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Pietro Liò, Eiko Yoneki, Jon Crowcroft and Dinesh C. Verma
Front matter
1-8
Bio-Inspired Computing and Communication
9-18
A Complex Network Approach to the Determination of Functional Groups in the Neural System of C. Elegans
19-32
Modelling Gene Regulatory Networks
33-44
The Role of Simplifying Models in Neuroscience: Modelling Structure and Function
45-57
An Artificial Chemistry for Networking
58-66
Biomimicry: Further Insights from Ant Colonies?
67-78
Network-Related Challenges and Insights from Neuroscience
79-90
Networks in Epidemiology
91-104
Epidemiology and Wireless Communication: Tight Analogy or Loose Metaphor?
105-115
Epidemic Spreading of Computer Worms in Fixed Wireless Networks
116-132
Wireless Epidemic Spread in Dynamic Human Networks
133-144
Stochastic Spreading Processes on a Network Model Based on Regular Graphs
145-154
Weighted and Directed Network on Traveling Patterns
155-164
Communication Networks in Insect Societies
165-173
The Topological Fortress of Termites
174-183
Evolutionary and Temporal Dynamics of Transcriptional Regulatory Networks
184-191
Phase Patterns of Coupled Oscillators with Application to Wireless Communication
192-203
Self-organizing Desynchronization and TDMA on Wireless Sensor Networks
204-216
Bio-Inspired Multi-agent Collaboration for Urban Monitoring Applications
217-228
Bio-Inspired Approaches for Autonomic Pervasive Computing Systems
229-240
Biologically Inspired Self Selective Routing with Preferred Path Selection
241-254
Biologically Inspired Approaches to Networks: The Bio-Networking Architecture and the Molecular Communication
255-267
User-Centric Mobility Models for Opportunistic Networking
268-279
Wavelet-Domain Statistics of Packet Switching Networks Near Traffic Congestion
280-294
A Circulatory System Approach for Wireless Sensor Networks
295-306
Epcast: Controlled Dissemination in Human-Based Wireless Networks Using Epidemic Spreading Models
307-318
Maintaining Spatial-Temporal Knowledge through Human Interaction
319-331
Beta Random Projection
332-339
Biologically Inspired Classifier
340-351
Human Heuristics for Autonomous Agents
352-363
Designing Biological Computers: Systemic Computation and Sensor Networks
364-375
A Rule System for Network-Centric Operation in Massively Distributed Systems
376-386
Field-Based Coordination for Pervasive Computing Applications
387-398
Coalition Games and Resource Allocation in Ad-Hoc Networks
399-410
Bio-Inspired Topology Maintenance Protocols for Secure Wireless Sensor Networks
411-426
Dynamic Topologies for Robust Scale-Free Networks
Back matter
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