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PMID: 11754844 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Rate, timing, and cooperativity jointly determine cortical synaptic plasticity.

Neuron ·Vol. 32 ·No. 6 ·2001-12-20 ·Pages 1149-64

Sjöström PJ, Turrigiano GG, Nelson SB

Abstract

Cortical long-term plasticity depends on firing rate, spike timing, and cooperativity among inputs, but how these factors interact during realistic patterns of activity is unknown. Here we monitored plasticity while systematically varying the rate, spike timing, and number of coincident afferents. These experiments demonstrate a novel form of cooperativity operating even when postsynaptic firing is evoked by current injection, and reveal a complex dependence of LTP and LTD on rate and timing. Based on these data, we constructed and tested three quantitative models of cortical plasticity. One of these models, in which spike-timing relationships causing LTP "win" out over those favoring LTD, closely fits the data and accurately predicts the build-up of plasticity during random firing. This provides a quantitative framework for predicting the impact of in vivo firing patterns on synaptic strength.

MeSH Terms
Action Potentials/physiology Animals Excitatory Postsynaptic Potentials/physiology Long-Term Potentiation/physiology Models, Neurological Neural Inhibition/physiology Neuronal Plasticity/physiology Rats Rats, Long-Evans Synapses/physiology Visual Cortex/physiology
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Sjöström P J
Brandeis University, Department of Biology, Volen Center for Complex Systems, Mailstop 008 415 South Street, Waltham, MA 02454, USA.
Turrigiano G G
Nelson S B
Article Info
Journal
Neuron
Abbr.
Neuron
ISSN
0896-6273
Published
2001-12-20
Pages
1149-64
Language
English
Region
United States
NLM ID
8809320
Subset
IM
Grants
NEI NIH HHS · EY11116 · United States
NIMH NIH HHS · MH58754 · United States
Corrections
CommentIn
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