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71(4), 1289–1307 (1994)
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and thalamic neurons. Biol. Cybern. 99(4–5), 427–441 (2008)
15. Saraga, F., Wu, C.P., Zhang, L., Skinner, F.K.: Active dendrites and spike propagation in
multicompartmental models of oriens-lacunosum/moleculare hippocampal interneurons. J.
Physiol. 552, 673–689 (2008)
16. Borhegyi, Z., Varga, V., Szilagyi, N., Fabo, D., Freund, T.F.: Phase segregation of medial
septal GABAergic neurons during hippocampal theta activity. J. Neurosci. 24, 8470–8479
(2004)
17. Petersen, C.C.H., Malenka, R.C., Nicoll, R.A., Hopfield, J.J.: All-or none potentiation at
CA3-CA1 synapses. Proc. Natl. Acad. Sci. USA 95, 4732–4737 (1998)
18. Suzuki, W.A.: Making new memories: the role of the hippocampus in new associative learning.
Ann. N. Y. Acad. Sci. 1097, 1–11 (2007)
19. Steinbuch, K.: Non-digital learning matrices as preceptors. Kybernetik 1, 117–124 (1961)
20. Willshaw, D., Buneman, O., Longuet-Higgins, H.: Non-holographic associative memory.
Nature 222, 960–962 (1969)
21. Klausberger, T., et al.: Brain-state- and cell-type-specific firing of hippocampal interneurons
in vivo. Nature 421, 844–848 (2003)
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of dendrite-targeting bistratified cells during hippocampal network oscillations in vivo. Nat.
Neurosci. 7, 41–47 (2004)
