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- Live5/17/2026, 4:35:28 PM
2c47b358ef2eContent snapshot
{ "scope": "Acute slices of mouse M1, S1 and V1; ChR2 in GABAergic neurons; laser scanning photostimulation to excitatory cells across all principal layers", "claim_text": "In mouse M1, S1 and V1, subsets of L2/3 and L5B pyramidal cells receive substantial translaminar inputs that span beyond the home layer, with the proportion of translaminar-receiving cells highest in V1, intermediate in S1 and absent in M1.", "raw_fields": { "n": 0, "doi": "10.1038/nn.2687", "claim": "In mouse M1, S1 and V1, subsets of L2/3 and L5B pyramidal cells receive substantial translaminar inputs that span beyond the home layer, with the proportion of translaminar-receiving cells highest in V1, intermediate in S1 and absent in M1.", "cite_key": "Katzel2011", "evidence": "Genetically targeted photostimulation of GABAergic neurons in a ChR2 knock-in mouse line to map laminar input patterns across M1, S1 and V1.", "effect_size": "Translaminar-input-receiving pyramids: prominent V1 > S1 > M1 (0).", "text_access": "abstract_only", "study_system": "Acute slices of mouse M1, S1 and V1; ChR2 in GABAergic neurons; laser scanning photostimulation to excitatory cells across all principal layers", "argument_role": "supporting", "replication_status": "single_study", "claim_source_sentence": "Subsets of pyramidal cells in layers 2/3 and 5B received extensive translaminar inhibition. These neurons were prominent in V1, where they might correspond to complex cells, less numerous in barrel cortex and absent in M1.", "source_provenance_status": "non_substring_match", "replication_evidence_dois": [], "effect_size_source_sentence": "Subsets of pyramidal cells in layers 2/3 and 5B received extensive translaminar inhibition." }, "section_id": "section_04", "source_url": "https://github.com/AllenNeuralDynamics/ComputationalReviewRecurrence/blob/79ce062d54a924ce05953ec90aa9d26044d2b48f/evidence/section_04_evidence_package.json", "effect_size": "Translaminar-input-receiving pyramids: prominent V1 > S1 > M1 (0).", "review_repo": "ComputationalReviewRecurrence", "section_ref": "wiki_page:computationalreviewrecurrence-04-translaminar", "source_kind": "review_finding", "source_path": "evidence/section_04_evidence_package.json", "source_refs": [ "paper:paper-2d91d6473ba4" ], "source_span": "Subsets of pyramidal cells in layers 2/3 and 5B received extensive translaminar inhibition. These neurons were prominent in V1, where they might correspond to complex cells, less numerous in barrel cortex and absent in M1.", "study_system": "Acute slices of mouse M1, S1 and V1; ChR2 in GABAergic neurons; laser scanning photostimulation to excitatory cells across all principal layers", "evidence_refs": [ { "ref": "paper:paper-2d91d6473ba4" } ], "section_title": "4. Translaminar excitatory loops in mouse — L4→L2/3→L5→L6→L4 within the column; asymmetry of forward and backward intracortical projections", "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": "79ce062d54a924ce05953ec90aa9d26044d2b48f", "source_repository_url": "https://github.com/AllenNeuralDynamics/ComputationalReviewRecurrence" }, "evidence_summary": "Genetically targeted photostimulation of GABAergic neurons in a ChR2 knock-in mouse line to map laminar input patterns across M1, S1 and V1.", "review_bundle_ref": "analysis_bundle:ab-d9c479db9be9", "replication_status": "single_study", "review_package_ref": "analysis_bundle:ab-d9c479db9be9", "source_artifact_ref": "wiki_page:computationalreviewrecurrence-04-translaminar", "origin_url": "https://github.com/AllenNeuralDynamics/ComputationalReviewRecurrence/blob/79ce062d54a924ce05953ec90aa9d26044d2b48f/evidence/section_04_evidence_package.json", "commit_sha": "79ce062d54a924ce05953ec90aa9d26044d2b48f", "created_by": "persona-jerome-lecoq-gbo-neuroscience", "repository_url": "https://github.com/AllenNeuralDynamics/ComputationalReviewRecurrence" }