{
 "@context": "https://schema.org",
 "@type": "Claim",
 "@id": "https://wulfkaal.github.io/positions/2026-07-31-1459",
 "identifier": "kaal:position:2026-07-31-1459",
 "additionalType": "https://wulfkaal.github.io/positions/schema.json#AffirmedPositionClaim",
 "name": "Historical F67629Bbcb2A888C2E6D",
 "text": "Dynamic Regulation of the Activated, Autophosphorylated State of Ca2+/Calmodulin‐Dependent Protein Kinase II by Acute Neuronal Excitation In Vivo should be assessed against Kaal's source-bound claim that The pacing problem arises from a two sided divergence: innovation driven by science and technology is accelerating at the same time that federal and state agencies' regulatory processes have slowed down and continue to slow down. The current metadata indicates a plausible connection through dynamic regulation, but the defensible response is a qualification until the source text confirms agreement, scope, methods, and limitations.",
 "author": {
  "@type": "Person",
  "name": "Wulf A. Kaal",
  "identifier": "https://orcid.org/0009-0008-7840-1847"
 },
 "datePublished": "2026-07-31",
 "dateModified": "2026-07-31",
 "creativeWorkStatus": "Affirmed",
 "responseType": "qualification",
 "keywords": [
  "dynamic-regulation",
  "innovation"
 ],
 "scope_conditions": [
  "Apply only within the source-bound Kaal claim's stated scope.",
  "External evidence level: metadata only.",
  "Mapping review tier: mapping review before claim review.",
  "The literature-to-claim mapping remains explicitly ambiguous and should not be treated as a settled equivalence."
 ],
 "currentDebate": {
  "name": "Dynamic Regulation of the Activated, Autophosphorylated State of Ca2+/Calmodulin‐Dependent Protein Kinase II by Acute Neuronal Excitation In Vivo",
  "url": "https://www.semanticscholar.org/paper/daa1fe137f5df75c53eac51572c2bfd925e7ee1e"
 },
 "extends": {
  "identifier": "kaal:claim:2831040-001",
  "url": "https://wulfkaal.github.io/claims/2831040-001",
  "citation": "Wulf A. Kaal, Dynamic Regulation for Innovation (2016). SSRN: https://ssrn.com/abstract=2831040",
  "paper": "Dynamic Regulation for Innovation",
  "authors": [
   "Wulf A. Kaal"
  ],
  "year": "2016",
  "ssrn": "https://ssrn.com/abstract=2831040",
  "source_pdf_sha256": "de5156f14f44a5753cab55b6c4b03049eda58a143b99e08ef427aee1d261e1bf"
 },
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  {
   "@id": "https://wulfkaal.github.io/claims/2831040-001"
  },
  {
   "@type": "CreativeWork",
   "name": "Dynamic Regulation of the Activated, Autophosphorylated State of Ca2+/Calmodulin‐Dependent Protein Kinase II by Acute Neuronal Excitation In Vivo",
   "url": "https://www.semanticscholar.org/paper/daa1fe137f5df75c53eac51572c2bfd925e7ee1e"
  }
 ],
 "batch_id": "historical-backfill:2026-07-31:phase-0006",
 "review_provenance": "https://kaal-signal-desk.wulf577462.chatgpt.site/#review",
 "publicationStatus": "public",
 "recordTypeNote": "Dated commentary position extending a scholarly corpus claim. Not a verbatim claim extracted from the paper.",
 "isPartOf": {
  "@id": "https://wulfkaal.github.io/positions/index.json"
 },
 "version": "1.0",
 "canonical_url": "https://wulfkaal.github.io/positions/2026-07-31-1459",
 "canonicalForm": "https://wulfkaal.github.io/positions/2026-07-31-1459.md",
 "candidateId": "kaal:response-candidate:2026-07-31:72b98c3cb83b2d3c",
 "evidenceLevel": "metadata only",
 "reviewTier": "mapping review before claim review",
 "mappingConfidence": 0.3046,
 "mappingAmbiguous": true,
 "mappingMethod": "idf-weighted multi-field mapping v1",
 "mappingWhyRelevant": "Shared high-information concepts: dynamic, regulation, state. Scope: review source claim scope.",
 "sourceProvenance": {
  "source": "Semantic Scholar",
  "api": "https://api.semanticscholar.org/graph/v1/paper/search/bulk",
  "query": "dynamic regulation",
  "queryId": "concept:516a267369f9",
  "page": 7,
  "sourceRank": 6349,
  "retrievedAt": "2026-07-31T13:58:24.892Z",
  "citationCount": 20,
  "venue": "Journal of Neurochemistry",
  "publicationTypes": [
   "JournalArticle"
  ]
 },
 "userAffirmation": "Approved as written by Wulf A. Kaal on 2026-07-31.",
 "sha256": "83a1306f748afa954e5b0188a4645b1f2302bf9718fc3a5466174ab5dd1d8cd0"
}
