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English: A model for the mechanisms of depotentiation (DP) and de novo LTD. Rectangles represent AMPARs, open circles transmitter vesicles. (A) DP is due to a reduction in the number of surface-expressed AMPARs (DPN) when preceded by LTPN. Depression below the original baseline is due to a further reduction in AMPA receptor number causing a complete loss of postsynaptic receptors at some synapses. De novo LTD is due to the same mechanism. (B) DP is due to a reduction in γ (DPγ) when preceded by LTPγ.
Date
Source Bi-directional modulation of AMPA receptor unitary conductance by synaptic activity. BMC Neuroscience 2004, (5)44. doi:10.1186/1471-2202-5-44
Author Andreas Lüthi, Martin A Wikström, Mary J Palmer, Paul Matthews, Tim A Benke, John TR Isaac, Graham L Collingridge
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This file, which was originally posted to https://www.biomedcentral.com/about/policies/license-agreement, was reviewed on 20 November 2020 by reviewer Magog the Ogre, who confirmed that it was available there under the stated license on that date.

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current02:57, 7 December 2009Thumbnail for version as of 02:57, 7 December 2009902 × 571 (112 KB)Patrick.Raab.1{{Information |Description = A model for the mechanisms of DP and de novo LTD. Rectangles represent AMPARs, open circles transmitter vesicles. (A) DP is due to a reduction in the number of surface-expressed AMPARs (DPN) when preceded by LTPN. Depressi

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