Мозг – повелитель времени - читать онлайн книгу. Автор: Дин Буономано cтр.№ 71

читать книги онлайн бесплатно
 
 

Онлайн книга - Мозг – повелитель времени | Автор книги - Дин Буономано

Cтраница 71
читать онлайн книги бесплатно

— Calaprice, A. (2005). The new quotable Einstein. Princeton: Princeton University Press.

— Callender, C. (2010a). Is time an illusion? Scientific American, June, 59–65.

— Callender, C., Edney, R. (2010b). Introducing time: A graphic guide. London: Icon Books.

— Campbell, L. A., Bryant, R. A. (2007). How time f lies: A study of novice skydivers. Behaviour Research and Therapy, 45, 1389–1392.

— Carlson, B. A. (2009). Temporal-pattern recognition by single neurons in a sensory pathway devoted to social communication behavior. Journal of Neuroscience, 29, 9417–9428.

— Carnevale, F., de Lafuente, V., Romo, R., Barak, O., Parga, N. (2015). Dynamic control of response criterion in premotor cortex during perceptual detection under temporal uncertainty. Neuron, 86, 1067–1077.

— Carroll, S. (2010). From eternity to here: The quest for the ultimate theory of time. New York: Penguin. В русском переводе: Кэрролл Ш. Вечность. В поисках окончательной теории времени. — Питер, 2016.

— Chang, A. Y.-C., Tzeng, O. J. L., Hung, D. L., Wu, D. H. (2011). Big time is not always long: Numerical magnitude automatically affects time reproduction. Psychological Science, 22, 1567–1573.

— Chubykin, Alexander A., Roach, Emma B., Bear, Mark F., Shuler, Marshall G. H. (2013). A cholinergic mechanism for reward timing within primary visual cortex. Neuron, 77, 723–735.

— Cicchini, G. M., Arrighi, R., Cecchetti, L., Giusti, M., Burr, D. C. (2012). Optimal encoding of interval timing in expert percussionists. Journal of Neuroscience, 32, 1056–1060.

— Clark, A. (2013). Whatever next? Predictive brains, situated agents, and the future of cognitive science. Behavioral and Brain Sciences, 36, 181–204.

— Clayton, N. S., Dickinson, A. (1999). Scrub jays (Aphelocoma coerulescens) remember the relative time of caching as well as the location and content of their caches. Journal of Comparative Psychology, 113, 403–416.

— Clayton, N. S., Russell, J., Dickinson, A. (2009). Are animals stuck in time or are they chronesthetic creatures? Topics in Cognitive Science, 1, 59–71.

— Cohen, J., Hansel, C. E., Sylvester, J. D. (1953). A new phenomenon in time judgment. Nature, 172, 901.

— Colapinto, J. (2007). The interpreter. The New Yorker, April 16, 118–137.

— Collyer, C. E. (1976). The induced asynchrony effect: Its role in visual judgments of temporal order and its relation to other dynamic perceptual phenomena. Perception & Psychophysics, 19, 47–54.

— Colwell, C. S. (2011). Linking neural activity and molecular oscillations in the SCN. Nature Reviews Neuroscience, 12, 553–569.

— Corballis, M. C. (2011). The recursive mind: the origins of human language thought and civilization. Princeton, NJ: Princeton University Press.

— Cordes, S., Gallistel, C. R. (2008). Intact interval timing in circadian CLOCK mutants. Brain Research, 1227, 120–127.

— Coull, J. T., Cheng, R.-K., Meck, W. H. (2011). Neuroanatomical and neurochemical substrates of timing. Neuropsychopharmacology, 36, 3–25.

— Coull, J. T., Charras, P., Donadieu, M., Droit-Volet, S., Vidal, F. (2015). SMA selectively codes the active accumulation of temporal, not spatial, magnitude. Journal of Cognitive Neuroscience, 27, 2281–2298.

— Creelman, C. D. (1962). Human discrimination of auditory duration. Journal of the Acoustical Society of America, 34, 582–593.

— Critchfield, T. S., Kollins, S. H. (2001). Temporal discounting: basic research and the analysis of socially important behavior.Journal of Applied Behavior Analysis, 34, 101–122.

— Crowe, D. A., Averbeck, B. B., Chafee, M. V. (2010). Rapid sequences of population activity patterns dynamically encode task-critical spatial information in parietal cortex. Journal of Neuroscience, 30, 11640–11653.

— Crowe, D. A., Zarco, W., Bartolo, R., Merchant, H. (2014). Dynamic representation of the temporal and sequential structure of rhythmic movements in the primate medial premotor cortex. Journal of Neuroscience, 34, 11972–11983.

— Czeisler, C., Weitzman, E., Moore-Ede, M., Zimmerman, J., Knauer, R. (1980). Human sleep: its duration and organization depend on its circadian phase. Science, 210, 1264–1267.

— Davidson, A. J., Sellix, M. T., Daniel, J., Yamazaki, S., Menaker, M., Block, G. D. (2006). Chronic jet-lag increases mortality in aged mice. Current Biology, 16, R914–916.

— Davies, P. (1995). About time: Einstein’s unfinished revolution. New York: Simon & Schuster.

— Davies, P. (2012). That mysterious flow. Scientific American, 21, 8–13.

— Debanne, D., Gahwiler, B. H., Thompson, S. M. (1994). Asynchronous pre- and postsynaptic activity induces associative long-term depression in area CA1 of the rat hippocampus in vitro. Proceedings of the National Academy of Science USA, 91, 1148–1152.

— Dehaene, S. (2014). Consciousness and the brain: Deciphering how the brain codes our thoughts. New York: Viking. В русском переводе: Деан С. Сознание и мозг. Как мозг кодирует мысли. — Карьера Пресс, 2018.

— Dehaene, S., Changeux, J.-P. (2011). Experimental and theoretical approaches to conscious processing. Neuron, 70, 200–227.

— Dennett, D. C. (1991). Consciousness explained. New York: Little, Brown and Company.

— Dennett, D. C. (2003). Freedom evolves. New York: Penguin Books.

— DiCarlo, J. J., Cox, D. D. (2007). Untangling invariant object recognition. Trends in Cognitive Sciences, 11, 333–341.

— Doupe, A. J., Kuhl, P. K. (1999). Birdsong and human speech: common themes and mechanisms. Annual Review of Neuroscience, 22, 567–631.

— Droit-Volet, S. (2003). Temporal experience and timing in children. In: Functional and neural mechanisms of interval timing (Meck, WH, ed.), 183–288. Boca Raton: CRC Press.

— Dudai, Y., Carruthers, M. (2005). The Janus face of Mnemosyne. Nature, 434, 567.

— Duncan, D. E. (1999). Calendar: humanity’s epic struggle to determine a true and accurate year. New York: Avon Books.

— Eichenbaum, H. (2014). Time cells in the hippocampus: a new dimension for mapping memories. National Review of Neuroscience, 15, 732–744.

— Einstein, A. (1905). On the electrodynamics of moving bodies. Annalen der Physik, 17, 891–921.

— Einstein, A., Infeld, L. (1938/1966). The evolution of physics. New York: Simon & Schuster. В русском переводе: Эйнштейн А., Инфельд Л. Эволюция физики. — Наука, 1954.

Вернуться к просмотру книги Перейти к Оглавлению Перейти к Примечанию