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김성필

Kim, Sung-Phil
Brain-Computer Interface Lab.
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Differential Encoding of Trace and Delay Fear Memory in the Entorhinal Cortex

Author(s)
Kong, Mi-SeonKim, NamsooJo, Kyeong ImKim, Sung-PhilChoi, June -Seek
Issued Date
2023-02
DOI
10.5607/en22042
URI
https://scholarworks.unist.ac.kr/handle/201301/64237
Citation
EXPERIMENTAL NEUROBIOLOGY, v.32, no.1, pp.20 - 30
Abstract
Trace fear conditioning is characterized by a stimulus-free trace interval (TI) between the conditioned stimulus (CS) and the unconditioned stimu- lus (US), which requires an array of brain structures to support the formation and storage of associative memory. The entorhinal cortex (EC) has been proposed to provide essential neural code for resolving temporal discontinuity in conjunction with the hippocampus. However, how the CS and TI are encoded at the neuronal level in the EC is not clear. In Exp. 1, we tested the effect of bilateral pre-training electrolytic lesions of EC on trace vs. delay fear conditioning using rats as subjects. We found that the lesions impaired the acquisition of trace but not delay fear conditioning confirming that EC is a critical brain area for trace fear memory formation. In Exp. 2, single-unit activities from EC were recorded during the pre - training baseline and post-training retention sessions following trace or delay conditioning. The recording results showed that a significant propor- tion of the EC neurons modulated their firing during TI after the trace conditioning, but not after the delay fear conditioning. Further analysis re- vealed that the majority of modulated units decreased the firing rate during the TI or the CS. Taken together, these results suggest that EC critically contributes to trace fear conditioning by modulating neuronal activity during the TI to facilitate the association between the CS and US across a temporal gap.
Publisher
KOREAN SOC BRAIN & NEURAL SCIENCE, KOREAN SOC NEURODEGENERATIVE DISEASE
ISSN
1226-2560
Keyword (Author)
FearMemoryConditioningEntorhinal cortex
Keyword
MEDIAL PREFRONTAL CORTEXPERSISTENT ACTIVITYPERIRHINAL CORTEXNMDA RECEPTORSSINGLE NEURONSHIPPOCAMPUSASSOCIATIONCIRCUITSAMYGDALACELLS

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