post-training activation of LHb glutamatergic neurons disrupted object recognition and reward-based associative long-term memory
First-pass extracted concept
glutamatergic lateral habenula neurons
Aliases
LHb glutamatergic neurons
Evidence Snippets
Supporting Sources
Linked Claims
Chemogenetic activation of glutamatergic lateral habenula neurons in mice impaired long-term associative memory.
we used chemogenetic activation to temporarily excite glutamatergic neurons in the mouse LHb and assessed impacts on associative memory. Surprisingly, we found that transient activation of LHb impaired long-term memory
The findings indicate that glutamatergic lateral habenula neurons modulate consolidation of associative memories via an NMDA-mediated mechanism.
indicating that LHb glutamatergic neurons modulate consolidation of associative memories via a NMDA-mediated mechanism
Systemic ketamine rescued the long-term memory deficits caused by LHb glutamatergic neuronal activation.
pairing LHb glutamatergic neuronal activation with systemic ketamine administration rescued the long-term memory deficits
Post-training activation of LHb glutamatergic neurons disrupted object recognition and reward-based associative long-term memory while sparing fear-associated long-term memory.
post-training activation of LHb glutamatergic neurons disrupted object recognition and reward-based associative long-term memory, while sparing fear associated long-term memory
The memory impairment caused by LHb glutamatergic neuron activation was restricted to a critical post-training or post-conditioning temporal window corresponding to long-term memory consolidation.
The memory impairment was restricted to a critical temporal window post-training/conditioning that corresponded with the consolidation stage of long-term memory.