{
  "@type": "dcat:Dataset",
  "accessLevel": "public",
  "bureauCode": [
    "009:25"
  ],
  "contactPoint": {
    "@type": "vcard:Contact",
    "fn": "NIH/NCBI Data Team",
    "hasEmail": "mailto:info@ncbi.nlm.nih.gov"
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  "description": "Principles of magnetic resonance are employed to generate data, such as image intensity data, reflecting the spatial distribution of one or more isotopes carried in a solid-state specimen such as bone. The spatial distribution data can be employed, e.g., to calculate bone mineral density and/or degree of mineralization.",
  "distribution": [
    {
      "@type": "dcat:Distribution",
      "description": "Access the complete Patent AT-E401037-T1: [Translated] IMAGING USING SOLID STATE NUCLEAR MAGNETIC RESONANCE on the official website.",
      "downloadURL": "https://pubchem.ncbi.nlm.nih.gov/patent/AT-E401037-T1",
      "mediaType": "text/html",
      "title": "Official Data Source"
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  "identifier": "https://healthdata.gov/api/views/763b-rvdt",
  "issued": "2025-09-05",
  "keyword": [
    "chemistry",
    "innovation",
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    "pubchem",
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  "landingPage": "https://healthdata.gov/d/763b-rvdt",
  "modified": "2025-09-06",
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  "publisher": {
    "@type": "org:Organization",
    "name": "National Center for Biotechnology Information (NCBI)"
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  "theme": [
    "NIH"
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  "title": "Patent AT-E401037-T1: [Translated] IMAGING USING SOLID STATE NUCLEAR MAGNETIC RESONANCE"
}