Introduction. Long-term potentiation and structure of the issue

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Introduction. Long-term potentiation and structure of the issue is …
instance of (P31):
scholarly articleQ13442814
review articleQ7318358

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P356DOI10.1098/RSTB.2003.1282
P932PMC publication ID1693168
P698PubMed publication ID12740102
P5875ResearchGate publication ID10766325

P50authorRichard G. MorrisQ28263
P2093author name stringGraham L Collingridge
Tim V P Bliss
P2860cites workCadherins and synaptic plasticity: activity-dependent cyclin-dependent kinase 5 regulation of synaptic β-catenin-cadherin interactionsQ40876575
Long-term potentiation in the EoceneQ40876722
The induction of N -methyl-D-aspartate receptor-dependent long-term potentiationQ40876972
Long-term potentiation and memoryQ40877168
The effects of repetitive low frequency stimulation on control and "potentiated" synaptic responses in the hippocampusQ70699423
Genetic neuroscience of mammalian learning and memoryQ22337102
The discovery of long-term potentiationQ22337103
Long-lasting potentiation of synaptic transmission in the dentate area of the anaesthetized rabbit following stimulation of the perforant pathQ24538964
Long-lasting potentiation of synaptic transmission in the dentate area of the unanaestetized rabbit following stimulation of the perforant pathQ24538966
How long will long-term potentiation last?Q24675713
Bidirectional synaptic plasticity: from theory to realityQ24675727
AMPA receptor trafficking and long-term potentiationQ24675742
Long-term potentiation, cooperativity and Hebb's cell assemblies: a personal historyQ24675761
Synaptic plasticity in animal models of early Alzheimer's diseaseQ24675772
Structural changes at dendritic spine synapses during long-term potentiationQ24675795
A prelude to long-term potentiationQ24675815
Long-term potentiation of guinea pig mossy fiber responses is not blocked by N-methyl D-aspartate antagonistsQ34048647
Long-lasting depression of parallel fiber-Purkinje cell transmission induced by conjunctive stimulation of parallel fibers and climbing fibers in the cerebellar cortexQ34254229
Theory for the development of neuron selectivity: orientation specificity and binocular interaction in visual cortexQ34277494
Kainate receptors and the induction of mossy fibre long-term potentiationQ35124801
Active dendrites, potassium channels and synaptic plasticityQ35124805
Fusion pore modulation as a presynaptic mechanism contributing to expression of long-term potentiationQ35124807
GluR2 protein-protein interactions and the regulation of AMPA receptors during synaptic plasticity.Q35124811
Expression mechanisms underlying long-term potentiation: a postsynaptic viewQ35124815
Silent synapses: what are they telling us about long-term potentiation?Q35124818
In search of general mechanisms for long-lasting plasticity: Aplysia and the hippocampusQ35124827
Long-term potentiation and the ageing brainQ35124830
Inducible molecular switches for the study of long-term potentiationQ35124834
MAPK, CREB and zif268 are all required for the consolidation of recognition memoryQ35124837
Synaptic plasticity in the mesolimbic dopamine systemQ35124841
Long-term potentiation: outstanding questions and attempted synthesisQ35124845
Elements of a neurobiological theory of the hippocampus: the role of activity-dependent synaptic plasticity in memoryQ35126365
Long-term potentiation in the dentate gyrus of the anaesthetized rat is accompanied by an increase in extracellular glutamate: real-time measurements using a novel dialysis electrodeQ35213510
A journey from neocortex to hippocampusQ35213515
Imaging spatio-temporal patterns of long-term potentiation in mouse hippocampusQ35213519
P433issue1432
P407language of work or nameEnglishQ1860
P921main subjectlong-term potentiationQ1805481
P1104number of pages5
P304page(s)607-611
P577publication date2003-04-01
P1433published inPhilosophical Transactions of the Royal Society BQ2153239
P1476titleIntroduction. Long-term potentiation and structure of the issue
P478volume358

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