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        <identifier>oai:ipsj.ixsq.nii.ac.jp:00218303</identifier>
        <datestamp>2025-01-19T15:11:44Z</datestamp>
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          <dc:title>伸縮性を有する二次元通信シート</dc:title>
          <dc:title xml:lang="en">Stretchable Two-Dimensional Communication Sheet</dc:title>
          <jpcoar:creator>
            <jpcoar:creatorName>高柳, 直歩</jpcoar:creatorName>
          </jpcoar:creator>
          <jpcoar:creator>
            <jpcoar:creatorName>松久, 直司</jpcoar:creatorName>
          </jpcoar:creator>
          <jpcoar:creator>
            <jpcoar:creatorName>杉浦, 裕太</jpcoar:creatorName>
          </jpcoar:creator>
          <jpcoar:creator>
            <jpcoar:creatorName xml:lang="en">Naoto, Takayanagi</jpcoar:creatorName>
          </jpcoar:creator>
          <jpcoar:creator>
            <jpcoar:creatorName xml:lang="en">Naoji, Matsuhisa</jpcoar:creatorName>
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          <jpcoar:creator>
            <jpcoar:creatorName xml:lang="en">Yuta, Sugiura</jpcoar:creatorName>
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          <jpcoar:subject subjectScheme="Other">映像・通信技術</jpcoar:subject>
          <datacite:description descriptionType="Other">In this study, we propose a two-dimensional communication sheet that can be subjected to elastic strain up to approximately 50%. The sheet consists of a stretchable conductor layer, a dielectric layer, and a stretchable conductive grid layer. The sheet is made by attaching a thermoplastic polyurethane ﬁlm to a commercially available quake-resistant mat and screen-printing conductive ink on top of the ﬁlm. The sheet is attached directly to the surface of the human skin and can supply power to devices placed on it without interfering with the movement of joints and other parts of the body. We conﬁrmed the eﬀectiveness of the sheet by investigating how the transmission status changes when the sheet is actually stretched and retracted.</datacite:description>
          <datacite:description descriptionType="Other">In this study, we propose a two-dimensional communication sheet that can be subjected to elastic strain up to approximately 50%. The sheet consists of a stretchable conductor layer, a dielectric layer, and a stretchable conductive grid layer. The sheet is made by attaching a thermoplastic polyurethane ﬁlm to a commercially available quake-resistant mat and screen-printing conductive ink on top of the ﬁlm. The sheet is attached directly to the surface of the human skin and can supply power to devices placed on it without interfering with the movement of joints and other parts of the body. We conﬁrmed the eﬀectiveness of the sheet by investigating how the transmission status changes when the sheet is actually stretched and retracted.</datacite:description>
          <dc:publisher xml:lang="ja">情報処理学会</dc:publisher>
          <datacite:date dateType="Issued">2022-06-09</datacite:date>
          <dc:language>jpn</dc:language>
          <dc:type rdf:resource="http://purl.org/coar/resource_type/c_18gh">technical report</dc:type>
          <jpcoar:identifier identifierType="URI">https://ipsj.ixsq.nii.ac.jp/records/218303</jpcoar:identifier>
          <jpcoar:sourceIdentifier identifierType="ISSN">2188-8760</jpcoar:sourceIdentifier>
          <jpcoar:sourceIdentifier identifierType="NCID">AA1221543X</jpcoar:sourceIdentifier>
          <jpcoar:sourceTitle>研究報告ヒューマンコンピュータインタラクション（HCI）</jpcoar:sourceTitle>
          <jpcoar:volume>2022-HCI-198</jpcoar:volume>
          <jpcoar:issue>17</jpcoar:issue>
          <jpcoar:pageStart>1</jpcoar:pageStart>
          <jpcoar:pageEnd>4</jpcoar:pageEnd>
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            <datacite:date dateType="Available">2024-06-09</datacite:date>
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