Synaptic metaplasticity underlies tetanic potentiation in Lymnaea: a novel paradigm.

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Abstract

We present a mathematical model that explains and interprets a novel form of short-term potentiation, which was found to be use-, but not time-dependent, in experiments done on Lymnaea neurons. The high degree of potentiation is explained using a model of synaptic metaplasticity, while the use-dependence (which is critically reliant on the presence of kinase in the experiment) is explained using a model of a stochastic and bistable biological switch.

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Mehta, A., Luck, J. M., Luk, C. C., & Syed, N. I. (2013). Synaptic metaplasticity underlies tetanic potentiation in Lymnaea: a novel paradigm. PloS One, 8(10). https://doi.org/10.1371/journal.pone.0078056

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