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Titlebook: Natural Computing; 4th International Wo F. Peper,H. Umeo,T. Isokawa Conference proceedings 2010 Springer Japan KK 2010 Monte-Carlo Simulati

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Foraging Behaviors and Potential Computational Ability of Problem-Solving in an Amoebathered at the multiple food locations while body shape made of tubular network was totally changed. Then only a few tubes connected all of food locations through a network shape. By taking the network shape of body, the plasmodium could meet its own physiological requirements: as fast absorption of
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The Effect of Community on Distributed Bio-inspired Service Compositionle management increasingly important and difficult. At the same time, the ability for users to efficiently discover and compose these services will become a key factor for service providers to differentiate themselves in a competitive market. In previous work, we examined the effect adding biologica
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Efficient Computation in Brownian Cellular Automatahe cellular space, resembling Brownian motion. The Brownian-like behavior is driven by three kinds of local transition rules, two of which are locally reversible and rotation symmetric, thus mapping a rule’s left-hand side into a right-hand side is equivalent modulus rotations of multiples of 90 deg
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A Molecular Communication Systemell-scale entities to communicate over a short distance. It is a new communication paradigm and is different from the traditional communication that uses electromagnetic waves (i.e., electronic and optical signals) as an information carrier. This paper focuses on system design and experimental resul
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Properties of Threshold Coupled Chaotic Neuronal Mapsd temporally periodic states. A threshold is applied to all sites of a lattice and excess is transferred to other sites at varying degree of: relaxation time, dynamical updating, and connection topology. In each different realization, a transition from spatiotemporal chaos to ordered state is obtain
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