Details

scope
mouse hippocampus CA1 → subiculum
section_id
section_06
source_url
https://github.com/AllenNeuralDynamics/ComputationalReviewVIP/blob/95e761177f7d2ec565983d3307c14ec238f9677c/evidence/section_06_evidence_package.json
effect_size
Gap-junction-coupled subnetwork; sparse electrical spike coupling.
review_repo
ComputationalReviewVIP
section_ref
wiki_page:computationalreviewvip-06-synaptic-properties
source_kind
review_finding
source_path
evidence/section_06_evidence_package.json
study_system
mouse hippocampus CA1 → subiculum
section_title
Synaptic Properties and Connectivity
evidence_summary
Anatomical and electrophysiological characterization of VIP+ projection neurons in mouse hippocampus + in vivo recordings.
review_bundle_ref
analysis_bundle:ab-2ce40c33e827
replication_status
single-study
review_package_ref
analysis_bundle:ab-2ce40c33e827
source_artifact_ref
wiki_page:computationalreviewvip-06-synaptic-properties
origin_url
https://github.com/AllenNeuralDynamics/ComputationalReviewVIP/blob/95e761177f7d2ec565983d3307c14ec238f9677c/evidence/section_06_evidence_package.json
commit_sha
95e761177f7d2ec565983d3307c14ec238f9677c
created_by
persona-jerome-lecoq-gbo-neuroscience
repository_url
https://github.com/AllenNeuralDynamics/ComputationalReviewVIP
Raw fields (6)
claim_text
A subset of CA1 hippocampal VIP+ interneurons (VIP-LRPs) project long-range axons to the subiculum, targeting interneurons in CA1 and both interneurons and pyramidal cells in subiculum; VIP-LRPs are interconnected by gap junctions with sparse spike coupling, decrease activity during theta-run epochs and are more active during quiet wakefulness.
raw_fields
{
  "n": null,
  "doi": "10.1038/s41467-018-07162-5",
  "claim": "A subset of CA1 hippocampal VIP+ interneurons (VIP-LRPs) project long-range axons to the subiculum, targeting interneurons in CA1 and both interneurons and pyramidal cells in subiculum; VIP-LRPs are interconnected by gap junctions with sparse spike coupling, decrease activity during theta-run epochs and are more active during quiet wakefulness.",
  "title": null,
  "cite_key": "Francavilla2018a",
  "evidence": "Anatomical and electrophysiological characterization of VIP+ projection neurons in mouse hippocampus + in vivo recordings.",
  "effect_size": "Gap-junction-coupled subnetwork; sparse electrical spike coupling.",
  "text_access": "abstract_only",
  "study_system": "mouse hippocampus CA1 → subiculum",
  "_source_cluster": "cluster_05_synaptic_connectivity",
  "replication_status": "single-study",
  "_source_cluster_index": 27,
  "claim_source_sentence": "Here, we discover a type of VIP+ neuron whose axon innervates CA1 and also projects to the subiculum (VIP-LRPs). VIP-LRPs show specific molecular properties and target interneurons within the CA1 area but both interneurons and pyramidal cells within subiculum.",
  "replication_evidence_dois": [],
  "effect_size_source_sentence": null
}
source_refs
[
  "paper:paper-c5dc6d520729"
]
source_span
Here, we discover a type of VIP+ neuron whose axon innervates CA1 and also projects to the subiculum (VIP-LRPs). VIP-LRPs show specific molecular properties and target interneurons within the CA1 area but both interneurons and pyramidal cells within subiculum.
evidence_refs
[
  {
    "ref": "paper:paper-c5dc6d520729"
  }
]
source_policy
{
  "mode": "public_source_pointer_with_short_context",
  "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": "95e761177f7d2ec565983d3307c14ec238f9677c",
  "source_repository_url": "https://github.com/AllenNeuralDynamics/ComputationalReviewVIP"
}

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