Information Technology Reference
In-Depth Information
Deb, Marco Dorigo, David B. Fogel, Max H. Garzon, David E. Goldberg, Hitoshi
Iba, and Rick Riolo, editors, Genetic Programming 1998: Proceedings of the Third
Annual Conference , pages 679-683. Morgan Kaufmann, San Francisco, CA, 1998.
[4] A. Arkin and J. Ross. Computational functions in biochemical reaction networks.
Biophys. J. , 67:560-578, 1994.
[5] Yaakov Benenson, Tamar Paz-Elizur, Rivka Adar, Ehud Keinan, Zvi Livneh, and
Ehud Shapiro. Programmable and autonomous computing machine made of bio-
molecules. Nature , 414:430-434, 2001.
[6] C. H. Bennett. The thermodynamics of computation—a review. Intl. J. Theor.
Phys. , 21:905-940, 1982.
[7] Dennis Bray. Protein molecules as computational elements in living cells. Nature ,
376:307-312, 1995.
[8] Michael Conrad. On design principles for a molecular computer. Commun. ACM ,
28:464-480, 1985.
[9] Michael Conrad and E. A. Liberman. Molecular computing as a link between
biological and physical theory. J. Theor. Biol. , 98:239-252, 1982.
[10] M. B. Elowitz and S. Leibler. A synthetic oscillatory network of transcriptional
regulators. Nature , 403:335-338, 2000.
[11] Richard P. Feynman. There's plenty of room at the bottom. In D. Gilbert, editor,
Miniaturization , pages 282-296. Reinhold, New York, 1961.
[12] T. S. Gardner, C. R. Cantor, and J. J. Collins. Construction of a genetic toggle
switch in Escherichi coli. Nature , 403:339-342, 2000.
[13] Frank Guarnieri, Makiko Fliss, and Carter Bancroft. Making DNA add. Science ,
273:220-223, 1996.
[14] Allen Hjelmfelt, Edward D. Weinberger, and John Ross. Chemical implementation
of neural networks and Turing machines. Proc. Natl. Acad. Sci. USA , 88:10983-
10987, 1991.
[15] F. Jacob and J. Monod. Genetic regulatory mechanisms in the synthesis of proteins.
J. Mol. Biol. , 3:318-356, 1961.
[16] Jacques Monod. Chance and Necessity . Penguin, London, 1970.
[17] Mitsunori Ogihara and Animesh Ray. Simulating Boolean circuits on a DNA com-
puter. In Proceedings of the First Annual International Conference on Computa-
tional Molecular Biology (RECOMB97) , pages 226-231. ACM Press, New York,
1997.
[18] Michael A. Savageau. Design principles for elementary gene circuits: Elements,
methods and examples. Chaos , 11(1):142-159, 2001.
[19] John von Neumann. The general and logical theory of automata. In L. A. Jeffress,
editor, Cerebral Mechanisms in Behavior , pages 1-41. Wiley, New York, 1941.
[20] Liman Wang, Jeff G. Hall, Manchun Lu, Qinghua Liu, and Lloyd M. Smith. A
DNA computing readout operation based on structure-specific cleavage. Nature
Biotechnol. , 19:1053-1059, 2001.
[21] R. Weiss, G. Homsy, and T. F. Knight Jr. Toward in-vivo digital circuits. In L. F.
Landweber and E. Winfree, editors, DIMACS Workshop on Evolution as Compu-
tation , pages 275-297. Springer-Verlag, New York, 1999.
Search WWH ::




Custom Search