- raw_fields
{
"n": 0,
"doi": "10.1152/jn.00155.2024",
"claim": "GPe-STN fiber activation during pallidal DBS does not significantly improve rigidity, whereas distinct fiber subsets correlate with rigidity reduction, dissecting therapeutic substrates of GPi-DBS.",
"cite_key": "Lecy2024",
"evidence": "Neural pathways associated with reduced rigidity during pallidal deep brain stimulation for Parkinson's disease.",
"effect_size": "",
"text_access": "fulltext",
"study_system": "rat",
"source_cluster_id": "cluster_04",
"replication_status": "replication_unknown",
"claim_source_sentence": "In contrast, GPeSTN fiber activation was associated with increased stiffness and angular impulse, but these relationships did not reach threshold of significance (stiffness: passive P = 0.097, active P = 0.076; angular impulse: passive P = 0.059, active P = 0.12).",
"replication_evidence_dois": [],
"effect_size_source_sentence": null
}- source_refs
[
"paper:paper-8e207dde861d"
]
- source_span
In contrast, GPeSTN fiber activation was associated with increased stiffness and angular impulse, but these relationships did not reach threshold of significance (stiffness: passive P = 0.097, active P = 0.076; angular impulse: passive P = 0.059, active P = 0.12).
- evidence_refs
[
{
"ref": "paper:paper-8e207dde861d"
}
]- 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": "0632aae8abc141909207fe91f6349b9e36489c3b",
"source_repository_url": "https://github.com/AllenNeuralDynamics/ComputationalReviewLoops"
}