An in vitro study of retinotectal transmission in the chick: role of glutamate and GABA in evoked field potentials.

scientific article published in July 1996

An in vitro study of retinotectal transmission in the chick: role of glutamate and GABA in evoked field potentials. is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1017/S0952523800008622
P698PubMed publication ID8870230

P2093author name stringH J Karten
J C Dye
P2860cites workFine structure of the optic fibre termination layers in the pigeon optic tectum: a Golgi and electron microscope studyQ30648427
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Selective uptake and transport of label within three identified neuronal systems after injection of3H-GABA into the pigeon optic tectum: An autoradiographic and golgi studyQ39408301
Current source-density method and application in cat cerebral cortex: investigation of evoked potentials and EEG phenomenaQ39813364
Antagonists of glutaminergic neurotransmission block retinotectal transmission in goldfishQ41343018
Synaptic organisation of the pigeon's optic tectum: A golgi and current source-density analysisQ43532068
Reduction of glutamate content in rat superior colliculus after retino-tectal denervationQ44874625
An electrophysiological study of the action of N-methyl-D-aspartate on excitatory synaptic transmission in the optic tectum of the frog in vitroQ45164922
Moving background patterns alter directionally specific responses of pigeon tectal neuronsQ46170653
Masking effect of NMDA receptor antagonists on the formation of long-term potentiation (LTP) in superior colliculus slices from the guinea pig.Q46600750
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Excitatory amino acid receptors participate in synaptic transmission of visual responses in the superficial layers of the cat superior colliculusQ48225735
Topographical and subcellular distribution of choline acetyltransferase and glutamate decarboxylase in pigeon optic tectumQ48372521
Motion characteristics of single units in the pigeon optic tectumQ48414641
Single unit receptive fields and the cellular layers of the pigeon optic tectumQ48505402
Influence of GABA and glycine and their antagonists on inhibitory mechanisms of pigeon's optic tectumQ48505501
Morphology and laminar distribution of electrophysiologically identified cells in the pigeon's optic tectum: an intracellular studyQ48508154
Selective reduction of glutamate in the rat superior colliculus and dorsal lateral geniculate nucleus after contralateral enucleationQ48525906
Postsynaptic potentials in neurons of the pigeon's optic tectum in response to afferent stimulation from the retina and other visual structures: an intracellular studyQ48613700
Analysis of field response in optic tectum of the pigeonQ48657674
Excitatory amino acid receptors mediate synaptic responses to visual stimuli in superior colliculus neurones of the ratQ48671645
Visual receptive fields of single cells in the pigeon's optic tectumQ48764578
An intracellular study of the optic tectum of the carp in vitroQ48775892
The development of the chick optic tectum. I. Normal morphology and cytoarchitectonic developmentQ48824319
Immunocytochemical study on cholera toxin binding sites by monoclonal anti-cholera toxin antibody in neuronal tissue cultureQ48932095
Plasticity in the chick ventral lateral geniculate nucleusQ49131222
Electrophysiological investigations on the pigeon's optic tectumQ51120371
The field potential profile during activation of the avian optic tectum.Q51196765
The representation of the retina on the optic tectum of the pigeon.Q51344555
The contributions of NMDA, non-NMDA, and GABA receptors to postsynaptic responses in neurons of the optic tectumQ51655344
The optic nerve of the mallard duck: fiber-diameter frequency distribution and physiological propertiesQ69947641
Single visual neurons code opposing motion independent of directionQ71695958
In vivo release of glutamate and aspartate following optic nerve stimulationQ72500908
Quantitative analysis of optic terminal profile distribution within the pigeon optic tectumQ72614277
P433issue4
P407language of work or nameEnglishQ1860
P304page(s)747-758
P577publication date1996-07-01
P1433published inVisual neuroscienceQ969322
P1476titleAn in vitro study of retinotectal transmission in the chick: role of glutamate and GABA in evoked field potentials
P478volume13

Reverse relations

cites work (P2860)
Q56593456Chapter 9 Mechanisms involved in development of retinotectal connections: Roles of Eph receptor tyrosine kinases, NMDA receptors and nitric oxide
Q43697295Chattering and differential signal processing in identified motion-sensitive neurons of parallel visual pathways in the chick tectum.
Q34946394Cholinergic control of gamma power in the midbrain spatial attention network
Q43528502Columnar projections from the cholinergic nucleus isthmi to the optic tectum in chicks (Gallus gallus): a possible substrate for synchronizing tectal channels.
Q48226484Effects of glutamatergic, cholinergic and gabaergic antagonists on tectal cells in toads
Q48351173Expression of the AMPA-type glutamate receptor subunits in the chick optic tectum changes biphasically after retinal deafferentation
Q33813697Generating oscillatory bursts from a network of regular spiking neurons without inhibition
Q48319184NMDA receptor-mediated refinement of a transient retinotectal projection during development requires nitric oxide
Q48456146The differential distribution of AMPA-receptor subunits in the tectofugal system of the pigeon
Q78727771The nucleus isthmi and dual modulation of the receptive field of tectal neurons in non-mammals