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Pain Pathways Involved in Fear Conditioning Measured with Fear-Potentiated Startle: Lesion Studies

Journal of NeurosciencePublished 1 January 1999Open access
Changjun Shi, Michael Davis
Citations274
SJR quartileQ1
SJR score1.96
SNIP1.30
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TL;DR

It is suggested that two parallel cortical and subcortical pathways are involved in relaying shock information to the basolateral amygdala during fear conditioning, which is critically involved in the association between an unconditioned stimulus and a conditioned stimulus during classic fear conditioning.

Abstract

It is well established that the basolateral amygdala is critically involved in the association between an unconditioned stimulus (US), such as a foot shock, and a conditioned stimulus (CS), such as a light, during classic fear conditioning. However, little is known about how the US (pain) inputs are relayed to the basolateral amygdala. The present studies were designed to define potential US pathways to the amygdala using lesion methods. Electrolytic lesions before or after training were placed in caudal granular/dysgranular insular cortex (IC) alone or in conjunction with the posterior intralaminar nuclei of the thalamus (PoT/PIL), and the effects on fear conditioning were examined. Pretraining lesions of both IC and PoT/PIL, but not lesions of IC alone, blocked the acquisition of fear-potentiated startle. However, post-training combined lesions of IC and PoT/PIL did not prevent expression of conditioned fear. Given that previous studies have shown that lesions of PoT/PIL alone had no effect on acquisition of conditioned fear, these results suggest that two parallel cortical (insula-amygdala) and subcortical (PoT/PIL-amygdala) pathways are involved in relaying shock information to the basolateral amygdala during fear conditioning.

Keywords

Neuroscience