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Review Article

Activity-dependent neural network development

Pages 401-423 | Received 27 May 1994, Published online: 09 Jul 2009

References

  • Abbott L F, LeMasson G. Analysis of neuron models with dynamically regulated conductances. Neural Comput. 1993; 5: 823
  • Abbott L F, LeMasson G, Siegel M, Marder E. Activity-dependent modification of intrinsic neuronal properties. Proc. Int. Conf. on Artificial Neural Networks. ICANN'93, Amsterdam. S Gielen, B Kappen. Springer, Berlin 1993; 171–6
  • Aleksander I. Connectionism or weightless neurocomputing?. Artificial Neural Networks 2, Proc. Int. Conf. Artificial Neural Networks. ICANN'91, Espoo. T Kohonen, K Mäkisara, O Simula, J Kangas. Elsevier, Amsterdam 1991; 991–1000
  • Aloyo V J, Zwiers H, Gispen W H. Phosphorylation of B-50 protein by calcium-activated, phospholipid-dependent protein kinase and B-50 protein kinase. J. Neurochem. 1983; 41: 649–53
  • Andersen P A. Physiology of a bidirectional excitatory chemical synapse. J. Neurophysiol. 1985; 53: 821–35
  • Armstrong R C, Montminy M R. Transsynaptic control of gene expression. Ann. Rev. Neurosci. 1993; 16: 17–29
  • Attwell D, Barbour B, Szatkowski M. Nonvesicular release of neurotransmitter. Neuron 1993; 11: 401–7
  • Balázs R, Hack N Jørgensen. Neurobiology of excitatory aminoacids. Drug Research Related to Neuroactive Amino Acids (Alfred Benzon Symposium 32), A Schousboe, N H Diemer, H Kofod. Munksgaard, Copenhagen 1992; 397–410
  • Baptista C A, Hatten M E, Blazeski R, Mason C A. Cell-cell interactions influence survival and differentiation of purified Purkinje cells in vitro. Neuron 1994; 12: 243–60
  • Barinaga M. Learning by diffusion: nitric oxide may spread memories. Science 1994; 263: 466
  • Bartlett E B. Dynamic node architecture learning: an information theoretic approach. Neural Networks 1994; 7: 129–40
  • Bell T. Channel space: towards a self-organisation principle for real neurons. Artificial Neural Networks 1, Proc. Int. Conf. Artificial Neural Networks. ICANN'91, Espoo. T Kohonen, K Mäkisara, O Simula, J Kangas. Elsevier, Amsterdam 1991; 519–24
  • Bennett M R, Robinson J. Growth and elimination of nerve terminals during polyneuronal innervation of muscle cells: a trophic hypothesis. Proc. R. Soc. Lond. (Biol.) 1989; 235: 299–320
  • Beull S J, Coleman P D. Dendritic growth in the aged human brain and failure of growth in senile dementia. Science 1979; 206: 854–6
  • Black I B. Environmental regulation of brain trophic interactions. Int. J. Dev. Neurosci. 1993; 11: 403–10
  • Bonhoeffer T, Staiger V, Aertsen A. Synaptic plasticity in the rat hippocampal slice cultures: local ‘Hebbian’ conjunction of pre- and postsynaptic stimulation leads to distributed synaptic enhancement. Proc. Natl. Acad. Sci. USA 1989; 86: 8113–7
  • Brewer G J, Cotman C W. NMDA receptor regulation of neuronal morphology in cultured hippocampal neurons. Neurosci. Lett. 1989; 99: 268–73
  • Brown T H, Kairiss E W, Keenan C L. Hebbian synapses: biophysical mechanisms and algorithms. Ann. Rev. Neurosci. 1990; 13: 475–511
  • Carpenter G A. Neural network models for pattern recognition and associative memory. Neural Networks 1989; 2: 243–57
  • Clarke P G H. The roles of trophic communication in biological neural networks. Concepts in Neurosci. 1991; 2: 201–19
  • Cohan C S, Connor J A, Kater S B. Electrically and chemically mediated increases in intracellular calcium in neuronal growth cones. J. Neurosci. 1987; 7: 3588–99
  • Cohan C S, Kater S B. Suppression of neurite elongation and growth cone motility by electrical activity. Science 1986; 232: 1638–40
  • Coleman P D, Flood D G. Dendritic proliferation in the aging brain as a compensatory repair mechanism. Prog. Brain Res. 1986; 70: 227–37
  • Condorelli D F, Dell'Albani P, Aronica E, Genazzani A A, Casabona G, Corsaro M, Balázs R, Nicoletti F. Growth conditions differentially regulate the expression of alpha-amino-3-hydroxy-5-methylisoxazole-4-propionate (AMPA) receptor subunits in cultured neurons. J. Neurochem. 1993; 61: 2133–9
  • Constantine-Paton M. NMDA receptor as a mediator of activity-dependent synaptogenesis in the developing bra. Cold Spring Harbor Symposia on Quantitative Biology. Cold Spring Harbor Laboratory Press. 1990; LV: 431–43
  • Coolen A C C, Noest A J, De Vries G B. Modelling chemical modulation of neural processes. Netw., Comput. Neural Syst. 1993; 4: 101–16
  • Corner M A. Brainstem control of behavior: ontogenetic aspects. Brainstem Mechanisms of Behavior, W R Klemm, R P Vertes. Wiley, New York 1990; 239–66
  • Corner M A, Ramakers G J A. Spontaneous firing as an epigenetic factor in brain development-physiological consequences of chronic tetrodotoxin and picrotoxin exposure on cultured rat neocortex neurons. Dev. Brain Res. 1992; 65: 57–64
  • Craig A M, Banker G. Neuronal polarity. Ann. Rev. Neurosci. 1994; 17: 267–310
  • Curcio C A, Buell S J, Coleman P D. Morphology of the aging nervous system. The Aging Motor System (Advances in Neurogerontology 3), J A Mortimer, F J Pirozzolo, G J Maletta. Praeger, New York 1982; 7–35
  • De Boer R J, Perelson A S. Size and connectivity as emergent properties of a developing immune network. J. Theor. Biol. 1991; 149: 381–424
  • Dekker L V, De Graan P N E, Versteeg D H G, Oestreicher A B, Gispen W H. Phosphorylation of B-50 (GA P-43) is correlated with neurotransmitter release in rat hippocampal slices. J. Neurochem. 1989; 52: 24–30
  • Dotti C G, Sullivan C A, Banker G A. The establishment of polarity by hippocampal neurons in culture. J. Neurosci. 1988; 8: 1454–68
  • Edelman G M, Cunningham B A. Place-dependent cell adhesion, process retraction, and spatial signaling in neural morphogenesis. Cold Spring Harbor Symposia on Quantitative Biology. Cold Spring Harbor Laboratory Press. 1990; LV: 303–18
  • Fahner G, Eckmiller R. Structural adaptation of parsimonious higher-order neural classifiers. Neural Networks 1994; 7: 279–89
  • Farmer J D. A rosetta stone for connectionism. Physica 1990; 42D: 153–87
  • Fields R D, Neale E A, Nelson P G. Effects of patterned electrical activity on neurite outgrowth from mouse sensory neurons. J. Neurosci. 1990; 10: 2950–64
  • Fields R D, Nelson P G. Activity-dependent development of the vertebrate nervous system. Int. Rev. Neurobiol. 1992; 34: 133–214
  • Finkel L H, Edelman G M. Interaction of synaptic modification rules within populations of neurons. Proc. Natl. Acad. Sci. USA 1985; 82: 1291–5
  • Franklin J L, Johnson E M. Suppression of programmed neuronal death by sustained elevation of cytoplasmic calcium. Trends Neurosci. 1992; 15: 501–8
  • Fritzke B. Let it grow-self-organizing feature maps with problem dependent cell structure. Artificial Neural Networks 2, Proc. Int. Conf. Artificial Neural Networks. ICANN'91, Espoo. T Kohonen, K Mäkisara, O Simula, J Kangas. Elsevier, Amsterdam 1991; 403–8
  • Fukushima K. Neocognitron: a self-organising neural network for a mechanism of pattern recognition unaffected by shift in position. Biol. Cybern. 1980; 36: 193–202
  • Galli-Resta L, Resta G. A quantitative model for the regulation of naturally occurring cell death in the developing vertebrate nervous system. J. Neurosci. 1992; 12: 4586–94
  • Gao W-Q, Heintz N, Hatten M E. Cerebellar granule cell neurogenesis is regulated by cell-cell interactions in vitro. Neuron 1991; 6: 705–15
  • Ghosh A, Carnahan J, Greenberg M E. Requirement for BDNF in activity-dependent survival of cortical neurons. Science 1994; 263: 1618–23
  • Goodhill G J, Willshaw D J. Application of the elastic net algorithm to the formation of ocular dominance stripes. Netw., Comput. Neural Syst. 1990; 1: 41–59
  • Goslin K, Banker G. Experimental observations on the development of polarity by hippocampal neurons in culture. J. Cell Biol. 1989; 108: 1507–16
  • Goslin K, Banker G. Rapid changes in the distribution of GAP-43 correlate with the expression of neuronal polarity during normal development and under experimental conditions. J. Cell Biol. 1990; 110: 1319–31
  • Grumbacher-Reinert S, Nicholls J. Influence of substrate on retraction of neurites following electrical activity of leech Retzius cells in culture. J. Exp. Biol. 1992; 167: 1–14
  • Guthrie P B, Mattson M P, Mills L, Kater S B. Calcium homeostasis in molluscan and mammalian neurons: neuron-selective set-point of calcium rest concentration. Soc. Neurosci. Abstr. 1988; 14: 582
  • Harris W A. Neural activity and development. Ann. Rev. Physiol. 1981; 43: 689–710
  • Hawkins R D, Kandel E R, Siegelbaum S A. Learning to modulate transmitter release: themes and variations in synaptic plasticity. Ann. Rev. Neurosci. 1993; 16: 625–65
  • Hebb D O. The Organization of Behavior: A Neuropsychological Theory. Wiley, New York 1949
  • Hentschel H G E, Fine A. Diffusion-regulated control of cellular dendritic morphogenesis. Nature 1994a, submitted
  • Hentschel H G E, Fine A. Instabilities in cellular dendritic morphogenesis. Phys. Rev. Lett. 1994b, submitted
  • Hess D T, Patterson S I, Smith D S, Skene J H P. Neuronal growth cone collapse and inhibition of protein fatty acylation by nitric oxide. Nature 1993; 366: 562–5
  • Hirose Y, Yamashita K, Hijiya S. Back-propagation algorithm which varies the number of hidden neurons. Neural Networks 1991; 4: 61–6
  • Hockfield S, Kalb R G. Activity-dependent structural changes during neuronal development. Current Opinion in Neurobiol. 1993; 3: 87–92
  • Hogeweg P, Hesper B. Knowledge seeking in variable structure models. Modelling and Simulation Methodology in the Artificial Intelligence Era, M S Elzas, T I Ören, B P Zeigler. North-Holland, Amsterdam 1986; 227–43
  • Jacobson M. Developmental Neurobiology. Plenum, New York 1991; 8, ch 5
  • Jessell T M. Cell migration and axon guidance. Principles of Neural Science, E R Kandel, J H Schwartz, T M Jessell. Prentice-Hall, Englewood Cliffs, NJ 1991; 908–28
  • Johnson E M, Deckwerth T L. Molecular mechanisms of developmental neuronal death. Ann. Rev. Neurosci. 1993; 16: 31–46
  • Jones E G. GABAergic neurons and their role in cortical plasticity in primates. Cereb. Cortex 1993; 3: 361–72
  • Kaczmarek L K, Levitan I B. Neuromodulation: The Biochemical Control of Neuronal Excitability. Oxford University Press, Oxford 1987
  • Kaneko K. Relevance of dynamic clustering to biological networks. Physica 1994, D in press
  • Kaneko K, Yomo T. Cell division, differentiation and dynamic clustering. Physica 1994, D in press
  • Kasai H, Petersen O H. Spatial dynamics of second messengers: IP3 and cAMP as long-range and associative messengers. Trends Neurosci. 1994; 17: 95–101
  • Kater S B, Guthrie P B. Neuronal growth cone as an integrator of complex environmental information. Cold Spring Harbor Symposia on Quantitative Biology. Cold Spring Harbor Laboratory Press. 1990; LV: 359–70
  • Kater S B, Guthrie P B, Mills L R. Integration by the neuronal growth cone: a continuum from neuroplasticity to neuropathology. Progress in Brain Research, P D Coleman, G A Higgins, C H Phelps, 1990; 86: 117–28, Molecular and Cellular Mechanisms of Neuronal Plasticity in Normal aging and Alzheimer's disease
  • Kater S B, Mattson M P, Cohan C, Connor J. Calcium regulation of the neuronal growth cone. Trends Neurosci. 1988; 11: 315–21
  • Kater S B, Mills L R. Regulation of growth cone behaviour by calcium. J Neurosci. 1991; 11: 891–9
  • Katz P S, Getting P A, Frost W N. Dynamic neuromodulation of synaptic strength intrinsic to a central pattern generator circuit. Nature 1994; 367: 729–31
  • Kerszberg M, Dehaene S, Changeux J-P. Stabilization of complex input-output functions in neural clusters formed by synapse selection. Neural Networks 1992; 5: 403–13
  • Klopf. The Hedonistic Neuron. 1982
  • Kohonen T. Artificial neural networks: models, paradigms, or methods?. Artificial Neural Networks 2, Proc. Int. Conf. on Artificial Neural Networks. ICANN'92, Brighton. I Aleksander, J Taylor. Elsevier, Amsterdam 1992; 3–10
  • Koike T, Tanaka S. Evidence that nerve growth factor dependence of sympathetic neurons for survival in vitro may de determined by levels of cytoplasmic free Ca. Proc. Natl. Acad. Sci. USA 1991; 88: 3892–6
  • Landmesser L, Dahm L, Tang J, Rutishauser U. Polysialic acid as a regulator of intramuscular nerve branching during embryonic development. Neuron 1990; 4: 655–67
  • LeMasson G, Marder E, Abbott L F. Activity-dependent regulation of conductances in model neurons. Science 1993; 259: 1915–7
  • Letourneau P C. Integrins and n-Cadherin are adhesive molecules involved in growth cone migration. The Nerve Growth Cone, P C Letourneau, S B Kater, E R Macagno. Raven, New York 1991; 181–93
  • Liestøl K, Mæhlen J, Njå A. A model of selective synapse formation in sympathetic ganglia. J. Neurobiol. 1993; 24: 263–79
  • Linden R. The survival of developing neurons: a review of afferent control. Neuroscience 1994; 58: 671–82
  • Lindsay R M, Wiegand S J, Altar C A, DiStefano P S. Neurotrophic factors: from molecule to man. Trends Neurosci. 1994; 17: 182–9
  • Lipton S A, Kater S B. Neurotransmitter regulation of neuronal outgrowth, plasticity and survival. Trends Neurosci. 1989; 12: 265–70
  • Lu B, Yokoyama M, Dreyfus C F, Black I B. Depolarizing stimuli regulate nerve growth factor gene expression in cultured hippocampal neurons. Proc. Natl. Acad. Sci. USA 1991; 88: 6289–92
  • Mattson M P. Neurotransmitters in the regulation of neuronal cytoarchitecture. Brain Res. Rev. 1988; 13: 179–212
  • Mattson M P. Calcium as sculptor and destroyer of neural circuitry. Exp. Gerontol. 1992; 27: 29–49
  • Mattson M P, Dou P, Kater S B. Outgrowth-regulation actions of glutamate in isolated hippocampal pyramidal neurons. J. Neurosci. 1988; 8: 2087–100
  • Mattson M P, Kater S B. Excitatory and inhibitory neurotransmitters in the generation and degeneration of hippocampal neuroarchitecture. Brain Res. 1989; 478: 337–48
  • Mattson M P, Murain M, Guthrie P B. Localized calcium influx orients axon formation in embryonic hippocampal pyramidal neurons. Dev. Brain Res. 1990; 52: 201–9
  • Mattson M P, Tomaselli K J, Rydel R E. Calcium-destabilizing and neurodegenerative effects of aggregated beta-amyloid peptide are attenuated by basic FGF. Brain Res. 1993; 621: 35–49
  • McCaig C D. Nerve branching is induced and oriented by a small applied electric field. J. Cell Sci. 1990a; 95: 605–16
  • McCaig C D. Nerve growth in a small applied electric field and the effects of pharmacological agents on rate and orientation. J. Cell Sci. 1990b; 95: 617–22
  • McCobb D P, Haydon P G, Kater S B. Dopamine and serotonin inhibition of neurite elongation of different identified neurons. J. Neurosci. Res. 1988; 19: 19–26
  • Memo M, Bovolin P, Costa E, Grayson D R. Regulation of GABA receptor subunit expression by activation of N-Methyl-d-aspartate-selective glutamate receptors. Mol. Pharmacol. 1991; 39: 599–603
  • Miller K D, Keller J B, Stryker M P. Ocular dominance column development: analysis and computation. Science 1989; 245: 605–15
  • Montague P R, Gally J A, Edelman G M. Spatial signaling in the development and function of neural connections. Cereb. Cortex 1991; 1: 199–220
  • Müller C M. A role for glial cells in activity-dependent central nervous plasticity? Review and hypothesis. Int. Rev. Neurobiol. 1992; 34: 215–81
  • Nabhan T M, Zomaya A Y. Toward generating neural network structures for function approximation. Neural Networks 1994; 7: 89–99
  • Nedergaard M. Direct signaling from astrocytes to neurons in cultures of mammalian brain cells. Science 1994; 263: 1768–71
  • Neely M D. Role of substrate and calcium in neurite retraction of leech neurons following depolarization. J. Neurosci. 1993; 13: 1292–301
  • Obermayer K, Ritter H, Schulten K. A principle for the formation of the spatial structure of cortical feature maps. Proc. Natl. Acad. Sci. USA 1990; 87: 8345–9
  • Odri S V, Petrovacki D P, Krstonosic A. Evolutional development of a multilevel neural network. Neural Networks 1993; 6: 583–95
  • Oppenheim R W. Cell death during development of the nervous system. Ann. Rev. Neurosci. 1991; 14: 453–501
  • Oppenheim R W, Schwartz L M, Shatz C J. Neuronal death, a tradition of dying. J. Neurobiol. 1992; 23: 1111–5
  • Pakdaman K, van Ooyen A, Houweling A R, Vibert J-F. Hysteresis in a two-neuron network: basic characteristics and physiological implications. Artificial Neural Networks 1, Proc. Int. Conf. on Artificial Neural Networks. ICANN'94, Sorrento. M Marinaro, P G Morasso. Springer, Berlin 1994; 162–5
  • Purves D. Body and Brain: A Trophic Theory of Neural Connections. Harvard University Press, Cambridge, MA 1988
  • Purves D, Hadley R D, Voyvodic J T. Dynamic changes in the dendritic geometry of individual neurons visualized over periods of up to three months in the superior cervical ganglion of living mice. J. Neurosci. 1986; 6: 1051–60
  • Purves D, Lichtman J W. Elimination of synapses in the developing nervous system. Science 1980; 210: 153–7
  • Purves D, Voyvodic J T. Imaging mammalian nerve cells and their connections over time in living animals. Trends Neurosci. 1987; 10: 398–404
  • Raff M C. Social controls on cell survival and cell death. Nature 1992; 356: 397–400
  • Rasmussen C E, Willshaw D J. Presynaptic and postsynaptic competition in models for the development of neuromuscular connections. Biol. Cybern. 1993; 68: 409–19
  • Refenes A N, Vithlani S. Constructive learning by specialisation. Artificial Neural Networks 2, Proc. Int. Conf. Artificial Neural Networks. ICANN'91, Espoo. T Kohonen, K Mäkisara, O Simula, J Kangas. Elsevier, Amsterdam 1991; 923–9
  • Regehr W, Kehoe J, Ascher P, Armstrong C. Synaptically triggered action potentials in dendrites. Neuron 1993; 11: 145–51
  • Romaniuk S G, Hall L O. Divide and conquer neural networks. Neural Networks 1993; 6: 1105–16
  • Sargent P B. What distinguishes axons from dendrites? Neurons do know more than we do. Trends Neurosci. 1989; 12: 203–5
  • Schilling K, Dickinson M H, Connor J A, Morgan J I. Electrical activity in cerebellar cultures determines Purkinje cell dendritic growth patterns. Neuron 1991; 7: 891–902
  • Schoepp D D, Bockaert J, Sladeczek F. Pharmacological and functional characteristics of metabotropic excitatory amino acid receptors. Trends Pharmacol. Sci. 1990; 11: 508–15
  • Schuman E M, Madison D V. Locally distributed synaptic potentiation in the hippocampus. Science 1994a; 263: 532–6
  • Schuman E M, Madison D V. Nitric oxide and synaptic function. Ann. Rev. Neurosci. 1994b; 17: 153–83
  • Schwab M E, Kapfhammer J P, Bandtlow C E. Inhibitors of neurite growth. Ann. Rev. Neurosci. 1993; 16: 565–95
  • Schwartz J H, Kandel E R. Synaptic transmission mediated by second messengers. Principles of Neural Science, E R Kandel, J H Schwartz, T M Jessell. Prentice-Hall, Englewood Cliffs, NJ 1991; 173–93
  • Seil F, Drake-Baumann R. Reduced cortical inhibitory synaptogenesis in organotypic cerebellar cultures developing in the absence of neuronal activity. J. Comp. Neurol. 1994; 342: 366–77
  • Shatz C J. Impulse activity and the patterning of connections during CNS development. Neuron 1990; 5: 745–56
  • Shaw C, Lanius R A. Cortical AMPA receptors: age-dependent regulation by cellular depolarization and agonist stimulation. Dev. Brain Res. 1992; 68: 225–31
  • Shaw C, Scarth B A. Characterization and differential regulation of GABAA and benzodiazepine receptors in rat neocortex. Mol. Brain Res. 1991; 11: 273–82
  • Shaw C, van Huizen F, Cynader M S, Wilkinson M. A role for potassium channels in the regulation of cortical muscarine acetylcholine receptors in an in vitro slice preparation. Mol. Brain Res. 1989; 5: 71–83
  • Shepherd G M. The Synaptic Organization of the Brain. Oxford University Press, Oxford 1990
  • Shepherd G M. Foundations of the Neuron Doctrine. Oxford University Press, Oxford 1991
  • Smith S J. Just a chemical attraction. Nature 1994; 368: 101–2
  • Spitzer N C. A developmental handshake: neuronal control of ionic currents and their control of neuronal differentiation. J. Neurobiol. 1991; 22: 659–763
  • Stryker M P. Summary: the brain in 1990. Cold Spring Harbor Symposia on Quantitative Biology. Cold Spring Harbor Laboratory Press. 1990; LV: 1049–67
  • Stuart G J, Sakmann B. Active propagation of somatic action potentials into neocortical pyramidal cell dendrites. Nature 1994; 367: 69–72
  • Sussdorf W S, Campenot R B. Influence of the extracellular potassium environment on neurite growth in sensory neurons, spinal cord neurons and sympathetic neurons. Dev. Brain Res. 1986; 25: 43–52
  • Swindale N V. A model for the formation of ocular dominance stripes. Proc. R Soc. Lond. (Biol.) 1980; 208: 243–64
  • Tanaka S. Theory of self-organization of cortical maps: mathematical framework. Neural Networks 1990; 3: 625–40
  • Tancredi V, D'Arcangelo G, Mercanti D, Calissano P. Nerve growth factor inhibits the expression of long-term potentiation in hippocampal slices. NeuroReport 1993; 4: 147–50
  • Tawel R. Does the neuron ‘learn’ like the synapse?. Advances in Neural Information Processing Systems 1, D S Touretzky. Morgan Kaufmann, San Mateo, CA 1992; 169–76
  • Thoenen H. The changing scene of neurotrophic factors. Trends Neurosci. 1991; 14: 165–70
  • Turrigiano G, Abbott L F, Marder E. Activity-dependent changes in the intrinsic properties of cultured neurons. Science 1994; 264: 974–7
  • Uylings H B M, Kuypers K, Diamond M C, Veltman W A M. Effects of differential environments on plasticity of dendrites of cortical pyramidal neurons in adult rats. Exp. Neurol. 1978; 62: 658–77
  • van Huizen F. Significance of bioelectric activity for synaptic network formation. PhD Thesis. University of Amsterdam. 1986
  • van Huizen F, Romijn H J, Habets A M. M. C. Synaptogenesis in rat cerebral cortex is affected during chronic blockade of spontaneous bioelectric activity by tetrodotoxin. Dev. Brain Res. 1985; 19: 67–80
  • van Huizen F, Romijn H J, Habets A M, M C, van den Hooff P. Accelerated neural network formation in rat cerebral cortex cultures chronically disinhibited with picrotoxin. Exp. Neurol. 1987; 97: 280–8
  • van Ooyen A, Nienhuis B. Pattern recognition in the neocognitron is improved by neuronal adaptation. Biol. Cybern. 1993; 70: 47–53
  • van Ooyen A, van Pelt J. Implications of activity-dependent neurite outgrowth for developing neural networks. Proc. Int. Conf. on Artificial Neural Networks. ICANN'93, Amsterdam. S Gielen, B Kappen. Springer, Berlin 1993; 177–82
  • van Ooyen A, van Pelt J. Activity-dependent outgrowth of neurons and overshoot phenomena in developing neural networks. J. Theor. Biol. 1994a; 167: 27–43
  • van Ooyen A, van Pelt J. Implications of activity-dependent neurite outgrowth for neuronal morphology and network development. J. Theor. Biol. 1994b, in press
  • van Ooyen A, van Pelt J. Complex patterns of oscillations in a neural network model with activity-dependent outgrowth. Artificial Neural Networks 1, Proc. Int. Conf. on Artificial Neural Networks. ICANN'94, Sorrento. M Marinaro, P G Morasso. Springer, Berlin 1994c; 146–9
  • van Pelt J, Corner M A, Uylings H B M, Lopes da Silva F H. The Self-Organizing Brain: from growth cones to functional networks. Progress in Brain Research, J van Pelt, M A Corner, H B M Uylings, F H Lopes da Silva. Elsevier, Amsterdam 1994; 102
  • van Pelt J, Uylings H B M, Verwer R W H, Pentney R J, Woldenberg M J. Tree asymmetry-a sensitive and practical measure for binary topological trees. Bull. Math. Biol. 1992; 54: 759–84
  • van Veen M, van Pelt J. A model for outgrowth of branching neurites. J. Theor. Biol. 1992; 1–23
  • van Veen M, van Pelt J. Neuritic growth rate described by modeling microtubule dynamics. Bull. Math. Biol. 1994; 56: 249–73
  • Von der Malsburg C. Development of ocularity domains and growth behaviour of axon terminals. Biol. Cybern. 1979; 32: 49–62
  • Von der Malsburg C, Singer W. Principles of cortical network organization. Neurobiology of Neocortex, P Rakic, W Singer. Wiley, New York 1988; 69–99
  • Young S H, Poo M. Spontaneous release of transmitter from growth cones of embryonic neurons. Nature 1983; 305: 634–7
  • Zafra F, Hengerer B, Leibrock J, Theoen H, Lindholm D. Activity dependent regulation of BDNF and NGF mRNAs in the rat hippocampus is mediated by non-NMDA glutamate receptors. EMBO Journal 1990; 9: 3545–50
  • Zohary E, Celebrini S, Britten K H, Newsome W T. Neuronal plasticity that underlies improvement in perceptual performance. Science 1994; 263: 1289–92
  • Zheng J Q, Felder M, Connor J A, Poo M. Turning of nerve growth cones induced by neurotransmitters. Nature 1994; 368: 140–4

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