9
Views
3
CrossRef citations to date
0
Altmetric
Original Article

Sequence learning in differentially activated dendrites

Pages 189-209 | Received 02 Apr 2001, Published online: 09 Jul 2009

References

  • Adams P R. The platonic neuron gets the hots. Curr. Biol. 1992; 2: 625–7
  • Agmon-Snir H, Carr C E, Rinzel J. The role of dendrites in auditory coincidence detection. Nature 1998; 393: 268–72
  • Amit D J. Modelling Brain Function: the World of Attractor Neural Networks. Cambridge University Press, Cambridge 1989
  • Ascher P, Nowak L. Electrophysiological studies of NMDA receptors. Trends Neurosci. 1987; 10: 284–8
  • Barrionuevo G, Brown T H. Associative long-term potentiation in hippocampal slices. Proc. Natl Acad. Sci. USA 1983; 80: 7347–51
  • Cervantes-Pérez F. Visuomotor coordination in frogs and toads. The Handbook of Brain Theory and Neural Networks, M A Arbib. MIT Press, Cambridge, MA 1995; 1036–42
  • Collingridge G L, Bliss T V P. NMDA-receptors—their role in long-term potentiation. Trends Neurosci. 1987; 10: 288–93
  • Cotterill R M J. On the unity of conscious experience. J. Consciousness Stud. 1995; 2: 290–312
  • Cotterill R M J. Prediction and internal feedback in conscious perception. J. Consciousness Stud. 1996; 3: 245–66
  • Cotterill R M J. Enchanted Looms: Conscious Networks in Brains and Computers. Cambridge University Press, Cambridge 1998
  • Eilers J, Augustine G J, Konnerth A. Subthreshold synaptic Ca2+ signalling in fine dendrites and spines of cerebellar Purkinje neurons. Nature 1995; 373: 155–8
  • Eilers J, Konnerth A. Dendritic signal integration. Curr. Opin. Neurobiol. 1997; 7: 385–90
  • Grossberg S. Adaptive pattern classification and universal recoding: I. Parallel development and coding of neural feature detectors. Biol. Cybern. 1976; 23: 121–35
  • Grossberg S. Birth of a learning law. Neural Networks 1998; 11, newsletter
  • Hertz J, Krogh A, Palmer R G. Introduction to the Theory of Neural Computation. Santa Fe Institute Lecture Notes, Addison-Wesley, Redwood City, CA 1991; 1
  • Hodgkin A L, Huxley A F. A quantitative description of membrane current and its application to conduction and excitation in nerve. J. Physiol. 1952; 117: 500–44
  • Kupfermann I. Genetic determinants of behaviour. Principles of Neural Science, 3rd edn, E R Kandel, J H Schwartz, T M Jessell. Elsevier, New York 1991; 987–96
  • Lee H, Kim J J. Amygdalar NMDA receptors are critical for new fear learning in previously fear-conditioned rats. J. Neurosci. 1998; 18: 8444–54
  • Levy W B. A sequence predicting CA3 is a flexible associator that learns and uses context to solve hippocampal-like tasks. Hippocampus 1996; 6: 579–90
  • Maren S, Aharonov G, Stote D L, Fanselow M S. N-methyl-D-aspartate receptors in the basolateral amygdala are required for both acquisition and expression of conditional fear in rats. Behav. Neurosci. 1996; 110: 1365–74
  • Mel B W. NMDA-based pattern discrimination in a modeled cortical neuron. Neural Comput. 1992; 4: 502–17
  • Mel B W. Information processing in dendritic trees. Neural Comput. 1994; 6: 1031–85
  • Metzger Y, Lehmann D. Learning temporal sequences by local synaptic changes. Network: Comput. Neural Syst. 1990; 1: 169–88
  • Miserendino M J, Sananes C B, Melia K R, Davis M. Blocking of acquisition but not expression of conditioned fear-potentiated startle by NMDA antagonists in the amygdala. Nature 1990; 345: 716–8
  • Morris R G, Anderson E, Lynch G S, Baudry M. Selective impairment of learning and blockade of long-term potentiation by an N-methyl-D-aspartate receptor antagonist, AP5. Nature 1986; 319: 774–6
  • Nielsen B G (1997) Separability of spatiotemporal memory sequences through dynamic allocation of memory traces at distinct dendritic sites. Consciousness Research Abstracts (Abstracts from The Brain and Self Workshop: Toward a Science of Consciousness, ElsinoreDenmark, 1997, 43
  • Nielsen B G. Memory trace separation in dendrites. Consciousness Cogn. 2000; 9: S99
  • Schiller J, Major G, Koester H J, Schiller Y. NMDA spikes in basal dendrites of cortical pyramidal neurons. Nature 2000; 404: 285–9
  • Segev I, Burke R E, Hines M. Compartmental models of complex neurons. Methods in Neuronal Modeling: From Ions to Networks,2nd edn, C Koch, I Segev. Computational Neuroscience Series, MIT Press, Cambridge, MA 1998; 93–136
  • Segev I. Dendritic processing. The Handbook of Brain Theory and Neural Networks, M A Arbib. MIT Press, Cambridge, MA 1995; 282–9
  • Sohal V S, Hasselmo M E. GABAB modulation improves sequence disambiguation in computational models of hippocampal region CA3. Hippocampus 1998; 8: 171–93
  • Sompolinsky H, Kanter I. Temporal association in asymmetric neural networks. Phys. Rev. Lett. 1986; 57: 2861–4
  • Stevens C F. Cooperativity of unreliable neurons. Curr. Biol. 1994; 4: 268–9
  • Stuart G J, Sakmann B. Active propagation of somatic action potentials into neocortical pyramidal cell dendrites. Nature 1994; 367: 69–72
  • Stuart G, Spruston N, Sakmann B, Häusser M. Action potential initiation and backpropagation in neurons of the mammalian CNS. Trends Neurosci. 1997; 20: 125–31
  • Tanila H. Hippocampal place cells can develop distinct representations of two visually identical environments. Hippocampus 1999; 9: 235–46
  • Wei D, Mei Y, Bagal A, Kao J P Y, Thompson S M, Tang C. Compartmentalized and binary behaviour of terminal dendrites in hippocampal pyramidal neurons. Science 2001; 293: 2272–5
  • Wigström H. A neuron model with learning capability and its relation to mechanisms of association. Kybernetik 1973; 12: 204–15
  • Wilson C J. Basal ganglia. The Synaptic Organization of the Brain,4th edn, G M Shepherd. Oxford University Press, Oxford 1998; 329–75, ch 9
  • Yamada W M, Koch C, Adams P R. Multiple channels and calcium dynamics. Methods in Neuronal Modeling: from Ions to Networks,2nd edn, C Koch, I Segev. Computational Neuroscience Series, MIT Press, Cambridge, MA 1998; 137–70

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.