References

 

 

- Adams, C.E., Stevens, K.E., (1998). Inhibition of nitric oxide synthase disrupts inhibitory gating of auditory responses in rat hippocampus. J. Pharmacol. Exp. Ther. 287, 760– 765.

- Anderson BJ, Steinmetz JE. (1994) Cerebellar and brainstem circuits involved in classical eyeblink conditioning. Rev Neurosci. Jul-Sep;5(3):251-73.

- Bailey, D.J., Tetzlaff, J.E., Cook, J.M., He, X., Helmstetter, F.J., (2002). Effects of hippocampal injections of a novel ligand selective for the alpha-5-beta-2-gama-2 subunits of the GABA/benzodiazepine receptor on Pavlovian conditioning. Neurobiol. Learn. Mem. 78, 1 –10.

- Berger,T.W., Berry, S.D., Thompson, R.F. (1986) Role of Hippocampus in Classical Conditioning of Aversive and Appetitive Behaviors. In “The Hippocampus” Vol 4 Robert L. Isaacson, Karl H. Pribram (Editor).

- Bernardi G, Cherubini E, Marciani MG, Mercuri N, Stanzione P (1982) Responses of intracellularly recorded cortical neurons to the iontophoretic application of dopamine. Brain Res 245:267–274.

- Bingman VP, Hough GE 2nd, Kahn MC, Siegel JJ. (2003) The homing pigeon hippocampus and space: in search of adaptive specialization. Brain Behav Evol.;62(2):117-27.

- Braver TS, Cohen JD, Nystrom LE, Jonides J, Smith EE, Noll DC. (1997). A parametric study of prefrontal cortex involvement in human working memory. Neuroimage. Jan;5(1):49-62.

- Braver TS, Cohen JD. (1999) Dopamine, cognitive control, and schizophrenia: the gating model Prog Brain Res;121:327-49

- Cohen, M. and Grossberg, S. (1983) Absolute stability of global pattern formation and parallel memory storage by competitive neural networks.Transactions IEEE, SMC-13, 815-826.

- Courtney, S.M., Ungerleider, L.G., Keil, J.G. and Haxby, J.V. (1997). Transient and sustained activity in a distributed neural system for human working memory.  Nature, 386, pp. 618-612.

- Dreher, J.C., Burnod, Y. (2002) An integrative theory of the phasic and tonic modes of dopamine modulation in the prefrontal cortex Neural Networks 15 583–602

- Durstewitz,D and Seamans, J.K. (2002). The computational role of dopamine D1 receptors in working memory.Neural Networks 15 (2002) 561–572.

- Edeline, J.M., Dutrieux, G., Neuenschwander-el, M.N., (1988). Multiunit changes in hippocampus and medial geniculate body in free-behaving rats during acquisition and retention of a conditioned response to a tone. Behav. Neural Biol. 50, 61–79.

- Eichenbaum, H., Kuperstein, M., Fagan, A., Nagode, J., (1987). Cue-sampling and goal-approach correlates of hippocampal unit activity in rats performing an odor-discrimination task. J. Neurosci. 7, 716– 732.

- Fuster, J.M. and Alexander, G.E. (1971). Neuron activity related to Short Term Memory.  Science,173, pp. 652-654.

- Kim, J.J. et al. (1995) Hippocampectomy impairs the memory of recently, but not remotely, acquired

trace eyeblink conditioned responses. Behav.Neurosci. 109, 195–203

- Kubota, K. and Niki, H. (1973) Prefrontal cortical unit activity and delayed alternation performance in monkeys.  J. Neurophysiol., 34, pp. 337-347.

- Floresco SB, Grace AA. (2003) Gating of hippocampal-evoked activity in prefrontal cortical neurons by inputs from the mediodorsal thalamus and ventral tegmental area. J Neurosci. May 1;23(9):3930-43.

- Gardner-Medwin, A. R. (1976) The recall of events through the learning of associations between their parts. Proc. R. Soc. London Ser. B 194, 375

- Goldman-Rakic, P.S., Muly, E.C., Williams, G.V. (2000) D1 receptors in prefrontal cells and circuits. Brain Research Reviews 31 295–301

- Grossberg, S. (1973). Contour enhancement, short term memory, and constancies in reverberating neural networks. Studies of Mind and Brain, Chapter 8. Kluwer / Reidel Press.

- Grossberg S, Merrill JRW (1992) A neural network model of adaptively timed reinforcement learning and hippocampal dynamics. Cognitive Brain Research, 1: 3-38.

- Grossberg S, Merrill JRW (1996) The hippocampus and cerebellum in adaptively timed learning, recognition, and movement. Journal of Cognitive Neuroscience 8:257-277.

- Grossberg S. (1982) Processing of expected and unexpected events during conditioning and attention: a psychophysiological theory. Psychol Rev. Sep;89(5):529-72.

- Grossberg S, Schmajuck N.A. (1989). A neural network model of adaptively timed reinforcement learning and hippocampal dynamics. Neural Networks, 2, 79-102.

- Gruber, O., & von Cramon, D. Y. (2001). Domain-specific distribution of working memory processes along human prefrontal and parietal cortices. Neuroimage, 13, S679.

- Gruber, O., & von Cramon, D. Y. (2003). The functional neuroanatomy of human working memory revisited: Evidence from 3T-fMRI studies using classical domain-specific interference tasks. Neuroimage,19, 797–809.

- Hasselmo, M.E., Schnell, E., Barkai, E. (1995) Dynamics of learning and recall at excitatory recurrent synapses and cholinergic modulation in hippocampal region CA3. J. Neurosci. 15(7): 5249-5262.

- Hasselmo, M.E. (1995) Neuromodulation and cortical function: modeling the physiological basis of behavior. Behavioural Brain Research 67, l-27

- Heyder K, Suchan B, Daum I. (2004) Cortico-subcortical contributions to executive control. Acta Psychol (Amst). Feb-Mar;115(2-3):271-89

- Hollerman JR, Schultz W. (1998) Dopamine neurons report an error in the temporal prediction of reward during learning. Nat Neurosci. Aug;1(4):304-9.

- Holscher C. (2003) Time, space and hippocampal functions. Rev Neurosci.;14(3):253-84.

- Hopfield, J. J. (1982) Neural networks as physical systems with emergent computational abilities. Proc. Natl. Acad. Sci. U.S.A. 79, 2554

- Horvitz, J.C. (2002) Dopamine gating of glutamatergic sensorimotor and incentive motivational input signals to the striatum, Behavioural Brain Research 137 65_/74

- Huerta PT, Sun LD, Wilson MA, Tonegawa S. (2000) Formation of temporal memory requires NMDA receptors within CA1 pyramidal neurons. Neuron. Feb;25(2):473-80.

- Honey, R.C., Watt, A., and Good, M. (1998). Hippocampal lesions disrupt an associative mismatch process. J. Neurosci. 18, 2226–2230

- Houk, J.C. (1995) Chp 1: Information Processing in Modular Circuits Linking Basal Ganglia and Cerebral Cortex. In Models of Information Processing in the Basal Ganglia. Houk, J.C., Davis, J.L., and Beiser, D.G. (Eds.) The MIT Press, 3-9.

- Knierim JJ. (2003) Can we have our place and fear it too? Neuron. Feb 6;37(3):372-4.

- Kim, J.J., Fanselow, M.S., (1992). Modality-specific retrograde amnesia of fear. Science 256, 675–677.

- Islas, C.G., and Hablitz, J.J.  (2003) Dopamine Enhances EPSCs in Layer II-III Pyramidal Neurons in Rat Prefrontal Cortex, The Journal of Neuroscience 23, (3): 867-875.

- Lewis, B.R., and O’Donnel, P.O. (2000). Ventral Tegmental Area maintains Pfc membrane potential “up” states in Pyramidal neurons via D1 dopamine receptors, Cerebral cortex, Vol. 10, 1168-1175.

- Lidow, M.S., Williams, G.H., and Goldman-Rakic (1998). The cerebral cortex: a case for a common site of action of antipsychotics, Trends in Pharmacological Sciences, Vol. 19, 136-140.

- Lisman, J.E. (1999) Relating hippocampal circuitry to function: recall of memory sequences by reciprocal dentare-CA3 interactions. Neuron,Vol. 22,233–242

- Luntz-Leybman, V., Bickford, P.C., Freedman, R., (1992). Cholinergic gating of response to auditory stimuli in rat hippocampus. Brain Res. 587, 130–136.

- Mauk, M.D. and Thompson, R.F. (1987) Retention of classically conditioned eyelid responses following acute decerebration. Brain Res. 403, 89–95

- Maren, S., Aharonov, G., Fanselow, M.S., (1997). Neurotoxic lesions of the dorsal hippocampus and Pavlovian fear conditioning in rats. Behav. Brain Res. 88, 261– 274.

- Marr, D. (1971) Simple memory: a theory for archicortex. Philos. Trans. R. Soc. London Ser. B 262, 23.

- McEchron MD, Bouwmeester H, Tseng W, Weiss C, Disterhoft JF. (1998) Hippocampectomy disrupts auditory trace fear conditioning and contextual fear conditioning in the rat. Hippocampus.;8(6):638-46.

- McNaughton, B. L. and Morris, R. G. M. (1987) Hippocampal synaptic enhancement and storage within
a distributed memory system.
Trends Neurosci. 10, 408

- Mishkin M.(1978) Memory in monkeys severely impaired by combined but not by separate removal of amygdala and hippocampus. Nature. May 25;273(5660):297-8

- Moyer, J.R. et al. (1990) Hippocampectomy disrupts trace eye-blink conditioning in rabbits. Behav. Neurosci. 104, 243–252

- Nakazawa K, Quirk MC, Chitwood RA, Watanabe M, Yeckel MF, Sun LD, Kato A, Carr CA, Johnston D, Wilson MA, Tonegawa S. (2002) Requirement for hippocampal CA3 NMDA receptors in associative memory recall. Science. Jul 12;297(5579):211-8.

- Nathe AR, Frank LM. (2003) Making space for rats: from synapse to place code. Neuron. Aug 28;39(5):730-1.

- Oades, R.D., and Halliday, G.M. (1987) Ventral tegmental (A10) system: neurobiology. 1. Anatomy and connectivity. Brain Res. May;434(2):117-65.

- O’Keefe, J., and Recce, M.L. (1993) Phase relationship between place units and the EEG theta rhythm. Hippocampus 3, 317–330.

- O'Keefe, J. and Burgess, N., Donnett, JG, Jeffery, KJ  and Maguire, EA (1998) Place cells, navigational accuracy, and the human hippocampus. Philos Trans R Soc Lond B Biol Sci. 353(1373):1333-40.

- O'Keefe, J. and Burgess, N. (1999) Theta activity, virtual navigation and the human hippocampus. Trends in Cognitive Science 3 403-406.

- O'Reilly RC, Norman KA. (2002) Hippocampal and neocortical contributions to memory: advances in the complementary learning systems framework. Trends Cogn Sci. Dec 1;6(12):505-510.

- O'Reilly RC, Noelle DC, Braver TS, Cohen JD. (2002) Prefrontal cortex and dynamic categorization tasks: representational organization and neuromodulatory control. Cereb Cortex. Mar;12(3):246-57.

- Pavlov, I. P. (1927). Conditioned reflexes. Oxford, UK: Oxford University.

- Pavlov, I. P. (1903/1928). Experimental psychology and psychopathology in animals. In I.P. Pavlov (Aut.), Lectures on conditioned reflexes (Vol. I, pp. 47-60). New York: International.

- Pavlov, I. P. (1906/1928). Scientific study of the so-called psychical processes in the higher animals. In I.P. Pavlov (Aut.), Lectures on conditioned reflexes (Vol. I, pp. 81-96). New York: International.

- Pavlov, I. P. (1928). Lectures on conditioned reflexes (Vol. 1). New York: International.

- Posner, Michael I. (1989) Foundations Of Cognitive Science. Posner, Michael I., Editor: The MIT Press.

- Rolls, E. T. (1989) in The Computing Neuron, R. Durbin, C. Miall, G. Mitchison, Eds. (Addison-Wesley, Wokingham, UK, pp. 125–159).

- Rotenberg, A., Muller, R.U., (1997). Variable place-cell coupling to a continuously viewed stimulus: evidence that the hippocampus acts as a perceptual system. Philos. Trans. R. Soc. Lond., B Biol. Sci. 352, 1505– 1513.

- Sanders MJ, Wiltgen BJ, Fanselow MS. (2003) The place of the hippocampus in fear conditioning.
Eur J Pharmacol. Feb 28;463(1-3):217-23.

- Sawaguchi T, Goldman-Rakic PS (1991) D1 dopamine receptors in prefrontal cortex: involvement in working memory. Science 251:947–950.

- Sawaguchi T, Goldman-Rakic PS (1994) The role of D1-dopamine receptor in working memory: local injections of dopamine antagonists into the prefrontal cortex of rhesus monkeys performing an oculomotor delayed-response task. J Neurophysiol 71:515–528.

- Seamans JK, Floresco SB, Phillips AG (1998) D1 receptor modulation of hippocampal–prefrontal cortical circuits integrating spatial memory with executive functions in the rat. J Neurosci 18:1613–1621.

- Schultz, W., Dayan, P., and Montague, R. R. (1997) A neural substrate of prediction and reward. Science 275: 1593–1599.

- Schultz W, Apicella P, Ljungberg T. (1993) Responses of monkey dopamine neurons to reward and conditioned stimuli during successive steps of learning a delayed response task. J Neurosci, 13:900-913.

- Schultz W, Apicella P, Ljungberg T (1993) Responses of monkey dopamine neurons to reward and conditioned stimuli during successive steps of learning a delayed response task. J Neurosci 13:900 –913.

- Skaggs, W.E., and McNaughton, B.L. (1996). Replay of neuronal firing sequences in rat hippocampus during sleep following spatial experience. Science 271, 1870–1873.

- Sokolov, E.N. (1963) Perception and the orienting reflex. NY: MacMillan.

- Solomon PR, Vander Schaaf ER, Thompson RF, Weisz DJ. (1986) Hippocampus and trace conditioning of the rabbit's classically conditioned nictitating membrane response. Behav Neurosci. Oct; 100(5):729-44.

- Squire LR, Clark RE, Knowlton BJ. (2001) Retrograde amnesia. Hippocampus.;11(1):50-5.

- Suzuki WA. (2003) Declarative versus episodic: two theories put to the test. Neuron. Apr; 38(1):5-7.

- Sutton, R.S. and Barto, A.G. (1981) Towards a modern theory of adaptive networks: expectation and prediction. Psychological Review;Vol. 88, No.2, 135-170.

- Swanson, L.W. (1982) The projections of the ventral tegmental area and adjacent regions: a combined fluorescent retrograde tracer and immunofluorescence study in the rat. Brain Res Bull. Jul-Dec;9(1-6):321-53.

- Vinogradova OS. (2001) Hippocampus as comparator: role of the two input and two output systems of the hippocampus in selection and registration of information. Hippocampus.;11(5):578-98.

- Waelti, P., Dickinson, A. and Schultz, W. (2001) Dopamine responses comply with basic assumptions of formal learning theory. Nature, 412:43-48.

- Watanabe M, Kodama T, Hikosaka K (1997) Increase of extracellular dopamine in primate prefrontal cortex during a working memory task. J Neurophysiol 78:2795–2798.

- Williams GV, Goldman-Rakic PS. (1995) Modulation of memory fields by dopamine D1 receptors in prefrontal cortex. Nature. Aug 17;376(6541):572-5.

- Wood, E.R., Dudchenko, P.A., Eichenbaum, H., (1999). The global record of memory in hippocampal neuronal activity. Nature 397, 616.

- Woodruff-Pak, D.S. et al. (1985) Trace conditioning: abolished by cerebellar nuclear lesions but not lateral cerebellar cortex aspirations. Brain Res. 348, 249–260

- Zahm, D.S. (2000) An integrative neuroanatomical perspective on some subcortical substrates of adaptive responding with emphasis on the nucleus Accumbens. Neuroscience and Biobehavioral Reviews 24, 85–105

- Zipser D. (1986) A model of hippocampal learning during classical conditioning. Behav Neurosci. Oct;100(5):764-76.