References

[Hak 78] Haken, H.: Synergetics --- An Introduction, Springer-Verlag GmbH & Co. KG, 1978.

[Hof 87] Hofmann, M. I.: A Cellular Automaton Model Based on Cortical Physiology, Complex Systems, 1, 187-202, 1987.

[Ing 84] Ingerson, T. E., and Buvel, R. L.: Structure in Asynchronous Cellular Automata, Physica D, 10, 59-68, 1984.

[Kan 89] Kaneko, K.: Pattern Dynamics in Spatiotemporal Chaos, Physica D, 34, 1-41, 1989.

[Kan 94] Kanada, Y., and Hirokawa, M.: Stochastic Problem Solving by Local Computation based on Self-organization Paradigm, 27th Hawaii International Conference on System Sciences, 1994.

[Kau 84] Kauffman, S. A.: Emergent Properties in Random Complex Automata, Physica D, Vol. 10, pp. 145-156, 1984.

[Lub 87] Lubachevsky, B. D.: Efficient Parallel Simulations of Asynchronous Cellular Automata, Complex Systems, 1, 1099-1123, 1987.

[Mat 79] Maturana, H. R., and Varela, F. J.: Autopoiesis and Cognition: The Realization of the Living, Reidel, 1979.

[Par 86] Park, J. K., Steiglitz, K., and Thurston, W.: Soliton-Like Behavior in Automata, Physica D, 19, 423-432, 1986.

[Pri 77] Nicolis, G., and Prigogine, I.: Self-organization in Nonequilibrium Systems --- From Dissipative Structures to Order through Fluctuations, John Wiley & Sons, Inc., 1977.

[Val 79] Varela, F. J.: Autopoiesis and Cognition: The Realization of the Living, Reidel, 1979.

[Vic 89] Vicsek, T.: Fractal Growth Phenomena, World Scientific, 1989.

[Wol 83] Wolfram, S.: Statistical Mechanics of Cellular Automata, Reviews of Modern Physics, 55, 601-, 1983.

[Wol 84] Wolfram, S.: Universality and Complexity in Cellular Automata, Physica D, 10, 1-35, 1984.

[Woo 90] Wootters, W. K., and Langton, G.: Is There A Sharp Phase Transition for Deterministic Cellular Automata, Physica D, Vol. 45, pp. 93-103, 1990.


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