Complexity of an organism’s behavior and environment: Simon, H. A. (1996). The Sciences of the Artificial
(3rd ed.). Cambridge: MIT Press.Emergent complexity: Wolfram, S. (2002). A New Kind of Science.
Champaign, IL: Wolfram Media, Inc.Cortical representation of language: Martin, A., Haxby, J. V., Lalonde, E M., Wiggs, С L., & Ungerleider, L. G. (1995). Discrete cortical regions associated with knowledge of color and knowledge of action. Science,
270(5233), 102-105; Martin, A., Wiggs, C. L., Ungerleider, L. G., & Haxby, J. V. (1996). Neural correlates of category-specific knowledge. Nature, 379(6566), 649-652. Also, for more detailed discussion on the topic see: Goldberg, E. (1989). Gradiental approach to neocortical functional organization. J Glin Exp Neuropsychol, 11(4), 489-517; Goldberg. E. (1990). Higher Cortical Functions in Humans: The Gradiental Approach. In E. Goldberg (Ed.), Contemporary Neuropsychology and the Legacy of Luria (pp. 229-276). Hillsdale, NJ: Lawrence Erlbaum Associates; Goldberg, E. (2001). The Executive Brain: Frontal Lobes and the Civilized Mind. Oxford; New York: Oxford University Press.Vygotsy’s writings: Vygotsky, L. S. (1962). Thought and Language.
Cambridge, Mass.: MIT Press; Rieber, R. W, Robinson, D. K., & Bruner, J. S. (Eds.). (2004). The Essential Vygotsky. Kluger Academic/Plenum.Luria’s life in science: Luria, A. R., Cole, M., & Cole, S. (1979). The Making of Mind: A Personal Account of Soviet Psychology.
Cambridge: Harvard University Press; Goldberg, E. (1990); Tribute to Aleksandr Romanovich Luria (1902-1977). In E. Goldberg (Ed.), Contemporary Neuropsychology and the Legacy of Luria (pp. 1-9). Hillsdale, NJ: Lawrence Erlbaum Associates; Moskovich, L., Bougakov, D., DeFina. P., & Goldberg, E. (2002). A. R. Luria: Pursuing Neuropsychology in a Swiftly Changing Society. In A. Stringer, E. Cooley & A. L. Christensen (Eds.), Patways to Prominence in Neuropsychology. New York: Psychology Press.Luria’s neuropsychological research: Luria, A. R (1970). Traumatic Aphasia:
The Hague: Mouton; Luria, A. R. (1966). Higher Cortical Functions in Man. New York: Basic Books.Emergent cortical organization: Goldberg, E. (1989). Gradiental approach to neocortical functional organization. J Clin Exp Neuropsychol, 11(4),
489-517; Goldberg, E. (1990); Higher Cortical Functions in Humans: The Gradiental Approach. In E. Goldberg (Ed.), Contemporary Neuropsychology and the Legacy of Luria (pp. 229-276). Hillsdale, NJ: Lawrence Erlbaum Associates.Gradiental principle of functional cortical organization: Ibid.
6. Приключения и воспоминания
Role of neocortex in memory: Goldberg, E., & Barr, W. (1992). Selective knowledge loss in activational and representational amnesias. In L. Squire & N. Butters (Eds.), Neuropsychobgy of Memory
(pp. 72-80). New York: The Guilford Press; Fuster, J. M. (2003). Cortex and Mind: Unifying Cognition. New York: Oxford University Press.Role of other structures in memory: Goldberg, E., & Barr, W. (1992). Selective knowledge loss in activational and representational amnesias. In L. Squire & N. Butters (Eds.), Neuropsychobgy of Memory
(pp. 72-80). New York: The Guilford Press.Memory without forgetting: Luria, A. R (1968). The Mind of a Mnemonist: A Little Book About a Vast Memory.
New York: Basic Books.Causes of amnesia: Squire, L., & Schacter, D. (Eds.). (2002). Neuropsychobgy of Memory
(3rd ed.). New York: The Guilford Press.Perception and memory share the same cortical territory: Kosslyn, S. M., Thompson, W. L., & Alpert, N. M. (1997). Neural systems shared by visual imagery and visual perception: a positron emission tomography study. Neuroimage,
6(4), 320-334; Kosslyn, S. M., Thompson, W. L., Kim, I. J., & Alpert, N. M. (1995). Topographical representations of mental images in primary visual cortex. Nature, 378(6556), 496-498.Reverberating loops: Hebb, D. O. (1949). The Organization of Behavior: A Neuropsychological Theory.
New York: Wiley.Long-term potentiation: Bashir, Z. I., Bortolotto, Z. A., Davies, C. H., Berretta, N, Irving, A. J., Seal, A. J., et al. (1993). Induction of LTP in the hippocampus needs synaptic activation of glutamate metabotropic receptors. Nature,
363(6427), 347-350.