E 97 (2018). L. Arola-Fernandez A. Guilera and A. Arenas. 2018. Synchronization invariance under network structural transformations. Physical Review E 97 (2018).
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