Текст книги "Тени разума. В поисках науки о сознании"
Автор книги: Роджер Пенроуз
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[1] Aharonov, Y., Albert, D. Z. (1981). Can we make sense out of the measurement process in relativistic quantum mechanics? Phys. Rev., D24, 359-370.
[2] Aharonov, Y., Vaidman, L. (1990). Properties of a quantum system during the time interval between two measurements. Phys. Rev., A41, 11.
[3] Aharonov, Y., Anandan, J., Vaidman, L. (1993). Meaning of the wave function. Phys. Rev., A47, 4616-4626.
[4] Aharonov, Y., Bergmann, P. G., Liebowitz, J. L. (1964). Time symmetry in the quantum process of measurement. В сб. Quantum theory and measurement (ed. J.A.Wheeler, W. H. Zurek). Princeton University Press, 1983; первоначально в Phys. Rev., B134, 1410-1416.
[5] Aharonov, Y, Albert, D.Z., Vaidman, L. (1986). Measurement process in relativistic quantum theory. Phys. Rev., D34, 1805-1813.
[6] Albert, D. Z. (1983). On quantum-mechanical automata. Phys. Lett., 98A (5, 6), 249-252.
[7] Albrecht-Buehler, G. (1981). Does the geometric design of centrioles imply their function? Cell Motility, 1, 237-245.
[8] Albrecht-Buehler, G. (1985). Is the cytoplasm intelligent too? Cell and Muscle Motility, 6, 1-21.
[9] Albrecht-Buehler, G. (1991). Surface extensions of 3T3 cells towards distant infrared light sources. J. Cell Biol., 114, 493-502.
[10] Anthony, M., Biggs, N. (1992). Computational learning theory, an introduction. Cambridge University Press.
[11] Applewhite, P. В. (1979). Learning in protozoa. В сб. Biochemistry and physiology of protozoa. Vol. 1 (ed. M. Levandowsky, S.H. Hunter), 341-355. Academic Press, New York.
[12] Arhem, P., Lindahl, B.I.B. (ed.) (1993). Neuroscience and the problem of consciousness: theoretical and empirical approaches. В сб. Theoretical medicine, 14, Number 2. Kluwer Academic Publishers.
[13] Aspect, A., Grangier, P. (1986). Experiments on Einstein-Podolsky-Rosen-type correlations with pairs of visible photons. В сб. Quantum concepts in space and time (ed. R. Penrose, C. J. Isham). Oxford University Press.
[14] Aspect, A., Grangier, P., Roger, G. (1982). Experimental realization of Einstein-Podolsky-Rosen-Bohm Gedanken-experiment: a new violation of Bell's inequalities. Phys. Rev. Lett., 48, 91-94.
[15] Baars, B.J. (1988). A cognitive theory of consciousness. Cambridge University Press.
[16] Bailey, T.N., Baston, R.J. (ed.) (1990). Twistors in mathematics and physics. London Mathematical Society Lecture Notes Series, 156. Cambridge University Press.
[17] Baylor, D. A., Lamb, T.D., Yau, K.-W. (1979). Responses of retinal rods to single photons. J. Physiol., 288, 613-634.
[18] Beck, F., Eccles, J. С (1992). Quantum aspects of consciousness and the role of consciousness. Proc. Nat. Acad. Sci., 89, 11357-11361.
[19] Becks, K.-H., Hemker, A. (1992). An artificial intelligence approach to data analysis. В сб. Proceedings of 1991 CERN School of Computing (ed. C. Verkerk). CERN, Switzerland.
[20] Bell, J. S. (1964). On the Einstein Podolsky Rosen paradox. Physics, 1, 195-200.
[21] Bell, J. S. (1966). On the problem of hidden variables in quantum theory. Revs. Mod. Phys., 38, 447-452.
[22] Bell, J. S. (1987). Speakable and unspeakable in quantum mechanics. Cambridge University Press.
[23] Bell, J. S. (1990). Against measurement. Physics World, 3, 33-40.
[24] Benacerraf, P. (1967). God, the Devil and Godel. The Monist, 51, 9-32.
[25] Benioff, P. (1982). Quantum mechanical Hamiltonian models of Turing Machines. J. Stat. Phys., 29, 515-546.
[26] Bennett, C.H., Brassard, G., Breidbart, S., Wiesner, S. (1983). Quantum cryptography, or unforgettable subway tokens. В сб. Advances in cryptography. Plenum, New York.
[27] Bernard, C. (1875). Lecons sur les anesthesiques et sur I'asphyxie. J. B. Bailliere, Paris.
[28] Blakemore, C., Greenfield, S. (ed.) (1987). Mind-waves: thoughts on intelligence, identity and consciousness. Blackwell, Oxford.
[29] Blum, L., Shub, M., Smale, S. (1989). On a theory of computation and complexity over the real numbers: NP completeness, recursive functions and universal machines. Bull. Amer. Math. Soc, 21, 1-46.
[30] Bock, G. R., Marsh, J. (1993). Experimental and theoretical studies of consciousness. Wiley.
[31] Boden, M. (1977). Artificial intelligence and natural man. The Harvester Press, Hassocks.
[32] Boden, M. A. (1990). The creative mind: myths and mechanisms. Wiedenfeld and Nicolson, London.
[33] Bohm, D. (1952). A suggested interpretation of the quantum theory in terms of "hidden'Variabies, I and II. В сб. Quantum theory and measurement (ed. J.A.Wheeler, W.H.Zurek). Princeton University Press 1983. Первоначально в Phys. Rev., 85. 166-193.
[34] Bohm, D., Hiley, B. (1994). The undivided universe. Routledge, London.
[35] Boole, G. (1854). An investigation of the laws of thought. 1958, Dover, New York.
[36] Boolos, G. (1990). On seeing the truth of the Godel sentence. Behavioural and Brain Sciences, 13 (4), 655.
[37] Bowie, G.L. (1982). Lucas' number is finally up. J. of Philosophical Logic, 11, 279-285.
[38] Brady, M. (1993). Computational vision. В сб. The simulation of human intelligence (ed. D. Broadbent). Blackwell, Oxford.
[39] Braginsky, V. B. (1977). The detection of gravitational waves and quantum non-disturbative measurements. В сб. Topics in theoretical and experimental gravitation physics (ed. V. de Sabbata, J. Weber), 105. Plenum, London.
[40] Broadbent, D. (1993). Comparison with human experiments. В сб. The simulation of human intelligence (ed. D. Broadbent). Blackwell, Oxford.
[41] Brown, H. R. (1993). Bell's other theorem and its connection with nonlocality. Part I. В сб. Bell's Theorem and the foundations of physics (ed. A. VanderMerwe, F. Selleri). World Scientific, Singapore.
[42] Butter-field, J. (1990). Lucas revived? An undefended flank. Behavioural and Brain Sciences, 13 (4), 658.
[43] Castagnoli, G., Rasetti, M., Vincenti, A. (1992). Steady, simultaneous quantum computation: a paradigm for the investigation of nondeterministic and non-recursive computation. Int. J. Mod. Phys. C, 3, 661-689.
[44] Caudill, M. (1992). In our own image. Building an artificial person. Oxford University Press.
[45] Chaitin, G. J– (1975). Randomness and mathematical proof. Scientific American (May 1975), 47.
[46] Chalmers, D.J. (1990). Computing the thinkable. Behavioural and Brain Sciences, 13(4), 658.
[47] Chandrasekhar, S. (1987). Truth and beauty. Aesthetics and motivations in science. The University of Chicago Press.
[48] Chang, C.-L., Lee, R.C.-T. (1987). Symbolic logic and mechanical theorem proving, 2nd edn (1st edn 1973). Academic Press, New York.
[49] Chou, S.-C. (1988). Mechanical geometry theorem proving. Ridel.
[50] Christian, J.J. (1994). On definite events in a generally covariant quantum world. Unpublished preprint.
[51] Church, A. (1936). An unsolvable problem of elementary number theory. Am. Jour, of Math., 58, 345-363.
[52] Church, A. (1941). The calculi of lambda-conversion. Annals of Mathematics Studies, No. 6. Princeton University Press.
[53] Churchland, P.M. (1984). Matter and consciousness. Bradford Books, MIT Press, Cambridge, Massachusetts.
[54] Clauser, J.F., Home, M.A. (1974). Experimental consequences of objective local theories. Phys. Rev., D10, 526-535.
[55] Clauser, J.F., Home, M.A., Shimony, A. (1978). Bell's theorem: experimental tests and implications. Rpts. on Prog, in Phys., 41, 1881-1927.
[56] Cohen, P. C. (1966). Set theory and the continuum hypothesis. Benjamin, Menlo Park, CA.
[57] Conrad, M. (1990). Molecular computing. В сб. Advances in computers (ed. M. C.Yovits), Vol. 31. Academic Press, London.
[58] Conrad, M. (1992). Molecular computing: the lock-key paradigm. Computer (November 1992), 11-20.
[59] Conrad, M. (1993). The fluctuon model of Force, Life, and computation: a constructive analysis. Appl. Math, and Сотр., 56, 203-259.
[60] Cooke, 1988.
[61] Costa de Beauregard, O. (1989). В сб. Bell's theorem, quantum theory, and conceptions of the universe (ed. M. Kafatos). Kluwer, Dordrecht.
[62] Craik, К. (1943). The nature of explanation. Cambridge University Press.
[63] Crick, F. (1994). The astonishing hypothesis. The scientific search for the soul. Charles Scribner's Sons, New York, and Maxwell Macmillan International.
[64] Crick, E, Koch, C. (1990). Towards a neurobiological theory of consciousness. Seminars in the Neurosciences, 2, 263-275.
[65] Crick, F., Koch, C. (1992). The problem of consciousness. Scientific American, 267, 110.
[66] Curl, R.F., Smalley, R.E. (1991). Fullerenes. Scientific American, 265, No. 4, 32-41.
[67] Cutland N.J. (1980). Computability. An introduction to recursive function theory. Cambridge University Press.
[68] Davenport, H. (1952). The higher arithmetic. Hutchinson's University Library.
[69] Davies, P. С W. (1974). The physics of time asymmetry. Surrey University Press, Belfast.
[70] Davies, P. C. W. (1984). Quantum mechanics. Routledge, London.
[71] Davis, M. (ed.) (1965). The undecidable – basic papers on undecidable propositions, unsolvable problems and computable functions. Raven Press, Hewlett, New York.
[72] Davis, M. (1978). What is a computation? В сб. Mathematics today; twelve informal essays (ed. L. A. Steen). Springer-Verlag, New York.
[73] Davis M. (1990). Is mathematical insight algorithmic? Behavioural and Brain Sciences, 13 (4), 659.
[74] Davis, M. (1993). How subtle is Godel's theorem? Behavioural and Brain Sciences, 16, 611-612.
[75] Davis, M., Hersch, R. (1975). Hilbert's tenth problem. Scientific American (Nov. 1973), 84.
[76] Davis, P. J., Hersch, R. (1982). The mathematical experience. Harvester Press.
[77] de Broglie, L. (1956). Tentative a"interpretation causale et nonlineaire de la mecanique ondulatoire. Gauthier-Villars, Paris.
[78] Deeke, L., Grotzinger, В., Kornhuber, H. H. (1976). Voluntary finger movements in man: cerebral potentials and theory. iol. Cybernetics, 23, 99.
[79] del Giudice, E., Doglia, S., Milani, M. (1983). Self-focusing and ponderomotive forces of coherent electric waves – a mechanism for cytoskeleton formation and dynamics. В сб. Coherent excitations in biological systems (ed. H. Frohlich, F. Kremer). Springer-Verlag, Berlin.
[80] Dennett, D. (1990). Betting your life on an algorithm. Behavioural and Brain Sciences, 13 (4), 660.
[81] Dennett, D. C. (1991). Consciousness explained. Little, Brown and Company.
[82] d'Espagnat, B. (1989). Conceptual foundations of quantum mechanics, 2nd edn. Addison-Wesley, Reading, Massachusetts.
[83] Deutsch, D. (1985). Quantum theory, the Church—Turing principle and the universal quantum computer. Proc. Roy. Soc. (Lond.), A400, 97-117.
[84] Deutsch, D. (1989). Quantum computational networks. Proc. Roy. Soc. (Lond.), A425, 73-90.
[85] Deutsch, D. (1991). Quantum mechanics near closed timelike lines. Phys. Rev., D44, 3197-3217.
[86] Deutsch, D. (1992). Quantum computation. Phys. World, 5, 57-61.
[87] Deutsch, D., Ekert, A. (1993). Quantum communication moves into the unknown. Phys. World, 6,22-23.
[88] Deutsch, D., Jozsa, R. (1992). Rapid solution of problems by quantum computation. Proc. R. Soc. Lond., A439, 553-558.
[89] Devlin, K. (1988). Mathematics: the New Golden Age. Penguin Books, London.
[90] DeWitt, В. S., Graham, R. D. (ed.) (1973). The many-worlds interpretation of quantum mechanics. Princeton University Press.
[91] Dicke, R.H. (1981). Interaction-free quantum measurements: a paradox? Am. J. Phys., 49, 925-930.
[92] Diosi, L. (1989). Models for universal reduction of macroscopic quantum fluctuations. Phys. Rev., A40, 1165-1174.
[93] Diosi, L. (1992). Quantum measurement and gravity for each other. В сб. Quantum chaos, quantum measurement; NATO AS1 Series С Math. Phys. Sci 357 (ed. P. Cvitanovic, I. C. Percival, A. Wirzba). Kluwer, Dordrecht.
[94] Dirac, P.A.M. (1947). The principles of quantum mechanics, 3rd edn. Oxford University Press.
[95] Dodd, A. (1991). Godel, Penrose, and the possibility of AI. Artificial Intelligence Review, 5.
[96] Donaldson, S.K. (1983). An application of gauge theory to four dimensional topology. J. Diff. Geom., 18, 279-315.
[97] Doyle, J. (1990). Perceptive questions about computation and cognition. Behavioural and Brain Sciences, 13 (4), 661.
[98] Dreyfus, H. L. (J 972). What computers can't do. Harper and Row, New York.
[99] Dummett, M. (1973). Frege: philosophy of language. Duckworth, London.
[100] Dustin, P. (1984). Microtubules, 2nd revised edn. Springer-Verlag, Berlin.
[101] Dryl, S. (1974). Behaviour and motor responses in Paramecium. В сб. Paramecium – a current survey (ed. W. J. Van Wagtendonk), 165-218. Elsevier, Amsterdam.
[102] Eccles, J. С (1973). The understanding of the brain. McGraw-Hill, New York.
[103] Eccles, J. C. (1989). Evolution of the brain: creation of the self. Routledge, London.
[104] Eccles, J. C. (1992). Evolution of consciousness. Proc. Natl. Acad. Sci., 89, 7320-7324.
[105] Eccles, J. C. (1994). How the self controls its brain. Springer-Verlag, Berlin.
[106] Eckert, R., Randall, D., Augustine, G. (1988). Animal physiology. Mechanisms and adaptations, Chapter 11. Freeman, New York.
[107] Eckhorn, R., Bauer, R., Jordan, W., Brosch, M., Kruse, W., Munk, M., Reitboeck, H.J. (1988). Coherent oscillations: a mechanism of feature linking in the visual cortex? Biol. Cybern., 60, 121-130.
[108] Edelman, G.M. (1976). Surface modulation and cell recognition on cell growth. Science, 192, 218-226.
[109] Edelman, G.M. (1987). Neural Darwinism, the theory of neuronal group selection. Basic Books, New York.
[110] Edelman, G.M. (1988). Topobiology, an introduction to molecular embryology. Basic Books, New York.
[111] Edelman, G.M. (1989). The remembered present. A biological theory of consciousness. Basic Books, New York.
[112] Edelman, G.M. (1992). Bright air, brilliant fire: on the matter of the mind. Allen Lane, The Penguin Press, London.
[113] Einstein, A., Podolsky, P., Rosen, N. (1935). Can quantum-mechanical description of physical reality be considered complete? В сб. Quantum theory and measurement (ed. J. A. Wheeler, W. H. Zurek). Princeton University Press, 1983. Первоначально в Phys. Rev., 47, 777-780.
[114] Elitzur, A. C, Vaidman, L. (1993). Quantum-mechanical interaction-free measurements. Found, of Phys., 23, 987-997.
115] Elkies, Noam G. (1988). On A4 + B4 + C4 = D4. Maths, of Computation, 51, (No. 184), 825-835.
[116] Everett, H. (1957). «Relative State»formulation of quantum mechanics. В сб. Quantum theory and measurement (ed. J. A. Wheeler, W H. Zurek). Princeton University Press, 1983; первоначально в Rev. of Modern Physics, 29, 454-462.
[117] Feferman, S. (1988). Turing in the Land of O(z). В сб. The universal Turing machine: a half-century survey (ed. R. Herken). Kammererand Unverzagt, Hamburg.
[118] Feynman, R. P. (1948). Space-time approach to non-relativistic quantum mechanics. Revs. Mod. Phys., 20, 367-387.
[119] Feynman, R. P. (1982). Simulating physics with computers. Int. J. Theor. Phys., 21 (6/7), 467-488.
[120] Feynman, R.P. (1985). Quantum mechanical computers. Optics News, Feb., 11-20.
[121] Feynman, R.P. (1986). Quantum mechanical computers. Foundations of Physics, 16 (6), 507-531.
[122] Fodor, J. A. (1983). The modularity of mind. MIT Press, Cambridge, Massachusetts.
[123] Franks, N.P., Lieb, W.R. (1982). Molecular mechanics of general anaesthesia. Nature, 300, 487-493.
[124] Freedman, D. H. (1994). Brainmakers. Simon and Schuster, New York.
[125] Freedman, S.J., Clauser, J. F. (1972). Experimental test of local hidden-variable theories. В сб. Quantum theory and measurement (ed. J.A.Wheeler, W.H.Zurek). Princeton University Press, 1983; первоначально в Phys. Rev. Lett., 28, 938-941.6
[126] Frege, G. (1893). Grundgesetze der Arithmetik, begrif-fsschriftlich abelgeleitet, Vol. 1. H. Pohle, Jena.
[127] Frege, G. (1964). The basic laws of arithmetic, translated and edited with an introduction by Montgomery Firth. University of California Press, Berkeley.
[128] French, J. W. (1940). Trial and error learning in paramecium. J. Exp. Psychol., 26, 609-613.
[129] Frohlich, H. (1968). Long-range coherence and energy storage in biological systems. Int. Jour, of Quantum. Chem., 11, 641-649.
[130] Frohlich, H. (1970). Long range coherence and the actions of enzymes. Nature, 228, 1093.
[131] Frohlich, H. (1975). The extraordinary dielectric properties of biological materials and the action of enzymes, Proc. Natl. Acad. ScL, 72 (11), 4211-4215.
[132] Frohlich, H. (1984). General theory of coherent excitations on biological systems. В сб. Nonlinear electrodynamics in biological systems (ed. W. R. Adey, A. F. Lawrence). Plenum Press, New York.
[133] Frohlich, H. (1986). Coherent excitations in active biological systems. В сб. Modern bioelectrochemistry (ed. F. Gutmann, H. Keyzer). Plenum Press, New York.
[134] Fukui, K., Asai, H. (1976). Spiral motion of Paramecium caudatum in small capillary glass tube. /. Protozoal., 23, 559-563.
[135] Gandy, R. (1988). The confluence of ideas in 1936. В сб. The universal Turing machine: a half-century survey (ed. R. Herken). Kammererand Unverzagt, Hamburg.
[136] Gardner, M. (1965). Mathematical magic show. Alfred Knopf, New York; Random House, Toronto.
[137] Gardner, M. (1970). Mathematical games: the fantastic combinations of John Conway's new solitaire game «Life». Scientific American, 223, 120-123.
[138] Gardner, M. (1989). Penrose tiles to trapdoor ciphers. Freeman, New York.
[139] Gelber, B. (1958). Retention in paramecium aurelia. J. Сотр. Physiol. Psych., 51, 110-115.
[140] Gelernter, D. (1994). The muse in the machine. The Free Press, Macmillan Inc., New York; Collier Macmillan, London.
[141] Gell-Mann, M., Hartle, J.B. (1993). Classical equations for quantum systems. Phys. Rev., D47, 3345-3382.
[142] Gernoth, K.A., Clark, J.W., Prater, J.S., Bohr, H. (1993). Neural network models of nuclear systematics. Phys. Lett., B300, 1-7.
[143] Geroch, R. (1984). The Everett interpretation. Nous, 4 (специальный выпуск, посвященный основным принципам квантовой механики), 617-633.
[144] Geroch, R., Hartle, J. В. (1986). Computability and physical theories. Found. Phys., 16, 533.
[145] Ghirardi, G.C., Rimini, A., Weber, T. (1980). A general argument against superluminal transmission through the quantum mechanical measurement process. Lett. Nuovo Cirri., 21, 293-298.
[146] Ghirardi, G.C., Rimini, A., Weber, T. (1986). Unified dynamics for microscopic and macroscopic systems. Phys. Rev., D34, 470.
[147] Ghirardi, G. C., Grassi, R., Rimini, A. (1990). Continuous-spontaneous-reduction model involving gravity. Phys. Rev., A42, 1057-1064.
[148] Ghirardi, G.C., Grassi, R., Pearle, P. (1990). Relativistic dynamical reduction models: general framework and examples. Foundations of Physics, 20, 1271-1316.
[149] Ghirardi, G.C., Grassi, R., Pearle, P. (1992). Comment on «Explicit collapse and superluminal signals». Phys. Lett., A166, 435-438.
[150] Ghirardi, G.C., Grassi, R., Pearle, P. (1993). Negotiating the tricky border between quantum and classical. Physics Today, 46, 13.
[151] Gisin, N.(1989). Stochastic quantum dynamics and relativity. Helv. Phys. Acta, 62, 363-371.
[152] Gisin, N., Percival, I. C. (1993). Stochastic wave equations versus parallel world components. Phys. Lett., A175, 144-145.
[153] Gleick, J. (1987). Chaos. Making a new science. Penguin Books.
[154] Glymour, C, Kelly, K.. (1990). Why you'll never know whether Roger Penrose is a computer. Behavioural and Brain Sciences, 13 (4), 666.
[155] Godel, К. (1931). Uber formal unentscheidbare Satze per Principia Mathematica und verwandter Systeme 1. Monatshefte fur Mathematik und Physik, 38, 173-198.
[156] Godel, K– (1940). The consistency of the axiom of choice and of the generalized continuum-hypothesis with the axioms of set theory. Princeton University Press, Oxford University Press.
[157] Godel, K. (1949). An example of a new type of cosmological solution of Einstein's field equations of gravitation. Rev. of Mod.Phys.,21,447.
[158] Godel, K. (1986). Kurt Godel, collected works, Vol. I (publications 1929-1936) (ed. S.Feferman et al.). Oxford University Press.
[159] Godel, K. (1990). Kurt Godel, collected works. Vol. II (publications 1938-1974) (ed. S.Feferman et al.). Oxford University Press.
[160] Godel, K. (1995). Kurt Godel, collected works, Vol. Ill (ed. S. Feferman et al.). Oxford University Press.
[161] Golomb, S. W. (1965). Polyominoes. Scribner and Sons.
[162] Good, I.J. (1965). Speculations concerning the first ultraintelligent machine. Advances in Computers, 6, 31-88.
[163] Good, I. J. (1967). Human and machine logic. Brit. J. Philos. ScL, 18, 144-147.
[164] Good, I.J. (1969). Godel's theorem is a red herring. Brit. J. Philos. ScL, 18, 359-373.
[165] Graham, R.L., Rothschild, B.L. (1971). Ramsey's theorem for n-parameter sets. Trans. Am. Math. Soc, 59, 290.
[166] Grant, P.M. (1994). Another December revolution? Nature, 367, 16.
[167] Gray, СМ., Singer, W. (1989). Stimulus-specific neuronal oscillations in orientation columns of cat visual cortex. Proc. Natl. Acad. Sci. USA, 86, 1689-1702.
[168] Grangier, P., Roger, G., Aspect, A. (1986). Experimental evidence for a photon anticorrelation effect on a beam splitter: a new light on single-photon interferences. Europhysics Letters, 1, 173-179.
[169] Green, D. G., Bossomaier, T. (ed.)( 1993). Complex systems: from biology to computation. IOS Press.
[170] Greenberger, D.M., Home, M.A., Zeilinger, A. (1989). Going beyond Bell's theorem. В сб. Bell's theorem, quantum theory, and conceptions of the universe (ed. M. Kafatos), 73-76. Kluwer Academic, Dordrecht, The Netherlands.
[171] Greenberger, D. M., Home, M. A., Shimony, A., Zeilinger, A. (1990). Bell's theorem without inequalities. Am. J. Phys., 58, 1131-1143.
[172] Gregory, R.L. (1981). Mind in science: a history of explanations in psychology and physics. Weidenfeld and Nicholson Ltd. (также Penguin, 1984).
[173] Grey Walter, W. (1953). The living brain. Gerald Duckworth and Co. Ltd.
[174] Griffiths, R. (1984). Consistent histories and the interpretation of quantum mechanics. J. Stat. Phys., 36, 219.
[175] Grossberg, S. (ed.) (1987). The adaptive brain I: Cognition, learning, reinforcement and rhythm и The adaptive brain II: Vision, speech, language and motor control. North-Holland, Amsterdam.
[176] Grunbaum, В., Shephard, G.C. (1987). Tilings and Patterns. Freeman, New York.
[177] Grundler, W., Keilmann, F. (1983). Sharp resonances in yeast growth proved nonthermal sensitivity to microwaves. Phys. Rev. Letts., 51, 1214-1216.
[178] Guccione, S. (1993). Mind the truth: Penrose's new step in the Godelian argument. Behavioural and Brain Sciences, 16, 612-613.
[179] Haag, R. (1992). Local quantum physics: fields, particles, algebras. Springer-Verlag, Berlin.
[180] Hadamard, J. (1945). The psychology of invention in the mathematical field. Princeton University Press.
[181] Hallett, M. (1984). Cantorian set theory and limitation of size. Clarendon Press, Oxford.
[182] Hameroff, S. R. (1974). Chi: a neural hologram? Am. J. Clin. Med., 2(2), 163-170.
[183] Hameroff, S. R. (1987). Ultimate computing. Biomolecular consciousness and nano-technology. North-Holland, Amsterdam.
[184] Hameroff, S. R., Watt, R. С (1982). Information in processing in microtubules. /. Theor. Biol., 98, 549-561.
[185] Hameroff, S.R., Watt, R.C. (1983). Do anesthetics act by altering electron mobility? Anesth. Analg., 62, 936-940.
[186] Hameroff, S.R., Rasmussen, S., Mansson, B. (1988). Molecular automata in microtubles: basic computational logic of the living state? В сб. Artificial Life, SFI studies in the sciences of complexity (ed. C. Langton). Addison-Wesley, New York.
[187] Hanbury Brown, R., Twiss, R.Q. (1954). A new type of interferometer for use in radio astronomy. Phil. Mag., 45, 663-682.
[188] Hanbury Brown, R., Twiss, R.Q. (1956). The question of correlation between photons in coherent beams of light. Nature, 177, 27-29.
[189] Harel, D. (1987). Algorithmics. The spirit of computing. Addison-Wesley, New York.
[190] Hawking, S.W. (1975). Particle creation by Black Holes. Commun. Math. Phys., 43, 199-220.
[191] Hawking, S.W. (1982). Unpredictability of quantum gravity. Commun. Math. Phys., 87, 395-415.
[192] Hawking, S.W., Israel, W. (ed.) (1987). 300 years of gravitation. Cambridge University Press.
[193] Hebb, D. O. (1949). The organization of behaviour. Wiley, New York.
[194] Hecht, S., Shlaer, S., Pirenne, M.H. (1941). Energy, quanta and vision. Journal of General Physiology, 25, 821-840.
[195] Herbert, N. (1993). Elemental mind. Human consciousness and the new physics. Dutton Books, Penguin Publishing.
[196] Heyting, A. (1956). Intuitionism: an introduction. North-Holland, Amsterdam.
[197] Heywood, P., Redhead, M.L. G. (1983). Nonlocality and the Kochen—Specker Paradox. Found. Phys., 13, 481-499.
[198] Hodges, A. P. (1983). Alan Turing: the enigma. Burnett Books and Hutchinson, London; Simon and Schuster, New York.
[199] Hodgkin, D., Houston, A. I. (1990). Selecting for the con in consciousness. Behavioural and Brain Sciences, 13 (4), 668.
[200] Hodgson, D. (1991). Mind matters: consciousness and choice in a quantum world. Clarendon Press, Oxford.
[201] Hofstadter, D.R. (1979). Godel, Escher, Bach: an eternal golden braid. Harvester Press, Hassocks, Essex.
[202] Hofstadter, D.R. (1981). A conversation with Einstein's brain. В сб. The mind's / (ed. D. R. Hofstadter, D. Dennett). Basic Books; Penguin, Harmondsworth, Middlesex.
[203] Hofstadter, D.R., Dennett, D. С (ed.)(1981). The mind's I. Basic Books; Penguin, Harmondsworth, Middlesex.
[204] Home, D. (1994). A proposed new test of collapse-induced quantum nonlocality. Preprint.
[205] Home, D., Nair, R. (1994). Wave function collapse as a nonlocal quantum effect. Phys. Lett., A187, 224-226.
[206] Home, D., Selleri, F. (1991). Bell's Theorem and the EPR Paradox. Rivista del Nuovo Cimento, 14, N. 9.
[207] Hopfield, J.J. (1982). Neural networks and physical systems with emergent collective computational abilities. Proc. Natl. Acad. Sci., 79, 2554-2558.
[208] Hsu, F.-H., Anantharaman, Т., Campbell, M., Nowatzyk, A. (1990). A grandmaster chess machine. Scientific American, 263.
[209] Huggett, S.A., Tod, K.P. (1985). An introduction to twistor theory. London Math. Soc. student texts. Cambridge University Press.
[210] Hughston, L.P., Jozsa, R., Wootters, W. K. (1993). A complete classification of quantum ensembles having a given density matrix. Phys. Letters, A183, 14-18.
[211] Isham, С J. (1989). Quantum gravity. В сб. The new physics (ed. P. C. W. Davies), 70-93. Cambridge University Press.
[212] Isham, С J. (1994). Prima facie questions in quantum gravity. В сб. Canonical relativity: classical and quantum (ed. J. Ehlers, H. Friedrich). Springer-Veriag, Berlin.
[213] Jibu, M, Hagan, S., Pribram, K.., Hameroff, S.R., Yasue, K. (1994). Quantum optical coherence in cytoskeletal microtubules: implications for brain function. Bio. Systems (готовится к печати).
[214] Johnson-Laird, P.N. (1983). Mental models. Cambridge University Press.
[215] Johnson-Laird, P.N. (1987). How could consciousness arise from the computations of the brain? В сб. Mindwaves: thoughts on intelligence, identity and consciousness (ed. C. Blakemore, S. Greenfield). Blackwell, Oxford.
[216] Karolyhazy, F. (1966). Gravitation and quantum mechanics of macroscopic bodies. Nuo. Cim. A, 42, 390-402.
[217] Karolyhazy, F. (1974). Gravitation and quantum mechanics of macroscopic bodies. Magyar Fizikai Polyoirat, 12, 24.
[218] Karolyhazy, F, Frenkel, A., Lukacs, B. (1986). On the possible role of gravity on the reduction of the wave function. В сб. Quantum concepts in space and time (ed. R. Penrose, C.J. Isham). Oxford University Press.
[219] Kasumov, A.Y., Kislov, N.A., Khodos, I.I. (1993). Can the observed vibration of a cantilever of supersmall mass be explained by quantum theory? Microsc. Microanal. Microstruct., 4, 401-406.
[220] Kentridge, R. W. (1990). Parallelism and patterns of thought. Behavioural and Brain Sciences, 13 (4), 670.
[221] Khalfa, J. (ed.) (1994). What is intelligence? The Darwin College lectures. Cambridge University Press.
[222] Klarner, D.A. (1981). My life among the Polyominoes. В сб. The mathematical gardner (ed. D. A. Klarner). Prindle, Weber and Schmidt, Boston, MA; Wadsworth Int., Belmont, CA.
[223] Kleene, S. C. (1952). Introduction to metamathematics. North-Holland, Amsterdam, van Nostrand, New York.
[224] Klein, M.V., Furtak, Т.Е. (1986). Optics, 2nd edn. Wiley, New York.
[225] Kochen, S., Specker, E.R (1967). The problem of hidden variables in quantum mechanics. /. Math. Mech., 17, 59-88.
[226] Kohonen, T. (1984). Self-organization and associative memory. Springer-Verlag, New York.
[227] Komar, A.B. (1969). Qualitative features of quantized gravitation. Int. J. Theor. Phys., 2, 157-160.
[228] Koruga, D. (1974). Microtubule screw symmetry: packing of spheres as a latent bioinformation code. Ann. NY Acad. Sci., 466, 953-955.
[229] Koruga, D., Hameroff, S., Withers, J., Loutfy, R., Sundareshan, M. (1993). Fullerene C6o– History, physics, nanobiology, nanotechnology. North-Holland, Amsterdam.
[230] Kosko, B. (1994). Fuzzy thinking: the new science of fuzzy logic. Harper Collins, London.
[231] Kreisel, G. (1960). Ordinal logics and the characterization of informal concepts of proof. Proc. of the Internal. Cong, of Mathematics, Aug. 1958. Cambridge University Press.
[232] Kreisel, G. (1967). Informal rigour and completeness proofs. В сб. Problems in the philosophy of mathematics (ed. I. Lakatos), 138-186. North-Holland, Amsterdam.
[233] Lagues, M., Xiao Ming Xie, Tebbji, H., Xiang Zhen Xu, Mairet, V, Hatterer, C, et al. (1993). Evidence suggesting superconductivity at 250 К in a sequentially deposited cuprate film. Science, 262, 1850-1851.
[234] Lander, L. J., Parkin, T. R. (1966). Counterexample to Euler's conjecture on sums of like powers. Bull. Amer. Math. Soc, 72, 1079.
[235] Leggett, A.J. (1984). Schrodinger's cat and her laboratory cousins. Contemp. Phys., 25 (6), 583.
[236] Lewis, D. (1969). Lucas against mechanism. Philosophy, 44, 231-233.
[237] Lewis, D. (1989). Lucas against mechanism II. Can. J. Philos., 9, 373-376.
[238] Libet, B. (1990). Cerebral processes that distinguish conscious experience from unconscious mental functions. В сб. The principles of design and operation of the brain (ed. J. C. Eccles, O. D. Creutzfeldt), Experimental Brain research series 21, 185-205. Springer-Verlag, Berlin.
[239] Libet, B. (1992). The neural time-factor in perception, volition and freewill. Revue de Metaphysique et de Morale, 2, 255-272.
[240] Libet, В., Wright, E. W. Jr., Feinstein, В., Pearl, D. K. (1979). Subjective referral of the timing for a conscious sensory experience. Brain, 102, 193-224.
[241] Linden, E. (1993). Can animals think? Time Magazine (March), 13.
[242] Lisboa, P.G.J, (ed.) (1992). Neural networks: current applications. Chapman Hall, London.
[243] Lockwood, M. (1989). Mind, brain and the quantum. Blackwell, Oxford.
[244] Longair, M.S. (1993). Modern cosmology – a critical assessment. Q. J. R. Astr. Soc, 34, 157-199.
[245] Longuet-Higgins, H. С (1987). Mental processes: studies in cognitive science, Part II. MIT Press, Cambridge, Massachusetts.
[246] Lucas, J.R. (1961). Minds, machines and Godel. Philosophy, 36, 120-124; также в Alan Ross Anderson (ed.) (1964) Minds and Machines. Englewood Cliffs.
[247] Lucas, J.R. (1970). The freedom of the will. Oxford University Press.
[248] McCarthy, J. (1979). Ascribing mental qualities to machines. В сб. Philosophical perspectives in artificial intelligence (ed. M. Ringle). Humanities Press, New York.
[249] McCulloch, W.S., Pitts, W.H. (1943). A logical calculus of the idea immanent in nervous activity. Bull. Math. Biophys., 5, 115-133. (Также в McCulloch, W. S., Embodiments of mind, MIT Press, 1965.)
[250] McDermott, D. (1990). Computation and consciousness. Behavioural and Brain Sciences, 13 (4), 676.
[251] MacLennan, B. (1990). The discomforts of dualism. Behavioural and Brain Sciences, 13 (4), 673.
[252] Majorana, E. (1932). Atomi orientati in campo magnetico variabile. Nuovo Cimento, 9, 43-50.
[253] Manaster-Ramer, A., Savitch, W.J., Zadrozny, W. (1990). Godel redux. Behavioural and Brain Sciences, 13 (4), 675.
[254] Mandelkow, E.-M., Mandelkow, F. (1994). Microtubule structure. Curr. Opinions Structural Biology, 4, 171-179.
[255] Margulis, L. (1975). Origins of eukaryotic cells. Yale University Press, New Haven, CT.
[256] Markov, A. A. (1958). The insolubility of the problem of homeomorphy. Dokl. Akad. Nauk. SSSR, 121, 218-220.
[257] Marr, D.E. (1982). Vision: a computational investigation into the human representation and processing of visual information. Freeman, San Francisco.
[258] Marshall, I.N. (1989). Consciousness and Bose-Einstein condensates. New Ideas in Psychology, 7.
[259] Mermin, D. (1985). Is the moon there when nobody looks? Reality and the quantum theory. Physics Today, 38, 38-47.
[260] Mermin, D. (1990). Simple unified form of the major no-hidden-variables theorems. Phys. Rev. Lett, 65, 3373-3376.
[261] Michie, D., Johnston, JR. (1984). The creative computer. Machine intelligence and human knowledge. Viking Penguin.
[262] Minsky, M. (1968). Matter, mind and models. В сб. Semantic information processing (ed. M. Minsky). MIT Press, Cambridge, Massachusetts.
[263] Minsky, M. (1986). The society of mind. Simon and Schuster, New York.
[264] Minsky, M., Papert, S. (1972). Perceptrons: an introduction to computational geometry. MIT Press, Cambridge, Massachusetts.
[265] Misner, C.W., Thorne, K. S., Wheeler, J. A. (1973). Gravitation. Freeman, New York.
[266] Moore, A. W. (1990). The infinite. Routledge, London.
[267] Moravec, H. (1988). Mind children: the future of robot and human intelligence. Harvard University Press, Cambridge, Massachusetts.
[268] Moravec, H. (1994). The Age of Mind: transcending the human condition through robots. Готовится к печати.
[269] Mortensen, C. (1990). The powers of machines and minds. Behavioural and Brain Sciences', 13(4), 678.
[270] Mostowski, A. (1957). Sentences undecidable in formalized arithmetic: an exposition of the theory of Kurt Godel. North-Holland, Amsterdam.
[271] Nagel, E., Newman, J. R. (1958). Godel's proof. Routledge and Kegan Paul.
[272] Newell, A., Simon, H.A. (1976). Computer science as empirical enquiry: symbols and search. Communications of the ACM, 19, 113-126.
[273] Newell, A., Young, R., Polk, T. (1993). The approach through symbols. В сб. The simulation of human intelligence (ed. D. Broadbent). Blackwell, Oxford.
[274] Newton, I. (1687). Philosophiae Naturalis Principia Mathematica. Репринт: Cambridge University Press.
[275] Newton, Г. (1730). Opticks. 1952, Dover, New York.
[276] Oakley, D.A. (ed.) (1985). Brain and mind. Methuen, London.
[277] Obermayer, K., Teich, W.G., Mahler, G. (1988). Structural basis of multistationary quantum systems. I. Effective single-particle dynamics. Phys. Rev., B37, 8096-8110.
[278] Obermayer, K., Teich, W.G., Mahler, G. (1988). Structural basis of multistationary quantum systems. II. Effective few-particle dynamics. Phys. Rev., B37, 8111-8121.
[279] Omnes, R. (1992). Consistent interpretations of quantum mechanics. Rev. Mod. Phys., 64, 339-382.
[280] Pais, A. (1991). Niels Bohr's times. Clarendon Press, Oxford.
[281] Pauling L. (1964). The hydrate microcrystal theory of general anesthesia. Anesth. Analg., 43, 1.
[282] Paz, J. P., Zurek, W.H. (1993). Environment-induced decoherence, classicality and consistency of quantum histories. Phys. Rev., D48 (6), 2728-2738.
[283] Paz, J.P., Habib, S., Zurek, W.H. (1993). Reduction of the wave packet: preferred observable and decoherence time scale. Phys. Rev., D47 (2), 3rd Series, 488-501.
[284] Pearie, P. (1976). Reduction of the state-vector by a nonlinear Schrodinger equation. Phys. Rev., D13, 857-868.
[285] Pearte, P. (1989). Combining stochastic dynamical state-vector reduction with spontaneous localization. Phys. Rev., A39, 2277-2289.
[286] Pearie, P. (1992). Relativistic model state-vector reduction. В сб. Quantum chaos – Quantum measurement, NATO Adv. Sci. Inst. Ser. С Math. Phys. Sci. 358 (Copenhagen 1991). Kluwer, Dordrecht.
[287] Peat, F.D. (1988). Superstrings and the search for the theory of everything. Contemporary Books, Chicago.
[288] Penrose, О. (1970). Foundations of statistical mechanics: a deductive treatment. Pergamon, Oxford.
[289] Penrose, O., Onsager, L. (1956). Bose-Einstein condensation and liquid helium. Phys. Rev., 104, 576-584.
[290] Penrose, R. (1980). On Schwarzschild causality – a problem for «Lorentz covariant» general relativity. В сб. Essays in general relativity (A. Taub Festschrift) (ed. F. J.Tipler), 1-12. Academic Press, New York.
[291] Penrose, R. (1987). Newton, quantum theory and reality. В сб. 300 Years of gravity (ed. S. W. Hawking, W. Israel). Cambridge University Press.
[292] Penrose, R. (1990). Author's response, Behavioural and Brain Sciences, 13 (4), 692.
[293] Penrose, R. (1991). The mass of the classical vacuum. В сб. The philosophy of vacuum (ed. S. Saunders, H. R. Brown). Clarendon Press, Oxford.
[294] Penrose, R. (1991). Response to Tony Dodd's «Godel, Penrose, and the possibility of AI». Artificial Intelligence Review, 5, 235.
[295] Penrose, R. (1993). Gravity and quantum mechanics. В сб. General relativity and gravitation 1992. Proceedings of the Thirteenth International Conference on General Relativity and Gravitation held at Cordoba, Argentina 28 June-4 July 1992. Part I: Plenary lectures (ed. R. J. Gleiser, C. N. Kozameh, O. M.Moreschi). Institute of Physics Publications, Bristol.
[296] Penrose, R. (1993). Quantum non-locality and complex reality. В сб. The Renaissance of general relativity (in honour of D.W.Sciama) (ed. G.Ellis, A.Lanza, J.Miller). Cambridge University Press.
[297] Penrose, R. (1993). Setting the scene: the claim and the issues. В сб. The simulation of human intelligence (ed. D. Broadbent). Blackwell, Oxford.
[298] Penrose, R. (1993). An emperor still without mind. Behavioural and Brain Sciences, 16, 616-622.
[299] Penrose, R. (1994). On Bell non-locality without probabilities: some curious geometry. В сб. Quantum reflections (in honour of J.S.Bell) (ed. J.Ellis, A.Amati). Cambridge University Press.
[300] Penrose, R. (1994). Non-locality and objectivity in quantum state reduction. В сб. Fundamental aspects of quantum theory (ed. J. Anandan, J. L. Safko). World Scientific, Singapore.
[301] Penrose, R., Rindler, W. (1984). Spinors and space-time, Vol. 1: Two-spinor calculus and relative fields. Cambridge University Press.
[302] Penrose, R., Rindler, W. (1986). Spinors and space-time, Vol. 2: Spinor and twistor methods in space-time geometry. Cambridge University Press.
[303] Percival, I. C. (1994). Primary state diffusion. Proc. R. Soc. Lond., А (статья отправлена в журнал).
[304] Peres, A. (1985). Reversible logic and quantum computers. Phys. Rev., A32 (6), 3266-3276.
[305] Peres, A. (1990). Incompatible results of quantum measurements. Phys. Lett., A151, 107-108.
[306] Peres, A. (1991). Two simple proofs of the Kochen—Specker theorem. /. Phys. A: Math. Gen., 24, L175-L178.
[307] Pedis, D. (1990). The emperor's old hat. Behavioural and Brain Sciences, 13 (4), 680.
[308] Planck, M. (1906). The theory of heat radiation (пер. на англ.: М. Masius, основана на лекциях, прочитанных в Берлине в 1906/1907 годах). 1959, Dover, New York.
[309] Popper, K.R., Eccles, J.R. (1977). The self and its brain. Springer International.
[310] Post, E. L. (1936). Finite combinatory processes-formulation I, Jour. Symbolic Logic, 1, 103-105.
[311] Poundstone, W. (1985). The recursive universe: cosmic complexity and the limits of scientific knowledge. Oxford University Press.
[312] Pour-El, М. В. (1974). Abstract computability and its relation to the general purpose analog computer. (Some connections between logic, differential equations and analog computers.) Trans. Amer. Math. Soc, 119, 1-28.
[313] Pour-El, M.B., Richards, I. (1979). A computable ordinary differential equation which possesses no computable solution. Ann. Math. Logic, 17, 61-90.
[314] Pour-El, M.B., Richards, I. (1981). The wave equation with computable initial data such that its unique solution is not computable. Adv. in Math., 39, 215-239.
[315] Pour-El, M.B., Richards, I. (1982). Noncomputability in models of physical phenomena. Int. J. Theor. Phys., 21, 553-555.
[316] Pour-El, M.B., Richards, I. (1989). Computability in analysis and physics. Springer-Verlag, Berlin.
[317] Pribram, К. Н. (1966). Some dimensions of remembering: steps toward a neuropsychological model of memory. В сб. Macromolecules and behaviour (ed. J. Gaito), 165-187. Academic Press, New York.
[318] Pribram, К. Н. (1975). Toward a holonomic theory of perception. В сб. Gestalttheorie in der modern psychologie (ed. S. Ertel), 161-184. Erich Wengenroth, Kohl.
[319] Pribram, К. Н. (1991). Brain and perception: holonomy and structure in figural processing. Lawrence Erlbaum Assoc, New Jersey.
[320] Putnam, H. (1960). Minds and machines. В сб. Dimensions of mind (ed. S. Hook), New York Symposium. Также в Minds and. machines (ed. A. R. Anderson), 43-59, Prentice-Hall, 1964; и в Dimensions of mind: a symposium (Proceedings of the third annual NYU Institute of Philosophy), 148-179, NYU Press, 1964.
[321] Ramon у Cajal, S. (1955). Studies on the cerebral cortex (пер. на англ.: L.M. Kroft). Lloyd-Luke, London.
[322] Redhead, M. L. G. (1987). Incompleteness, nonlocality, and realism. Clarendon Press, Oxford.
[323] Rosenblatt, F. (1962). Principles of neurodynamics. Spartan Books, New York.
[324] Roskies, A. (1990). Seeing truth or just seeming true? Behavioural and Brain Sciences, 13 (4), 682.
[325] Rosser, J.B. (1936). Extensions of some theorems of Godel and Church. Jour. Symbolic Logic, 1, 87-91.
[326] Rubel, L. A. (1985). The brain as an analog computer. /. Theoret. Neurobiol., 4,73-81.
[327] Rubel, L.A. (1988). Some mathematical limitations of the general-purpose analog computer. Adv. in Appl. Math., 9, 22-34.
[328] Rubel, L. A. (1989). Digital simulation of analog computation and Church's thesis. Jour. Symb. Logic, 54 (3), 1011-1017.
[329] Rucker, R. (1984). Infinity and the mind: the science and philosophy of the infinite. Paladin Books, Granada Publishing Ltd., London. (Первое издание: Harvester Press Ltd., 1982.)
[330] Sacks, O. (1973). Awakenings. Duckworth, London.
[331] Sacks, O. (1985). The man who mistook his wife for a hat. Duckworth, London.
[332] Sagan, L. (1967). On the origin of mitosing cells. J. Theor. Biol., 14, 225-274.
[333] Сахаров А. Д. (1967). Квантовые флуктуации вакуума в искривленном пространстве и теория гравитации (Saharov A. D. Vacuum quantum fluctuations in curved space and the theory of gravitation). Доклады Акад. наук СССР, 177, 70-71. Пер. на англ. в Sou. Phys. Doklady, 12, 1040-1041 (1968).
[334] Schrodinger, E. (1935). «Die gegenwartige Situation in der Quantenmechanik». Naturwissenschaften, 23, 807-812, 823-828, 844-849. (Пер. на англ.: J. Т. Trimmer (1980) в Proc. Amer. Phil. Soc, 124, 323-338.) Также в сб. Quantum theory and measurement (ed. J.A.Wheeler, W. H. Zurek). Princeton University Press, 1983.
[335] Schrodinger, E. (1935). Probability relations between separated systems. Proc. Camb. Phil. Soc, 31, 555-563.
[336] Schrodinger, E. (1967). "What is Life?" and "Mind and Matter". Cambridge University Press.
[337] Schroeder, M. (1991). Fractals, chaos, power laws. Minutes from an infinite paradise. Freeman, New York.
[338] Scott, A. C. (1973). Information processing in dendritic trees. Math. Bio. Sci., 18, 153-160.
[339] Scott, A. C. (1977). Neurophysics. Wiley Interscience, New York.
[340] Searle, J. R. (1980). Minds, brains and programs. В сб. The behavioral and brain sciences. Vol. 3. Cambridge University Press. (Также в сб. The mind's I (ed. D. R. Hofstadter, D.C.Dennett). Basic Books, Inc.; Penguin Books Ltd., Harmondsworth, Middlesex, 1981.)
[341] Searle, J.R. (1992). The rediscovery of the mind. MIT Press, Cambridge, Massachusetts.
[342] Seymore, J., Norwood, D. (1993). A game for life. New Scientist, 139, No. 1889, 23-26.
[343] Sheng, D., Yang, J., Gong, C, Holz, A. (1988). A new mechanism of high Tc superconductivity. Phys. Lett., A133, 193-196.
[344] Sloman, A. (1992). The emperor's real mind: review of Roger Penrose's The Emperor's New Mind. Artificial Intelligence, 56, 355-396.
[345] Smart, J. J. С (1961). Godel's theorem, Church's theorem and mechanism. Synthese, 13, 105-110.
[346] Smith, R.J.O., Stephenson, J. (1975). Computer simulation of continuous systems. Cambridge University Press.
[347] Smith, S., Watt, R.C., Hameroff, S.R. (1984). Cellular automata in cytoskeletal lattice proteins. Physica D, 10, 168-174.
[348] Smolin, L. (1993). What have we learned from non-pertubative quantum gravity? В сб. General relativity and gravitation 1992. Proceedings of the thirteenth international conference on GRG, Cordoba, Argentina (ed. R.J.Gleiser, C. N.Kozameh, O.M.Moreschi). Institute of Physics Publications, Bristol.
[349] Smolin, L. (1994). Time, structure and evolution in cosmology. В сб. Temponelle scienziae filosofia (ed. E. Agazzi). Word Scientific, Singapore.
[350] Smorynski, C. (1975). Handbook of mathematical logic. North-Holland, Amsterdam.
[351] Smorynski, C, (1983). «Big» news from Archimedes to Friedman. Notices Amer. Math. Soc, 30,251-256.
[352] Smullyan, R. (1961). Theory of Formal Systems. Princeton University Press.
[353] Smullyan, R. (1992). Godel's incompleteness theorem. Oxford Logic Guide No. 19. Oxford University Press.
[354] Squires, E.J. (1986). The mystery of the quantum world. Adam Hilger Ltd., Bristol.
[355] Squires, E.J. (1990). On an alleged proof of the quantum probability law. Phys. Lett., A145, 67-68.
[356] Squires, E.J. (1992). Explicit collapse and superluminal signals. Phys. Lett., A163, 356-358.
[357] Squires, E.J. (1992). History and many-worlds quantum theory. Found. Phys. Lett., 5, 279-290.
[358] Stairs, A. (1983). Quantum logic, realism and value-definiteness. Phil. ScL, 50 (4), 578-602.
[359] Stapp, H.P. (1979). Whiteheadian approach to quantum theory and the generalized Bell's theorem. Found. Phys., 9, 1-25.
[360] Stapp, H.P. (1993). Mind, matter, and quantum mechanics. Springer-Verlag, Berlin.
[361] Steen, L.A. (ed.) (1978). Mathematics today: twelve informal essays. Springer-Verlag, Berlin.
[362] Stoney, G.J. (1881). On the physical units of nature. Phil. Afag. (Series 5), 11, 381.
[363] Stretton, A. O. W., Davis, R. E., Angstadt, J. D., Donmoyer, J.E., Johnson, CD., Meade, J.A. (1987). Nematode neurobiology using Ascaris as a model system. J. Cellular Blochem., 511 A, 144.
[364] Thorne, K. S. (1994). Black holes & time warps: Einstein's outrageous legacy. W. W. Norton and Company, New York.
[365] Torrence, J. (1992). The concept of nature. The Herbert Spencer lectures. Clarendon Press, Oxford.
[366] Tsotsos, J.K.. (1990). Exactly which emperor is Penrose talking about? Behavioural and Brain Sciences, 13 (4), 686.
[367] Turing, A.M. (1937). On computable numbers, with an application to the Entscheidungsproblem. Proc. Land. Math. Soc. (ser. 2), 42,230-265; исправления в 43, 544-546.
[368] Turing, A.M. (1939). Systems of logic based on ordinals. Proc. bond. Math. Soc, 45, 161-228.
[369] Turing, A.M. (1950). Computing machinery and intelligence. Mind, 59, No. 236; также в The mind's I (ed. D. R. Hofstadter, D. С Dennett), Basic Books; Penguin, Harmondsworth, Middlesex, 1981.
[370] Turing, A.M. (1986). Lecture to the London Mathematical Society on 20 February 1947. В сб. A.M.Turing's ACE report of 1946 and other papers (ed. В. Е. Carpenter, R. W. Doran). The Charles Babbage Institute, vol. 10, MIT Press, Cambridge, Massachusetts.
[371] Tusznyski, J., Trpisova, В., Sept, D., Sataric, M. V. (1996). Microtubular self-organization and information processing capabilities. В сб. Toward a science of consciousness: contributions from the 1994 Tucson conference (ed. S. Hameroff, A. Kaszniak, A. Scott). MIT Press, Cambridge, Massachusetts.
[372] von Neumann, J. (1932). Mathematische Grundlagen der Quantenmechanik, Springer-Verlag, Berlin. Пер. на англ.: Mathematical foundations of quantum mechanics. Princeton University Press, 1955.
[373] von Neumann, J., Morgenstern, O. (1944). Theory of games and economic behaviour. Princeton University Press.
[374] Waltz, D.L. (1982). Artificial intelligence. Scientific American, 247 (4), 101-122.
[375] Wang, Hao (1974). From mathematics to philosophy. Routledge, London.
[376] Wang, Hao (1987). Reflections on Kurt Godel. MIT Press, Cambridge, Massachusetts.
[377] Wang, Hao (1993). On physicalism and algorithmism: can machines think? Philosophia mathematica (Sen III), 97-138.
[378] Ward, R.S., Wells, R.O.Jr. (1990). Twistor geometry and field theory. Cambridge University Press.
[379] Weber, J. (1960). Detection and generation of gravitational waves. Phys. Rev., 117, 306.
[380] Weinberg, S. (1977). The first three minutes: a modern view of the origin of the universe. Andre Deutsch, London.
[381] Werbos, P. (1989). Bell's theorem; the forgotten loophole and how to exploit it. В сб. Bell's theorem, quantum theory, and conceptions of the universe (ed. M. Kafatos). Kluwer, Dordrecht.
[382] Wheeler, J. A. (1957). Assessment of Everett's «relative state» formulation of quantum theory. Revs. Mod. Phys., 29, 463-465.
[383] Wheeler, J. A. (1975). On the nature of quantum geometrodynamics. Annals of Phys., 2, 604-614.
[384] Wigner, E. P. (1960). The unreasonable effectiveness of mathematics. Commun. Pure Appl. Math., 13, 1-14.
[385] Wigner, E. P. (1961). Remarks on the mind-body question. В сб. The scientist speculates (ed. I. J. Good). Heinemann, London. (Также в Е. Wigner (1967), Symmetries and reflections. Indiana University Press, Bloomington; и в Quantum theory and measurement (ed. J.A.Wheeler, W. H. Zurek) Princeton University Press, 1983.)
[386] Wilensky, R. (1990). Computability, consciousness and algorithms. Behavioural and Brain Sciences, 13 (4), 690.
[387] Will, С (1988). Was Einstein right? Putting general relativity to the test. Oxford University Press.
[388] Wolpert, L. (1992). The unnatural nature of science. Faber and Faber, London.
[389] Woolley,B. (1992). Virtual worlds. Blackwell, Oxford.
[390] Wykes, A. (1969). Doctor Cardano. Physician extraordinary. Frederick Muller.
[391] Young, A.M. (1990). Mathematics, physics and reality. Robert Briggs Associates, Portland, Oregon.
[392] Zeilinger, A., Gaehler, R., Shull, C.G., Mampe, W. (1988). Single and double slit diffraction of neutrons. Revs. Mod. Phys., 60, 1067.
[393] Zeilinger, A., Home, M.A., Greenberger, D.M. (1992). Higher-order quantum entanglement. В сб. Squeezed states and quantum uncertainty (ed. D. Han, Y. S. Kirn, WW.Zachary), NASA Conf. Publ. 3135. NASA, Washington, DC.
[394] Zeilinger, A., Zukowski, M., Home, M.A., Bernstein, H. J., Greenberger, D. M. (1994). Einstein—Podolsky—Rosen correlations in higher dimensions. В сб. Fundamental aspects of quantum theory (ed. J.Anandan, J.L. Safko). World Scientific, Singapore.
[395] Zimba, J. (1993). Finitary proofs of contextuality and nonlocality using Majorana representation of spin-3/2 states, M. Sc. thesis, Oxford.
[396] Zimba, J., Penrose, R. (1993). On Bell non-locality without probabilities: more curious geometry. Stud. Hist. Phil. Sci., 24 (5), 697-720.
[397] Zohar, D. (1990). The quantum self. Human nature and consciousness defined by the New Physics. William Morrow and Company, Inc., New York.
[398] Zohar, D., Marshall, I. (1994). The quantum society. Mind, physics and a new social vision. Bloomsbury, London.
[399] Zurek, W. H. (1991). Decoherence and the transition from quantum to classical. Physics Today, 44 (No. 10), 36-44.
[400] Zurek, W.H. (1993). Preferred states, predictability, classicality and the environment-induced decoherence. Prog, of Theo. Phys., 89 (2), 281-302.
[401] Zurek, W. H., Habib, S., Paz, J. P. (1993). Coherent states via decoherence. Phys. Rev. Lett., 70 (9), 1187-1190.