Literature DB >> 10197910

Interactive contributions of intracellular calcium and protein phosphatases to massed-trials learning deficits in Hermissenda.

I A Muzzio1, R R Ramirez, A C Talk, L D Matzel.   

Abstract

Using Hermissenda as subjects, massed-trials training deficits were examined. Associative pairings of light and rotation induced a progressively greater conditioned foot contraction in response to light as the intertrial interval (ITI) was extended (up to 8 min). In contrast, a short ITI (30 s) produced no evidence of learning. In a corresponding in vitro conditioning experiment that mimicked training of the intact animal, facilitation of neuronal excitability in the animal's B photoreceptors paralleled the results obtained in vivo. Imaging of intracellular Ca2+ using Fura-2 indicated that Ca2+ levels remained elevated during short ITIs. This Ca2+ accumulation appears to induce activation of protein phosphatases because normal facilitation of the B photoreceptors was induced with a short ITI if training occurred in the presence of a phosphatase inhibitor. These results suggest that intracellular Ca2+ and protein phosphatases contribute interactively to the kinetics of memory formation and provide evidence that an accumulation of intracellular Ca2+ across training trials may impede memory formation.

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Year:  1999        PMID: 10197910     DOI: 10.1037//0735-7044.113.1.103

Source DB:  PubMed          Journal:  Behav Neurosci        ISSN: 0735-7044            Impact factor:   1.912


  7 in total

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2.  Chronic intermittent hypoxia elicits serotonin-dependent plasticity in the central neural control of breathing.

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Authors:  R Menzel; G Manz; R Menzel; U Greggers
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5.  Learning the same motor task twice impairs its retention in a time- and dose-dependent manner.

Authors:  R Hamel; L Dallaire-Jean; É De La Fontaine; J F Lepage; P M Bernier
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6.  In vitro extinction learning in Hermissenda: involvement of conditioned inhibition molecules.

Authors:  Joel S Cavallo; Brittany N Hamilton; Joseph Farley
Journal:  Front Behav Neurosci       Date:  2014-10-21       Impact factor: 3.558

7.  Behavioral and neural bases of extinction learning in Hermissenda.

Authors:  Joel S Cavallo; Brittany N Hamilton; Joseph Farley
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  7 in total

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