- claim_text
Rapid suppression and sustained activation of distinct cortical regions for a delayed sensory-triggered motor response. Our results demonstrate key cortical nodes for motor plan generation and timely execution in delayed goal-directed licking.
- raw_fields
{
"n": null,
"doi": "10.1016/j.neuron.2021.05.005",
"claim": "Rapid suppression and sustained activation of distinct cortical regions for a delayed sensory-triggered motor response. Our results demonstrate key cortical nodes for motor plan generation and timely execution in delayed goal-directed licking.",
"cite_key": "Esmaeili2021",
"evidence": "Rapid suppression and sustained activation of distinct cortical regions for a delayed sensory-triggered motor response. — The neuronal mechanisms generating a delayed motor response initiated by a sensory cue remain elusive. Here, we tracked the precise sequence of cortical activity in mice transforming a brief whisker stimulus into delayed licking using wide-field calcium imaging, multiregion high-density electrophysi",
"effect_size": null,
"text_access": "fulltext",
"study_system": "mouse cortex (see paper for region/cell-type detail)",
"argument_role": "supporting",
"replication_status": "single_study",
"claim_source_sentence": "Our results therefore point to task-epoch-specific contributions of distinct cortical regions to whisker-triggered planning of goal-directed licking and timely execution of planned lick responses.",
"source_provenance_status": "ok",
"replication_evidence_dois": [],
"effect_size_source_sentence": null
}- source_refs
[
"paper:paper-ea0a184018ea"
]
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{
"ref": "paper:paper-ea0a184018ea"
}
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{
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"notes": [
"Local review repositories are read-only inputs.",
"SciDEX stores paper metadata, structured evidence, file pointers, and short citation contexts; it does not copy full review prose."
],
"source_commit_sha": "79ce062d54a924ce05953ec90aa9d26044d2b48f",
"source_repository_url": "https://github.com/AllenNeuralDynamics/ComputationalReviewRecurrence"
}- evidence_summary
Rapid suppression and sustained activation of distinct cortical regions for a delayed sensory-triggered motor response. — The neuronal mechanisms generating a delayed motor response initiated by a sensory cue remain elusive. Here, we tracked the precise sequence of cortical activity in mice transforming a brief whisker stimulus into delayed licking using wide-field calcium imaging, multiregion high-density electrophysi