Nervenheilkunde 2011; 30(05): 351-355
DOI: 10.1055/s-0038-1627820
Geist & Gehirn
Schattauer GmbH

Synapsen markieren zum Konsolidieren

M Spitzer
Further Information

Publication History

Publication Date:
23 January 2018 (online)

 

 
  • Literatur

  • 1 Barco A, Lopez Mde Armentia, Alarcon JM. Synapse-specific stabilization of plasticity processes: the synaptic tagging and capture hypothesis revisited 10 years later. Neurosci Biobehav Rev 2008; 32: 831-51.
  • 2 Bhardwaj RD. et al. Neocortical neurogenesis in humans is restricted to development. PNAS 2006; 103: 12564-8.
  • 3 Bliss T, Lømo T. Long-lasting potentiation of synaptic transmission in the dentate area of the anaesthetized rabbit following stimulation of the perforant path. J Physiol (Lond) 1973; 232: 331-56.
  • 4 Dehaene S. The number sense. Oxford: University Press; 1999
  • 5 Eichenbaum H. Hippocampus: Cognitive processes and neural representations that underlie declarative memory. Neuron 2004; 44: 109-20.
  • 6 Eisenberger NI, Lieberman MD, Williams KD. Does rejection hurt? An fMRI study of social exclusion. Science 2003; 302: 290-292.
  • 7 Engert F, Bonhoeffer T. Dendritic spine changes associated with hippocampal long-term synaptic plasticity. Nature 1999; 399: 66-70.
  • 8 Frankland PW, Bontempi B. The organization of recent and remote memory. Nature Reviews Neuroscience 2005; 06: 119-130.
  • 9 Frey U. Synaptic tagging – ein genereller Mechanismus der neuronalen Informationsspeicherung?. Spektrum der Wissenschaft 1997; 10: 16-9.
  • 10 Frey U, Morris RG. Synaptic tagging and long-term potentiation. Nature 1997; 385: 533-6.
  • 11 Frey U, Morris RG. Synaptic tagging: implications for late of hippocampal long-term potentiation. TINS 1997; 21: 181-8.
  • 12 Fuster JM. The prefrontal cortex. 4th ed. London: Academic Press 2008.;
  • 13 Hofer SB. et al. Experience leaves a lasting structural trace in cortical circuits. Nature 2009; 457: 313-7.
  • 14 Kempermann G. Aktivitätsabhängige Regulation von Neurogenese im erwachsenen Hippocampus. Habilitationsschrift. Berlin: Humboldt-Universität; 2002
  • 15 Kempermann G. Adult neurogenesis 2. Oxford: University Press; 2001
  • 16 Lesburguères E. et al. Early tagging of cortical networks is required fort he formation of enduring associative memory. Science 2011; 331: 924-8.
  • 17 Lømo T. The discovery of long term potentiation. Phil Trans R Soc Lond B 2003; 358: 617-20.
  • 18 Marr D. Simple memory: A theory for archicortex. Proceedings of the Royal Society, London, B 1971; 262 (841) 23-81.
  • 19 Maviel T. et al. Sites of neocortical reorganization critical for remote spatial memory. Science 2004; 305: 96-9.
  • 20 McClelland JL. et al. Why there are complementary learning systems in the hippocampus and neocortex: Insights from the success and failures of connectionist models of learning and memory. Psychological Review 1995; 102: 419-57.
  • 21 Rakic P. No more cortical neurons for you. Science 2006; 313: 928-9.
  • 22 Rizzolatti G, Arbib MA. Language within our grasp. TINS 1998; 21: 188-94.
  • 23 Spitzer M. Geist im Netz. Modelle für Lernen, Denken und Handeln. Heidelberg: Spektrum Akademischer Verlag; 1996
  • 24 Spitzer M. Lernen. Heidelberg: Spektrum Akademischer Verlag; 2002
  • 25 Squire LR. Rapid consolidation. Science 2007; 316: 57-8.
  • 26 Squire LR, Bayley PJ. The neuroscience of remote memory. Current Opinion in Neurobiology 2007; 17: 185-196.
  • 27 Sweatt JD. Creating stable memories. Science 2011; 331: 869-70.
  • 28 Teyler TJ, Rudy JW. The hippocampal indexing theory and episodic memory: Updating the index. Hippocampus 2007; 17: 1158-69.
  • 29 Wang DO. et al. Synapseand stimulus-specific local translation during long-term neuronal plasticity. Science 2009; 324: 1536-40.
  • 30 Wittenberg GM, Tsien JZ. An emerging molecular and cellular framework for memory processing by the hippocampus. Trends Neurosci 2002; 25: 501-5.
  • 31 Zald DH, Rauch SL. The orbitofrontal cortex. Oxford: University Press; 2006
  • 32 Gluck MA, Myers CE. Gateway to memory. Cambridge, MA: MIT Press; 2001
  • 33 Tambini A, Ketz N, Davachi L. Enhanced brain correlations during rest are related to memory for recent experiences. Neuron 2010; 65: 280-90.
  • 34 Toni N. et al. LTP promotes formation of multiple spine synapses between a single axon terminal and a dendrite. Nature 1999; 402: 421-425.
  • 35 Trachtenberg JT. et al. Long-term in vivo imaging of experience-dependent synaptic plasticity in adult cortex. Nature 2002; 420: 788-794.
  • 36 Okada D, Ozawa F, Inokuchi K. Input-specific spine entry of soma-derived Vesl-1S protein conforms to synaptic tagging. Science 2009; 324: 904-909.