Biomimetic Self-Organization and Self-Healing
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[1] Torben Anker Lenau,et al. Colours and Metallic Sheen in Beetle Shells : A Biomimetic Search for Material Structuring Principles Causing Light Interference , 2008 .
[2] John Woods,et al. Beyond swarm intelligence: the UltraSwarm , 2005, Proceedings 2005 IEEE Swarm Intelligence Symposium, 2005. SIS 2005..
[3] Thomas Speck,et al. Structural and mechanical properties of flexible polyurethane foams cured under pressure , 2012 .
[4] Nathan J. Mlot,et al. Fire ants self-assemble into waterproof rafts to survive floods , 2011, Proceedings of the National Academy of Sciences.
[5] W. G. Proud,et al. The conch shell as a model for tougher composites , 2011 .
[6] Niels Holten-Andersen,et al. Stiff coatings on compliant biofibers: the cuticle of Mytilus californianus byssal threads. , 2009, Biochemistry.
[7] Simon Garnier,et al. From Ants to Robots and Back: How Robotics Can Contribute to the Study of Collective Animal Behavior , 2011, Bio-Inspired Self-Organizing Robotic Systems.
[8] Marco Dorigo,et al. Cooperative hole avoidance in a swarm-bot , 2006, Robotics Auton. Syst..
[9] A. P. Jackson,et al. The mechanical design of nacre , 1988, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[10] Thomas Schlegel,et al. Stop Signals Provide Cross Inhibition in Collective Decision-making , 2022 .
[11] T. C. Schneirla,et al. The Bivouac or Temporary Nest as an Adaptive Factor in Certain Terrestrial Species of Army Ants , 1954 .
[12] Marco Dorigo,et al. Teamwork in Self-Organized Robot Colonies , 2009, IEEE Transactions on Evolutionary Computation.
[13] Kevin Kendall,et al. The relation between porosity, microstructure and strength, and the approach to advanced cement-based materials , 1983, Philosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences.
[14] Guy Theraulaz,et al. The biological principles of swarm intelligence , 2007, Swarm Intelligence.
[15] Steven V. Viscido,et al. Self-Organized Fish Schools: An Examination of Emergent Properties , 2002, The Biological Bulletin.
[16] Eduardo Saiz,et al. Freezing as a Path to Build Complex Composites , 2006, Science.
[17] P. Bateman,et al. Leave it all behind: a taxonomic perspective of autotomy in invertebrates , 2007, Biological reviews of the Cambridge Philosophical Society.
[18] Rolf H. Luchsinger,et al. Pressure induced stability: from pneumatic structures to Tensairity® , 2004 .
[19] Flavio Roces,et al. Wind-induced ventilation of the giant nests of the leaf-cutting ant Atta vollenweideri , 2001, Naturwissenschaften.
[20] R. Ritchie,et al. Tough, Bio-Inspired Hybrid Materials , 2008, Science.
[21] Owen Holland,et al. UltraSwarm: A Further Step Towards a Flock of Miniature Helicopters , 2006, Swarm Robotics.
[22] D. Sumpter. The principles of collective animal behaviour , 2006, Philosophical Transactions of the Royal Society B: Biological Sciences.
[23] Peter Fratzl,et al. Iron-Clad Fibers: A Metal-Based Biological Strategy for Hard Flexible Coatings , 2010, Science.
[24] G. Parisi,et al. Scale-free correlations in starling flocks , 2009, Proceedings of the National Academy of Sciences.
[25] Steve Weiner,et al. Mollusk shell formation: a source of new concepts for understanding biomineralization processes. , 2006, Chemistry.
[26] A. P. Jackson,et al. Comparison of nacre with other ceramic composites , 1990 .
[27] Jeffrey S. Moore,et al. Self-Healing Polymers and Composites , 2010 .
[28] B. Webb,et al. Can robots make good models of biological behaviour? , 2001, Behavioral and Brain Sciences.
[29] A. Tero,et al. A mathematical model for adaptive transport network in path finding by true slime mold. , 2007, Journal of theoretical biology.
[30] Florian Segor,et al. Towards Autonomous Micro UAV Swarms , 2011, J. Intell. Robotic Syst..
[31] J H Waite,et al. Mussel-designed Protective Coatings for Compliant Substrates , 2008, Journal of dental research.
[32] W. K. Purves. Life: The Science of Biology , 1985 .
[33] NIGEL R FRANKS,et al. Self-organizing nest construction in ants: individual worker behaviour and the nest's dynamics , 1997, Animal Behaviour.
[34] Henrik Birkedal,et al. pH-induced metal-ligand cross-links inspired by mussel yield self-healing polymer networks with near-covalent elastic moduli , 2011, Proceedings of the National Academy of Sciences.
[35] João F Mano,et al. Biomimetic design of materials and biomaterials inspired by the structure of nacre , 2009, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[36] C Tate Holbrook,et al. Social insects inspire human design , 2010, Biology Letters.
[37] Craig W. Reynolds. Flocks, herds, and schools: a distributed behavioral model , 1987, SIGGRAPH.
[38] Scott R White,et al. Self‐Healing of Internal Damage in Synthetic Vascular Materials , 2010, Advanced materials.
[39] T. Nakagaki,et al. Intelligent Behaviors of Amoeboid Movement Based on Complex Dynamics of Soft Matter , 2007 .
[40] Claus Thorp Hansen,et al. Developing engineering design core competences through analysis of industrial products , 2011 .
[41] Dirk Helbing,et al. Optimal traffic organization in ants under crowded conditions , 2004, Nature.
[42] Toshiyuki Nakagaki,et al. Flow-network adaptation in Physarum amoebae , 2008, Theory in Biosciences.
[43] W. Bialek,et al. Statistical mechanics for natural flocks of birds , 2011, Proceedings of the National Academy of Sciences.
[44] J. Lewis,et al. Self-healing materials with microvascular networks. , 2007, Nature materials.
[45] Stefano Nolfi,et al. Evolving Mobile Robots Able to Display Collective Behaviors , 2003, Artificial Life.
[46] Mark Worall,et al. Homeostasis in nature: Nest building termites and intelligent buildings , 2011 .
[47] Samantha L. Gilbert,et al. The Role of the Vibration Signal during Nest-Site Selection by Honey Bee Swarms , 2011 .
[48] G. Parisi,et al. Empirical investigation of starling flocks: a benchmark study in collective animal behaviour , 2008, Animal Behaviour.
[49] I D Couzin,et al. Self-organized lane formation and optimized traffic flow in army ants , 2003, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[50] J. Scott Turner,et al. Beyond biomimicry: What termites can tell us about realizing the living building. , 2008 .
[51] Stefano Nolfi,et al. Evolutionary robotics , 1998, Lecture Notes in Computer Science.
[52] Thomas Speck,et al. Self-repairing membranes for inflatable structures inspired by a rapid wound sealing process of climbing plants , 2011 .
[53] Barbara Webb,et al. Biorobotics: Methods and Applications , 2002 .
[54] A. Tero,et al. Rules for Biologically Inspired Adaptive Network Design , 2010, Science.