Cannabinoids reveal importance of spike timing coordination in hippocampal function (original) (raw)
References
Freund, T.F., Katona, I. & Piomelli, D. Role of endogenous cannabinoids in synaptic signaling. Physiol. Rev.83, 1017–1066 (2003). ArticleCAS Google Scholar
Ameri, A. The effects of cannabinoids on the brain. Prog. Neurobiol.58, 315–348 (1999). ArticleCAS Google Scholar
Ilan, A.B., Smith, M.E. & Gevins, A. Effects of marijuana on neurophysiological signals of working and episodic memory. Psychopharmacology (Berl.)176, 214–222 (2004). ArticleCAS Google Scholar
Curran, H.V., Brignell, C., Fletcher, S., Middleton, P. & Henry, J. Cognitive and subjective dose-response effects of acute oral delta 9-tetrahydrocannabinol (THC) in infrequent cannabis users. Psychopharmacology (Berl.)164, 61–70 (2002). ArticleCAS Google Scholar
Miller, L.L. & Branconnier, R.J. Cannabis: effects on memory and the cholinergic limbic system. Psychol. Bull.93, 441–456 (1983). ArticleCAS Google Scholar
Squire, L.R., Stark, C.E. & Clark, R.E. The medial temporal lobe. Annu. Rev. Neurosci.27, 279–306 (2004). ArticleCAS Google Scholar
Lichtman, A.H. & Martin, B.R. Delta 9-tetrahydrocannabinol impairs spatial memory through a cannabinoid receptor mechanism. Psychopharmacology (Berl.)126, 125–131 (1996). ArticleCAS Google Scholar
Lichtman, A.H., Dimen, K.R. & Martin, B.R. Systemic or intrahippocampal cannabinoid administration impairs spatial memory in rats. Psychopharmacology (Berl.)119, 282–290 (1995). ArticleCAS Google Scholar
Hampson, R.E. & Deadwyler, S.A. Role of cannabinoid receptors in memory storage. Neurobiol. Dis.5, 474–482 (1998). ArticleCAS Google Scholar
Buonamici, M., Young, G.A. & Khazan, N. Effects of acute delta 9-THC administration on EEG and EEG power spectra in the rat. Neuropharmacology21, 825–829 (1982). ArticleCAS Google Scholar
Constoe, P.F., Jones, B.C. & Chin, L. Delta-9-tetrahydrocannabinol, EEG and behavior:the importance of adaptation to the testing milieu. Pharmacol. Biochem. Behav.3, 173–177 (1975). ArticleCAS Google Scholar
Willinsky, M.D., Loizzo, A. & Longo, V.G. EEG spectral analysis for the evaluation of the central effects of delta6-tetrahydrocannabinol in rabbits. Psychopharmacologia41, 123–126 (1975). ArticleCAS Google Scholar
Hajos, N. et al. Cannabinoids inhibit hippocampal GABAergic transmission and network oscillations. Eur. J. Neurosci.12, 3239–3249 (2000). ArticleCAS Google Scholar
Buzsáki, G., Traub, R.D. & Pedley, T. The cellular synaptic generation of EEG. in Current Practice of Clinical Encephalography (eds. J.S. Ebersole and T.A. Pedley) 1–11 (Lippincott-Williams and Wilkins, Philadelphia, 2003).
Siapas, A.G., Lubenov, E.V. & Wilson, M.A. Prefrontal phase locking to hippocampal theta oscillations. Neuron46, 141–151 (2005). ArticleCAS Google Scholar
Lee, H., Simpson, G.V., Logothetis, N.K. & Rainer, G. Phase locking of single neuron activity to theta oscillations during working memory in monkey extrastriate visual cortex. Neuron45, 147–156 (2005). ArticleCAS Google Scholar
Hasselmo, M.E., Bodelon, C. & Wyble, B.P. A proposed function for hippocampal theta rhythm: separate phases of encoding and retrieval enhance reversal of prior learning. Neural Comput.14, 793–817 (2002). Article Google Scholar
Buzsaki, G. The hippocampo-neocortical dialogue. Cereb. Cortex6, 81–92 (1996). ArticleCAS Google Scholar
Kudrimoti, H.S., Barnes, C.A. & McNaughton, B.L. Reactivation of hippocampal cell assemblies: effects of behavioral state, experience and EEG dynamics. J. Neurosci.19, 4090–4101 (1999). ArticleCAS Google Scholar
Chrobak, J.J. & Buzsaki, G. High-frequency oscillations in the output networks of the hippocampal-entorhinal axis of the freely behaving rat. J. Neurosci.16, 3056–3066 (1996). ArticleCAS Google Scholar
Csicsvari, J., Hirase, H., Mamiya, A. & Buzsaki, G. Ensemble patterns of hippocampal CA3-CA1 neurons during sharp wave-associated population events. Neuron28, 585–594 (2000). ArticleCAS Google Scholar
Nunez, P.L. et al. EEG coherency. I: Statistics, reference electrode, volume conduction, Laplacians, cortical imaging, and interpretation at multiple scales. Electroencephalogr. Clin. Neurophysiol.103, 499–515 (1997). ArticleCAS Google Scholar
Destexhe, A., Rudolph, M. & Pare, D. The high-conductance state of neocortical neurons in vivo. Nat. Rev. Neurosci.4, 739–751 (2003). ArticleCAS Google Scholar
Hampson, R.E. & Deadwyler, S.A. Cannabinoids reveal the necessity of hippocampal neural encoding for short-term memory in rats. J. Neurosci.20, 8932–8942 (2000). ArticleCAS Google Scholar
Lisman, J.E. Bursts as a unit of neural information: making unreliable synapses reliable. Trends Neurosci.20, 38–43 (1997). ArticleCAS Google Scholar
Harris, K.D., Hirase, H., Leinekugel, X., Henze, D.A. & Buzsaki, G. Temporal interaction between single spikes and complex spike bursts in hippocampal pyramidal cells. Neuron32, 141–149 (2001). ArticleCAS Google Scholar
Freund, T.F. & Buzsaki, G. Interneurons of the hippocampus. Hippocampus.6, 347–470 (1996). ArticleCAS Google Scholar
Robson, P. Therapeutic aspects of cannabis and cannabinoids. Br. J. Psychiatry.178, 107–115 (2001). ArticleCAS Google Scholar
Pisanu, A., Acquas, E., Fenu, S. & Di Chiara, G. Modulation of Δ9-THC-induced increase of cortical and hippocampal acetylcholine release by μ opioid and D1 dopamine receptors. Neuropharmacology50, 661–670 (2006). ArticleCAS Google Scholar
Tzavara, E.T., Wade, M. & Nomikos, G.G. Biphasic effects of cannabinoids on acetylcholine release in the hippocampus: site and mechanism of action. J. Neurosci.23, 9374–9384 (2003). ArticleCAS Google Scholar
Egashira, N. et al. Involvement of 5-hydroxytryptamine neuronal system in Δ9-tetrahydrocannabinol-induced impairment of spatial memory. Eur. J. Pharmacol.445, 221–229 (2002). ArticleCAS Google Scholar
Bland, B.H. The physiology and pharmacology of hippocampal formation theta rhythms. Prog. Neurobiol.26, 1–54 (1986). ArticleCAS Google Scholar
Behrens, C.J., van den Boom, L.P., de, H.L., Friedman, A. & Heinemann, U. Induction of sharp wave-ripple complexes in vitro and reorganization of hippocampal networks. Nat. Neurosci.8, 1560–1567 (2005). ArticleCAS Google Scholar
Klausberger, T. et al. Complementary roles of cholecystokinin- and parvalbumin-expressing GABAergic neurons in hippocampal network oscillations. J. Neurosci.25, 9782–9793 (2005). ArticleCAS Google Scholar
Csicsvari, J., Jamieson, B., Wise, K.D. & Buzsaki, G. Mechanisms of gamma oscillations in the hippocampus of the behaving rat. Neuron.37, 311–322 (2003). ArticleCAS Google Scholar
Fisahn, A., Pike, F.G., Buhl, E.H. & Paulsen, O. Cholinergic induction of network oscillations at 40 Hz in the hippocampus in vitro. Nature.394, 186–189 (1998). ArticleCAS Google Scholar
Buzsaki, G. Theta oscillations in the hippocampus. Neuron.33, 325–340 (2002). ArticleCAS Google Scholar
Kawamura, Y. et al. The CB1 cannabinoid receptor is the major cannabinoid receptor at excitatory presynaptic sites in the hippocampus and cerebellum. J. Neurosci.26, 2991–3001 (2006). ArticleCAS Google Scholar
Takahashi, K.A. & Castillo, P.E. The CB1 cannabinoid receptor mediates glutamatergic synaptic suppression in the hippocampus. Neuroscience139, 795–802 (2006). ArticleCAS Google Scholar
Katona, I. et al. Molecular composition of the endocannabinoid system at glutamatergic synapses. J. Neurosci.26, 5628–5637 (2006). ArticleCAS Google Scholar
Hoffman, A.F., Riegel, A.C. & Lupica, C.R. Functional localization of cannabinoid receptors and endogenous cannabinoid production in distinct neuron populations of the hippocampus. Eur. J. Neurosci.18, 524–534 (2003). Article Google Scholar
Traub, R.D., Whittington, M.A., Stanford, I.M. & Jefferys, J.G. A mechanism for generation of long-range synchronous fast oscillations in the cortex. Nature383, 621–624 (1996). ArticleCAS Google Scholar
Givens, B.S. & Olton, D.S. Cholinergic and GABAergic modulation of medial septal area: effect on working memory. Behav. Neurosci.104, 849–855 (1990). ArticleCAS Google Scholar
Mizumori, S.J., Perez, G.M., Alvarado, M.C., Barnes, C.A. & McNaughton, B.L. Reversible inactivation of the medial septum differentially affects two forms of learning in rats. Brain Res.528, 12–20 (1990). ArticleCAS Google Scholar
Olpe, H.-R., Glatt, A. & Bencze, W. Electrophysiological manifestations of supraspinal actions of baclofen. Brain Res. Bull.5, 507–511 (1980). ArticleCAS Google Scholar
Konig, P., Engel, A.K. & Singer, W. Integrator or coincidence detector? The role of the cortical neuron revisited. Trends Neurosci.19, 130–137 (1996). ArticleCAS Google Scholar
Monory, K. et al. The endocannabinoid system controls key epileptogenic circuits in the hippocampus. Neuron51, 455–466 (2006). ArticleCAS Google Scholar
Marsicano, G. et al. CB1 cannabinoid receptors and on-demand defense against excitotoxicity. Science302, 84–88 (2003). ArticleCAS Google Scholar
Bernard, C. et al. Altering cannabinoid signaling during development disrupts neuronal activity. Proc. Natl. Acad. Sci. USA102, 9388–9393 (2005). ArticleCAS Google Scholar
Hazan, L., Zugaro, M. & Buzsaki, G. Klusters, NeuroScope, NDManager: a free software suite for neurophysiological data processing and visualization. J. Neurosci. Methods155, 207–216 (2006). Article Google Scholar