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Nigel Daw
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Research Profile (preview)
Anatomy
Living Beings
Physiology
Chemicals & Drugs
Phenomena
Procedures
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Network (preview)
13
Reid, SN
10
Beaver, Christopher
8
Fischer, Quentin
6
Ji, Qinghua
6
Yang, Yupeng
5
Rao, Yan
3
Jin, Xiaotao
3
Jin, XT
2
McKnight, Stanley
2
Romano, Carmelo
1
Sato, Hiromichi
1
Shimegi, Satoshi
1
Strittmatter, Stephen
1
Wei, Ji Ye
1
Zhang, Ying
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Publications
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All Publications
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2009: Daw Nigel W
The foundations of development and deprivation in the visual system.
The Journal of physiology 2009;587(Pt 12):2769-73.
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2009: Daw Nigel W
Critical periods: motion sensitivity is early in all areas.
Current biology : CB 2009;19(8):R336-8.
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2005: McGee Aaron W; Yang Yupeng; Fischer Quentin S; Daw Nigel W; Strittmatter Stephen M
Experience-driven plasticity of visual cortex limited by myelin and Nogo receptor.
Science (New York, N.Y.) 2005;309(5744):2222-6.
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2005: Yang Yupeng; Fischer Quentin S; Zhang Ying; Baumgärtel Karsten; Mansuy Isabelle M; Daw Nigel W
Reversible blockade of experience-dependent plasticity by calcineurin in mouse visual cortex.
Nature neuroscience 2005;8(6):791-6.
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2004: Daw Nigel; Rao Yan; Wang Xue-Feng; Fischer Quentin; Yang Yupeng
LTP and LTD vary with layer in rodent visual cortex.
Vision research 2004;44(28):3377-80.
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2004: Rao Yan; Daw Nigel W
Layer variations of long-term depression in rat visual cortex.
Journal of neurophysiology 2004;92(5):2652-8.
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2004: Fischer Quentin S; Beaver Christopher J; Yang Yupeng; Rao Yan; Jakobsdottir Klara B; Storm Daniel R; McKnight G Stanley; Daw Nigel W
Requirement for the RIIbeta isoform of PKA, but not calcium-stimulated adenylyl cyclase, in visual cortical plasticity.
The Journal of neuroscience : the official journal of the Society for Neuroscience 2004;24(41):9049-58.
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2004: Rao Yan; Fischer Quentin S; Yang Yupeng; McKnight G Stanley; LaRue Adrienne; Daw Nigel W
Reduced ocular dominance plasticity and long-term potentiation in the developing visual cortex of protein kinase A RII alpha mutant mice.
The European journal of neuroscience 2004;20(3):837-42.
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2003: Shimegi Satoshi; Fischer Quentin S; Yang Yupeng; Sato Hiromichi; Daw Nigel W
Blockade of cyclic AMP-dependent protein kinase does not prevent the reverse ocular dominance shift in kitten visual cortex.
Journal of neurophysiology 2003;90(6):4027-32.
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2003: Wang X F; Daw N W
Long term potentiation varies with layer in rat visual cortex.
Brain research 2003;989(1):26-34.
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2003: Liu Shaolin; Rao Yan; Daw Nigel
Roles of protein kinase A and protein kinase G in synaptic plasticity in the visual cortex.
Cerebral cortex (New York, N.Y. : 1991) 2003;13(8):864-9.
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2002: Beaver Chris J; Fischer Quentin S; Ji Qinghua; Daw Nigel W
Orientation selectivity is reduced by monocular deprivation in combination with PKA inhibitors.
Journal of neurophysiology 2002;88(4):1933-40.
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2002: Beaver C J; Ji Q H; Jin X T; Daw N W
Activation of Group III mGluRs increases the activity of neurons in area 17 of the cat.
Visual neuroscience 2002;19(3):355-64.
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2002: Wei Ji Ye; Jin Xiaotao; Cohen Ethan D; Daw Nigel W; Barnstable Colin J
cGMP-induced presynaptic depression and postsynaptic facilitation at glutamatergic synapses in visual cortex.
Brain research 2002;927(1):42-54.
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2001: Jin X T; Beaver C J; Ji Q; Daw N W
Effect of the group I metabotropic glutamate agonist DHPG on the visual cortex.
Journal of neurophysiology 2001;86(4):1622-31.
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2001: Beaver C J; Ji Q; Daw N W
Layer differences in the effect of monocular vision in light- and dark-reared kittens.
Visual neuroscience 2001;18(5):811-20.
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2001: Daw N W; Beaver C J
Developmental changes and ocular dominance plasticity in the visual cortex.
The Keio journal of medicine 2001;50(3):192-7.
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2001: Beaver C J; Ji Q; Fischer Q S; Daw N W
Cyclic AMP-dependent protein kinase mediates ocular dominance shifts in cat visual cortex.
Nature neuroscience 2001;4(2):159-63.
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2000: Flavin H J; Jin X T; Daw N W
2R,4R-4-Aminopyrrolidine-2,4-dicarboxylate (APDC) attenuates cortical EPSPs.
Brain research 2000;873(2):212-7.
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1999: Daw N W; Reid S N; Beaver C J
Development and function of metabotropic glutamate receptors in cat visual cortex.
Journal of neurobiology 1999;41(1):102-7.
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1999: Beaver C J; Ji Q; Daw N W
Effect of the group II metabotropic glutamate agonist, 2R,4R-APDC, varies with age, layer, and visual experience in the visual cortex.
Journal of neurophysiology 1999;82(1):86-93.
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1999: Daw N W; Gordon B; Fox K D; Flavin H J; Kirsch J D; Beaver C J; Ji Q; Reid S N; Czepita D
Injection of MK-801 affects ocular dominance shifts more than visual activity.
Journal of neurophysiology 1999;81(1):204-15.
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1998: Wang X F; Daw N W; Jin X
The effect of ACPD on the responses to NMDA and AMPA varies with layer in slices of rat visual cortex.
Brain research 1998;812(1-2):186-92.
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1998: Jin X; Daw N W
The group III metabotropic glutamate receptor agonist, l-AP4, reduces EPSPs in some layers of rat visual cortex.
Brain research 1998;797(2):218-24.
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1998: Daw N W
Critical periods and amblyopia.
Archives of ophthalmology 1998;116(4):502-5.
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1997: Reid S N; Romano C; Hughes T; Daw N W
Developmental and sensory-dependent changes of phosphoinositide-linked metabotropic glutamate receptors.
The Journal of comparative neurology 1997;389(4):577-83.
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1997: Reid S N; Daw N W
Activation of metabotropic glutamate receptors has different effects in different layers of cat visual cortex.
Visual neuroscience 1997;14(1):83-8.
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1996: Reid S N; Daw N W; Gregory D S; Flavin H
cAMP levels increased by activation of metabotropic glutamate receptors correlate with visual plasticity.
The Journal of neuroscience : the official journal of the Society for Neuroscience 1996;16(23):7619-26.
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1996: Wang X F; Daw N W
Metabotropic glutamate receptors potentiate responses to NMDA and AMPA from layer V cells in rat visual cortex.
Journal of neurophysiology 1996;76(2):808-15.
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1996: Czepita D; Daw N W
The contribution of NMDA receptors to the visual response in animals that have been partially monocularly deprived.
Brain research 1996;728(1):7-12.
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1996: Reid S N; Daw N W; Czepita D; Flavin H J; Sessa W C
Inhibition of nitric oxide synthase does not alter ocular dominance shifts in kitten visual cortex.
The Journal of physiology 1996;494 ( Pt 2)():511-7.
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1996: Czepita D; Daw N W; Reid S N
Glycine at the NMDA receptor in cat visual cortex: saturation and changes with age.
Journal of neurophysiology 1996;75(1):311-7.
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1996: Daw N W; Reid S N
Role of metabotropic glutamate receptors in the cat's visual cortex during development.
Journal of physiology, Paris 1996;90(3-4):173-7.
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1996: Flavin H J; Daw N W; Gregory D S; Reid S N
Glutamate receptors and development of the visual cortex: effect of metabotropic agonists on cAMP.
Progress in brain research 1996;108():263-72.
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1995: Reid S N; Daw N W
Dark-rearing changes dendritic microtubule-associated protein 2 (MAP2) but not subplate neurons in cat visual cortex.
The Journal of comparative neurology 1995;359(1):38-47.
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1995: Reid S N; Romano C; Hughes T; Daw N W
Immunohistochemical study of two phosphoinositide-linked metabotropic glutamate receptors (mGluR1 alpha and mGluR5) in the cat visual cortex before, during, and after the peak of the critical period for eye-specific connections.
The Journal of comparative neurology 1995;355(3):470-7.
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1995: Daw N W; Reid S N; Wang X F; Flavin H J
Factors that are critical for plasticity in the visual cortex.
Ciba Foundation symposium 1995;193():258-76;discussion 322-4.
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1994: Daw N W
Mechanisms of plasticity in the visual cortex. The Friedenwald Lecture.
Investigative ophthalmology & visual science 1994;35(13):4168-79.
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1994: Czepita D; Reid S N; Daw N W
Effect of longer periods of dark rearing on NMDA receptors in cat visual cortex.
Journal of neurophysiology 1994;72(3):1220-6.
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1993: Daw N W; Stein P S; Fox K
The role of NMDA receptors in information processing.
Annual review of neuroscience 1993;16():207-22.
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1992: Fox K; Daw N; Sato H; Czepita D
The effect of visual experience on development of NMDA receptor synaptic transmission in kitten visual cortex.
The Journal of neuroscience : the official journal of the Society for Neuroscience 1992;12(7):2672-84.
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1992: Daw N W; Fox K; Sato H; Czepita D
Critical period for monocular deprivation in the cat visual cortex.
Journal of neurophysiology 1992;67(1):197-202.
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1991: Sato H; Daw N W; Fox K
An intracellular recording study of stimulus-specific response properties in cat area 17.
Brain research 1991;544(1):156-61.
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1991: Fox K; Daw N; Sato H; Czepita D
Dark-rearing delays the loss of NMDA-receptor function in kitten visual cortex.
Nature 1991;350(6316):342-4.
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1990: Fox K; Sato H; Daw N
The effect of varying stimulus intensity on NMDA-receptor activity in cat visual cortex.
Journal of neurophysiology 1990;64(5):1413-28.
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1990: McIntosh H; Daw N; Parkinson D
GAP-43 in the cat visual cortex during postnatal development.
Visual neuroscience 1990;4(6):585-93.
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1990: Daw N W; Jensen R J; Brunken W J
Rod pathways in mammalian retinae.
Trends in neurosciences 1990;13(3):110-5.
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1989: Sato H; Fox K; Daw N W
Effect of electrical stimulation of locus coeruleus on the activity of neurons in the cat visual cortex.
Journal of neurophysiology 1989;62(4):946-58.
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1989: Fox K; Sato H; Daw N
The location and function of NMDA receptors in cat and kitten visual cortex.
The Journal of neuroscience : the official journal of the Society for Neuroscience 1989;9(7):2443-54.
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1989: Daw N W; Brunken W J; Parkinson D
The function of synaptic transmitters in the retina.
Annual review of neuroscience 1989;12():205-25.
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1989: Parkinson D; Coscia E C; Daw N W
Identification and localization of 5-hydroxytryptamine receptor sites in macaque visual cortex.
Visual neuroscience 1989;2(5):515-25.
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1989: McIntosh H; Parkinson D; Meiri K; Daw N; Willard M
A GAP-43-like protein in cat visual cortex.
Visual neuroscience 1989;2(6):583-91.
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1988: Parkinson D; Coscia E; Daw N W
Identification and localization of adrenergic receptors in cat visual cortex.
Brain research 1988;457(1):70-8.
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1988: Parkinson D; Kratz K E; Daw N W
Evidence for a nicotinic component to the actions of acetylcholine in cat visual cortex.
Experimental brain research. Experimentelle Hirnforschung. Expérimentation cérébrale 1988;73(3):553-68.
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1988: Brunken W J; Daw N W
Neuropharmacological analysis of the role of indoleamine-accumulating amacrine cells in the rabbit retina.
Visual neuroscience 1988;1(3):275-85.
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1988: Brunken W J; Daw N W
The effects of serotonin agonists and antagonists on the response properties of complex ganglion cells in the rabbit's retina.
Visual neuroscience 1988;1(2):181-8.
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1987: Brunken W J; Daw N W
The actions of serotonergic agonists and antagonists on the activity of brisk ganglion cells in the rabbit retina.
The Journal of neuroscience : the official journal of the Society for Neuroscience 1987;7(12):4054-65.
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1986: Brunken W J; Daw N W
5-HT2 antagonists reduce ON responses in the rabbit retina.
Brain research 1986;384(1):161-5.
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1986: Jensen R J; Daw N W
Effects of dopamine and its agonists and antagonists on the receptive field properties of ganglion cells in the rabbit retina.
Neuroscience 1986;17(3):837-55.
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1984: Jensen R J; Daw N W
Effects of dopamine antagonists on receptive fields of brisk cells and directionally selective cells in the rabbit retina.
The Journal of neuroscience : the official journal of the Society for Neuroscience 1984;4(12):2972-85.
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1983: Jensen R J; Daw N W
Towards an understanding of the role of dopamine in the mammalian retina.
Vision research 1983;23(11):1293-8.
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