Dopamine D1/D5 Receptors Gate the Acquisition of Novel Information through Hippocampal Long-Term Potentiation and Long-Term Depression
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[1] L. Nadel,et al. The Hippocampus as a Cognitive Map , 1978 .
[2] Barry L. Jacobs,et al. Response of dopaminergic neurons in cat to auditory stimuli presented across the sleep-waking cycle , 1983, Brain Research.
[3] A. Barnett,et al. Characterization of the binding of 3H-SCH 23390, a selective D-1 receptor antagonist ligand, in rat striatum. , 1984, Life sciences.
[4] R. M. Beckstead,et al. Distribution of D1 and D2 dopamine receptors in the basal ganglia of the cat determined by quantitative autoradiography , 1988, The Journal of comparative neurology.
[5] P. H. Andersen,et al. Dopamine receptor agonists: selectivity and dopamine D1 receptor efficacy. , 1990, European journal of pharmacology.
[6] U. Frey,et al. The effect of dopaminergic D1 receptor blockade during tetanization on the expression of long-term potentiation in the rat CA1 region in vitro , 1991, Neuroscience Letters.
[7] W. Schultz,et al. Responses of monkey dopamine neurons during learning of behavioral reactions. , 1992, Journal of neurophysiology.
[8] E. Kandel,et al. Effects of cAMP simulate a late stage of LTP in hippocampal CA1 neurons. , 1993, Science.
[9] E. Kandel,et al. D1/D5 receptor agonists induce a protein synthesis-dependent late potentiation in the CA1 region of the hippocampus. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[10] J. Lisman,et al. D1/D5 Dopamine Receptor Activation Increases the Magnitude of Early Long-Term Potentiation at CA1 Hippocampal Synapses , 1996, The Journal of Neuroscience.
[11] H. Eichenbaum. Is the rodent hippocampus just for ‘place’? , 1996, Current Opinion in Neurobiology.
[12] M. Bear,et al. Long-term depression in hippocampus. , 1996, Annual review of neuroscience.
[13] H. Miyakawa,et al. Roles of dopamine receptors in long-term depression: enhancement via D1 receptors and inhibition via D2 receptors. , 1996, Receptors & channels.
[14] Denise Manahan-Vaughan,et al. Group 1 and 2 Metabotropic Glutamate Receptors Play Differential Roles in Hippocampal Long-Term Depression and Long-Term Potentiation in Freely Moving Rats , 1997, The Journal of Neuroscience.
[15] J. Horvitz,et al. Burst activity of ventral tegmental dopamine neurons is elicited by sensory stimuli in the awake cat , 1997, Brain Research.
[16] Mark G. Packard,et al. The dopaminergic mesencephalic projections to the hippocampal formation in the rat , 1997, Progress in Neuro-Psychopharmacology and Biological Psychiatry.
[17] U. Frey,et al. Synaptic tagging and long-term potentiation , 1997, Nature.
[18] J. Lisman,et al. D1/D5 Dopamine Receptors Inhibit Depotentiation at CA1 Synapses via cAMP-Dependent Mechanism , 1998, The Journal of Neuroscience.
[19] Mark F Bear,et al. Involvement of a Postsynaptic Protein Kinase A Substrate in the Expression of Homosynaptic Long-Term Depression , 1998, Neuron.
[20] U. Frey,et al. Synaptic tagging: implications for late maintenance of hippocampal long-term potentiation , 1998, Trends in Neurosciences.
[21] D. Manahan‐Vaughan,et al. Novelty acquisition is associated with induction of hippocampal long-term depression. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[22] W. Abraham,et al. A double dissociation within the hippocampus of dopamine D1/D5 receptor and β-adrenergic receptor contributions to the persistence of long-term potentiation , 1999, Neuroscience.
[23] A. Rivera,et al. Dopamine D5 receptors of rat and human brain , 2000, Neuroscience.
[24] D. Manahan‐Vaughan,et al. Requirement of Translation But Not Transcription for the Maintenance of Long-Term Depression in the CA1 Region of Freely Moving Rats , 2000, The Journal of Neuroscience.
[25] D. Manahan‐Vaughan,et al. Depotentiation in the dentate gyrus of freely moving rats is modulated by D1/D5 dopamine receptors. , 2000, Cerebral cortex.
[26] A. Levey,et al. Dopamine D5 receptor immunolocalization in rat and monkey brain , 2000, Synapse.
[27] J. Lisman,et al. Storage, recall, and novelty detection of sequences by the hippocampus: Elaborating on the SOCRATIC model to account for normal and aberrant effects of dopamine , 2001, Hippocampus.
[28] R. Bevins,et al. Dopaminergic and cholinergic antagonism in a novel-object detection task with rats , 2001, Behavioural Brain Research.
[29] T. Abel,et al. Genetic and pharmacological demonstration of a role for cyclic AMP‐dependent protein kinase‐mediated suppression of protein phosphatases in gating the expression of late LTP , 2002, The European journal of neuroscience.
[30] Robert M. Siwiec,et al. Neural Correlates of Successful Encoding Identified Using Functional Magnetic Resonance Imaging , 2002, The Journal of Neuroscience.
[31] R. Bevins,et al. Novel-object place conditioning: behavioral and dopaminergic processes in expression of novelty reward , 2002, Behavioural Brain Research.
[32] P. Nguyen,et al. Postsynaptic Application of a Peptide Inhibitor of cAMP-Dependent Protein Kinase Blocks Expression of Long-Lasting Synaptic Potentiation in Hippocampal Neurons , 2003, The Journal of Neuroscience.
[33] W. K. Cullen,et al. Dopamine-dependent facilitation of LTP induction in hippocampal CA1 by exposure to spatial novelty , 2003, Nature Neuroscience.
[34] R G M Morris,et al. Elements of a neurobiological theory of the hippocampus: the role of activity-dependent synaptic plasticity in memory. , 2003, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[35] D. Manahan‐Vaughan,et al. Regulation of depotentiation and long-term potentiation in the dentate gyrus of freely moving rats by dopamine D2-like receptors. , 2003, Cerebral cortex.
[36] R. Habib,et al. Activation of midbrain structures by associative novelty and the formation of explicit memory in humans. , 2004, Learning & memory.
[37] S. Sajikumar,et al. Late-associativity, synaptic tagging, and the role of dopamine during LTP and LTD , 2004, Neurobiology of Learning and Memory.
[38] G. Ariav,et al. Olfactory learning‐induced increase in spine density along the apical dendrites of CA1 hippocampal neurons , 2004, Hippocampus.
[39] M. W. Brown,et al. Novel spatial arrangements of familiar visual stimuli promote activity in the rat hippocampal formation but not the parahippocampal cortices: a c-fos expression study , 2004, Neuroscience.
[40] Denise Manahan-Vaughan,et al. Hippocampal long-term depression and long-term potentiation encode different aspects of novelty acquisition. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[41] S. Hjorth,et al. In vivo receptor binding, neurochemical and functional studies with the dopamine D-1 receptor antagonist SCH 23390 , 2005, Journal of Neural Transmission.
[42] A. Grace,et al. Dopaminergic modulation of limbic and cortical drive of nucleus accumbens in goal-directed behavior , 2005, Nature Neuroscience.
[43] M. Cattarelli,et al. Learning-stage dependent Fos expression in the rat brain during acquisition of an olfactory discrimination task , 2005, Behavioural Brain Research.
[44] J. Lisman,et al. The Hippocampal-VTA Loop: Controlling the Entry of Information into Long-Term Memory , 2005, Neuron.