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Updated: Aug 21, 2026

Improved Preparation and Preservation of Hippocampal Mouse Slices for a Very Stable and Reproducible Recording of Long-term Potentiation
Published on: June 26, 2013
The persistence of long-term memory: a molecular approach to self-sustaining changes in learning-induced synaptic
Craig H Bailey1, Eric R Kandel, Kausik Si
1Center for Neurobiology and Behavior, 1051 Riverside Drive, New York, NY 10032, USA.
Abstract:
Recent cellular and molecular studies of both implicit and explicit memory storage suggest that experience-dependent modulation of synaptic strength and structure is a fundamental mechanism by which these diverse forms of memory are encoded and stored. For both forms of memory storage, some type of synaptic growth is thought to represent the stable cellular change that maintains the long-term process. In this review, we discuss recent findings on the molecular events that underlie learning-related synaptic growth in Aplysia and discuss the possibility that an active, prion-based mechanism is important for the maintenance of the structural change and for the persistence of long-term memory.
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