Indexed keywords
2 AMINO 5 PHOSPHONOVALERIC ACID;
6 CYANO 7 NITRO 2,3 QUINOXALINEDIONE;
AMPA RECEPTOR;
N METHYL DEXTRO ASPARTIC ACID RECEPTOR;
ANIMAL CELL;
ANIMAL TISSUE;
ARTICLE;
CONTROLLED STUDY;
EXCITATORY POSTSYNAPTIC POTENTIAL;
HIPPOCAMPUS;
LONG TERM POTENTIATION;
MEMBRANE STEADY POTENTIAL;
NERVE CELL STIMULATION;
NONHUMAN;
PRIORITY JOURNAL;
PYRAMIDAL NERVE CELL;
RAT;
2-AMINO-5-PHOSPHONOVALERATE;
ACTION POTENTIALS;
ANIMAL;
HIPPOCAMPUS;
LONG-TERM POTENTIATION;
MODELS, NEUROLOGICAL;
RATS;
RATS, SPRAGUE-DAWLEY;
RECEPTORS, AMPA;
RECEPTORS, N-METHYL-D-ASPARTATE;
SUPPORT, NON-U.S. GOV'T;
SUPPORT, U.S. GOV'T, P.H.S.;
SYNAPSES;
2
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Bekkers1
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Bliss1
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9
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10
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11
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15
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17
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Kullmann1
18
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Long-term potentiation is associated with increases in quantal content and quantal amplitude
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Nature
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Kullmann1
Nicoll2
20
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Direct measurements of quantal changes underlying long-term potentiation in CA1 hippocampus
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21
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26
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27
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Presynaptic enhancement shown by whole-cell recording of long-term potentiation in hippocampal slices
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28
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Manabe1
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29
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Postsynaptic contribution to long-term potentiation revealed by analysis of miniature synaptic currents
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Nature
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Manabe1
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30
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31
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Long-term synaptic enhancement and short-term potentiation in rat fascia dentata act through different mechanisms
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McNaughton1
32
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Mechanisms underlying induction of homosynaptic long-term depression in area CA1 of hippocampus
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34
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Evidence that changes in presynaptic calcium are not responsible for long-term potentiation in hippocampus
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35
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36
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37
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Evidence for all-or-none regulation of neurotransmitter release: implications for long-term potentiation
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Perkel1
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40
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Changes in reliability of synaptic function as a mechanism for plasticity
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41
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42
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Comparison of two forms of long-term potentiation in single hippocampal neurons
(1990)
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Zalutsky1
Nicoll2