Version history

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  1. Live 3d0a8de802fc
    5/17/2026, 4:35:28 PM
    Content snapshot
    {
      "scope": "mouse PFC/frontal cortex",
      "claim_text": "Using several Cre mouse lines, we performed cellular-resolution Ca 2+ imaging from excitatory pyramidal (PYR) neurons as well as three distinct subtypes of inhibitory interneurons: parvalbumin-positive (PV + ), somatostatin-positive (SST + ), and vasoactive intestinal peptide-positive (VIP + ) neurons, which together comprise 85% of all GABAergic neurons in the cortex ( Rudy et al., 2011; Xu et al., 2010 ).",
      "raw_fields": {
        "n": 20,
        "doi": "10.1016/j.neuron.2015.06.021",
        "year": "2015",
        "claim": "Using several Cre mouse lines, we performed cellular-resolution Ca 2+ imaging from excitatory pyramidal (PYR) neurons as well as three distinct subtypes of inhibitory interneurons: parvalbumin-positive (PV + ), somatostatin-positive (SST + ), and vasoactive intestinal peptide-positive (VIP + ) neurons, which together comprise 85% of all GABAergic neurons in the cortex ( Rudy et al., 2011; Xu et al., 2010 ).",
        "title": null,
        "journal": "Neuron",
        "cite_key": "Pinto2015",
        "evidence": "Cell-Type-Specific Activity in Prefrontal Cortex during Goal-Directed Behavior",
        "effect_size": null,
        "text_access": "fulltext",
        "first_author": "Pinto",
        "study_system": "mouse PFC/frontal cortex",
        "_source_cluster": "cluster_06_disinhibition_circuit",
        "author_list_short": "Pinto, Dan",
        "replication_status": "replicated",
        "_source_cluster_index": 7,
        "claim_source_sentence": "Using several Cre mouse lines, we performed cellular-resolution Ca 2+ imaging from excitatory pyramidal (PYR) neurons as well as three distinct subtypes of inhibitory interneurons: parvalbumin-positive (PV + ), somatostatin-positive (SST + ), and vasoactive intestinal peptide-positive (VIP + ) neurons, which together comprise 85% of all GABAergic neurons in the cortex ( Rudy et al., 2011; Xu et al., 2010 ).",
        "replication_evidence_dois": [
          "10.1126/science.1254126",
          "10.1038/nn.4554",
          "10.1126/science.aag2599"
        ],
        "effect_size_source_sentence": "Figure 1 Experimental Approach (A) Schematic of the behavioral task. (B) Learning curves of an example mouse (left) and population of imaged mice (right, n = 20)."
      },
      "section_id": "section_07",
      "source_url": "https://github.com/AllenNeuralDynamics/ComputationalReviewVIP/blob/95e761177f7d2ec565983d3307c14ec238f9677c/evidence/section_07_evidence_package.json",
      "effect_size": null,
      "review_repo": "ComputationalReviewVIP",
      "section_ref": "wiki_page:computationalreviewvip-07-disinhibition-framework",
      "source_kind": "review_finding",
      "source_path": "evidence/section_07_evidence_package.json",
      "source_refs": [
        "paper:paper-6fb6c7efe883"
      ],
      "source_span": "Using several Cre mouse lines, we performed cellular-resolution Ca 2+ imaging from excitatory pyramidal (PYR) neurons as well as three distinct subtypes of inhibitory interneurons: parvalbumin-positive (PV + ), somatostatin-positive (SST + ), and vasoactive intestinal peptide-positive (VIP + ) neurons, which together comprise 85% of all GABAergic neurons in the cortex ( Rudy et al., 2011; Xu et al., 2010 ).",
      "study_system": "mouse PFC/frontal cortex",
      "evidence_refs": [
        {
          "ref": "paper:paper-6fb6c7efe883"
        }
      ],
      "section_title": "Local Circuit Motifs and the Disinhibition Framework",
      "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"
      },
      "evidence_summary": "Cell-Type-Specific Activity in Prefrontal Cortex during Goal-Directed Behavior",
      "review_bundle_ref": "analysis_bundle:ab-2ce40c33e827",
      "replication_status": "replicated",
      "review_package_ref": "analysis_bundle:ab-2ce40c33e827",
      "source_artifact_ref": "wiki_page:computationalreviewvip-07-disinhibition-framework",
      "origin_url": "https://github.com/AllenNeuralDynamics/ComputationalReviewVIP/blob/95e761177f7d2ec565983d3307c14ec238f9677c/evidence/section_07_evidence_package.json",
      "commit_sha": "95e761177f7d2ec565983d3307c14ec238f9677c",
      "created_by": "persona-jerome-lecoq-gbo-neuroscience",
      "repository_url": "https://github.com/AllenNeuralDynamics/ComputationalReviewVIP"
    }