Results 211 to 220 of about 248,879 (259)
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Direct inhibitory synaptic linkage of pause neurons with burst inhibitory neurons
Brain Research, 1982Nobuhiko Furuya +2 more
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Inhibitory neurons: VIP neurons expect rewards
Current Biology, 2023Inhibitory neurons which express vasoactive intestinal polypeptide, VIPs, are a small subset of the mammalian cortex but in importance live up to their acronym. New research shows that these critical control knobs of cortical activity are specifically activated by actions taken when rewards are anticipated rather than consummated.
Jing, Zou, Samuel Andrew, Hires
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NMDA receptor function in inhibitory neurons
Neuropharmacology, 2021N-methyl-d-aspartate receptors (NMDARs) are present in the majority of brain circuits and play a key role in synaptic information transfer and synaptic plasticity. A key element of many brain circuits are inhibitory GABAergic interneurons that in themselves show diverse and cell-type-specific NMDAR expression and function.
Sam A. Booker, David J.A. Wyllie
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Identification of Inhibitory Neurones in the Hippocampus
Nature, 1963IN their recent article in Nature, Andersen, Eccles and Loyning1 claim to have unequivocally identified the basket cells of the hippocampus as the inhibitory neurones of this brain structure. They claim that “there is no alternative” to this interpretation and that it therefore “seems possible for the first time to give an example from the mammalian ...
P. ANDERSEN, J. C. ECCLES, Y. LØYNING
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Cortical inhibitory neurons and schizophrenia
Nature Reviews Neuroscience, 2005Impairments in certain cognitive functions, such as working memory, are core features of schizophrenia. Convergent findings indicate that a deficiency in signalling through the TrkB neurotrophin receptor leads to reduced GABA (gamma-aminobutyric acid) synthesis in the parvalbumin-containing subpopulation of inhibitory GABA neurons in the dorsolateral ...
David A, Lewis +2 more
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The inhibitory neuronal glycine receptor
BioEssays, 1994AbstractGlycine is a major inhibitory neurotransmitter in the spinal cord and in the brain stem, where it acts by activating a chloride conductance. The postsynaptic glycine receptor has been purified and contains two transmembrane subunits of 48 kDa (α) and 58 kDa (β), and a peripheral membrane protein of 93 kDa.
C, Béchade, C, Sur, A, Triller
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Inhibitory Phenomena and ‘Habituation’ at the Neuronal Level
Nature, 1961IN behavioural habituation, according to Thorpe1, the animal “learns not to respond to stimuli which tend to be without significance in the life of the animal”. It does so by a mechanism which determines a “relatively permanent waning of a response as a result of repeated stimulation”.
B, HOLMGREN, S, FRENK
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Neuroscience Translations, 1968
1. During direct and antidromic cortical stimulation a few neurons (3%) respond by a high-frequency discharge coinciding in time with the beginning of the inhibitory pause of the remaining cortical neurons. 2. The group of neurons thus distinguished is similar in its electrophysiological properties to Renshaw cells of the spinal cord.
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1. During direct and antidromic cortical stimulation a few neurons (3%) respond by a high-frequency discharge coinciding in time with the beginning of the inhibitory pause of the remaining cortical neurons. 2. The group of neurons thus distinguished is similar in its electrophysiological properties to Renshaw cells of the spinal cord.
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Science's STKE, 2006
Discovered 30 years ago, axo-axonic or Chandelier cells are the most specific inhibitory neurotransmitter γ-aminobutyric acid-releasing (GABAergic) cell type known and are regularly used in textbooks to illustrate the strategic placement of inhibition on the axon. Szabadics et al.
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Discovered 30 years ago, axo-axonic or Chandelier cells are the most specific inhibitory neurotransmitter γ-aminobutyric acid-releasing (GABAergic) cell type known and are regularly used in textbooks to illustrate the strategic placement of inhibition on the axon. Szabadics et al.
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Nuclear and radicular distribution of cardio-inhibitory neurons
Experientia, 1963Nel cane, le fibre cardioinibitrici esconno dal bulbo con le radicole bulbari dell'accessorio e con quelle piu caudali del vago. Tali radicole non contengono fibre motrici per il tratto digerente, che sono contenute nella porzione craniale della radice vagale.
L, SPERTI, M, MIDRIO
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