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Transfer RNA (tRNA) modifications have been increasingly implicated as post-transcriptional regulators of basic neuronal functions. However, characterizing tRNA modification profiles in specific neural circuits that control well-defined behaviors is notoriously difficult due to the complexity of con...
2026-09-01 | MTBLS15420 | MetaboLights
We used a custom-designed microarray and qPCR to characterize the persistent transcriptional response to long-term habituation training in the marine mollusk Aplysia californica. Aplysia were exposed to either 3 days of spaced long-term habituation training (10 rounds of stimulation/day; each round...
ORGANISM(S): Aplysia californica 
Distinct molecular mechanisms of stress habituation in the mouse hippocampus
We used a custom-designed microarray and qPCR to characterize the persistent transcriptional response to long-term habituation training in the marine mollusk Aplysia californica. Aplysia were exposed to either 3 days of spaced long-term habituation training (10 rounds of stimulation/day; each round ...
ORGANISM(S): Aplysia californica 
2014-07-16 | GSE59448 | GEO
We explore how the tightly regulated molecular response triggered by acute restraint stress becomes altered after repeated restraint exposure. Transcriptomic sampling of the mouse hippocampus at multiple time points revealed that repeated stress leads to widespread habituation, damping stress-induce...
ORGANISM(S): Mus musculus 
2025-03-18 | GSE292240 | GEO
Distinct molecular mechanisms of stress habituation in the mouse hippocampus [snRNA-seq]
Distinct molecular mechanisms of stress habituation in the mouse hippocampus [snATAC-seq]
We explore how the tightly regulated molecular response triggered by acute restraint stress becomes altered after repeated restraint exposure. Transcriptomic sampling of the mouse hippocampus at multiple time points revealed that repeated stress leads to widespread habituation, damping stress-induce...
ORGANISM(S): Mus musculus 
2025-03-18 | GSE292239 | GEO
We explore how the tightly regulated molecular response triggered by acute restraint stress becomes altered after repeated restraint exposure. Transcriptomic sampling of the mouse hippocampus at multiple time points revealed that repeated stress leads to widespread habituation, damping stress-induce...
ORGANISM(S): Mus musculus 
2025-03-18 | GSE292225 | GEO
We explore how the tightly regulated molecular response triggered by acute restraint stress becomes altered after repeated restraint exposure. Transcriptomic sampling of the mouse hippocampus at multiple time points revealed that repeated stress leads to widespread habituation, damping stress-induce...
ORGANISM(S): Mus musculus 
2025-03-18 | GSE292231 | GEO
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