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Titlebook: Natural Computing; 2nd International Wo Y. Suzuki,M. Hagiya,A. Adamatzky Conference proceedings 2009 Springer-Verlag Tokyo 2009 Alignment.A

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978-4-431-88980-9Springer-Verlag Tokyo 2009
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Natural Computing978-4-431-88981-6Series ISSN 1867-2914 Series E-ISSN 1867-2922
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Toward Biologically Inspired Constructive Computationn our Organic programming language called Gaea. When we tried to design a system that allows rich interaction with the environment while taking advantage of being embedded in it, the interaction became a complex system. The view of the interaction of system with its environment led us to become aware of constructive methodology.
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Wholeness and Information Processing in Biological Networks: An Algebraic Study of Network Motifsf sheaf. We also formalize a feature of information processing by considering an internal structure of nodes in terms of their information processing ability. We show that two network motifs called bi-fan (BF) and feed-forward loop (FFL) can be obtained by purely algebraic considerations.
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Self-organized Spatio-temporal Oscillation Observed in a Chain of Non-oscillatory Cellsthat cellular signal processing and genetic feedback networks manifest themselves as self-excited oscillators. Thus the collective oscillation is obtained from synchronization of a number of autonomous oscillators. In this paper we propose a hypothesis for the occurrence of collective oscillation on a group of non-oscillatory cell.
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On Detection and Isolation of Defective Cells in Self-Timed Cellular Automatactive cells can be detected and isolated while computation takes place, i.e., in an on-line manner. We show how to cope with defects in the cellular space in a self-contained way, while a computation task is conducted on it.
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