<?xml version="1.0" encoding="UTF-8"?>
<?xml-stylesheet type="text/xsl" href="https://m2.mtmt.hu/xsl/gui3.xsl" ?>
<myciteResult>
  <serverUrl>https://m2.mtmt.hu/</serverUrl>
  <labelLang>eng</labelLang>
  <responseDate>2026-09-20 21:08</responseDate>
  <content>
    <publication>
      <otype>JournalArticle</otype>
      <mtid>27192501</mtid>
      <status>VALIDATED</status>
      <published>true</published>
      <comment>N1 Funding details: 1U01NS099691, BRAIN, Bio-oriented Technology Research Advancement Institution
N1 Funding details: MH106906, NIH, National Institutes of Health
N1 Funding text: This work was supported in part by the National Institutes of Health award (MH106906) and BRAIN Initiative award (1U01NS099691) to DZ.
Paris Descartes University, Neurophotonics Laboratory, CNRS UMR8250, Paris, France            
            Yale University School of Medicine, Department of Cellular and Molecular Physiology, New Haven, CT, United States            
            Université Grenoble Alpes and CNRS, Laboratory for Interdisciplinary Physics, UMR 5588, Saint Martin d'Hères, France            
            Laboratories of Excellence, Ion Channel Science and Therapeutics, France            
            Institut National de la Santé et Recherche Médicale, Grenoble, France            
            Institute of Experimental Medicine of the Hungarian Academy of Sciences, Budapest, Hungary            
            Cited By :11            
            Export Date: 14 November 2019            
            Correspondence Address: Zecevic, D.; Yale University School of Medicine, Department of Cellular and Molecular PhysiologyUnited States; email: dejan.zecevic@yale.edu            
            Chemicals/CAS: glutamic acid, 11070-68-1, 138-15-8, 56-86-0, 6899-05-4            
            Funding details: National Institutes of Health, MH106906            
            Funding details: Bio-oriented Technology Research Advancement Institution, 1U01NS099691            
            Funding text 1: This work was supported in part by the National Institutes of Health award (MH106906) and BRAIN Initiative award (1U01NS099691) to DZ.
Paris Descartes University, Neurophotonics Laboratory, CNRS UMR8250, Paris, France            
            Yale University School of Medicine, Department of Cellular and Molecular Physiology, New Haven, CT, United States            
            Université Grenoble Alpes and CNRS, Laboratory for Interdisciplinary Physics, UMR 5588, Saint Martin d'Hères, France            
            Laboratories of Excellence, Ion Channel Science and Therapeutics, France            
            Institut National de la Santé et Recherche Médicale, Grenoble, France            
            Institute of Experimental Medicine of the Hungarian Academy of Sciences, Budapest, Hungary            
            Cited By :12            
            Export Date: 22 April 2020            
            Correspondence Address: Zecevic, D.; Yale University School of Medicine, Department of Cellular and Molecular PhysiologyUnited States; email: dejan.zecevic@yale.edu            
            Chemicals/CAS: glutamic acid, 11070-68-1, 138-15-8, 56-86-0, 6899-05-4            
            Funding details: National Institutes of Health, NIH, MH106906            
            Funding details: Bio-oriented Technology Research Advancement Institution, BRAIN, 1U01NS099691            
            Funding text 1: This work was supported in part by the National Institutes of Health award (MH106906) and BRAIN Initiative award (1U01NS099691) to DZ.
Paris Descartes University, Neurophotonics Laboratory, CNRS UMR8250, Paris, France            
            Yale University School of Medicine, Department of Cellular and Molecular Physiology, New Haven, CT, United States            
            Université Grenoble Alpes and CNRS, Laboratory for Interdisciplinary Physics, UMR 5588, Saint Martin d'Hères, France            
            Laboratories of Excellence, Ion Channel Science and Therapeutics, France            
            Institut National de la Santé et Recherche Médicale, Grenoble, France            
            Institute of Experimental Medicine of the Hungarian Academy of Sciences, Budapest, Hungary            
            Cited By :12            
            Export Date: 13 May 2020            
            Correspondence Address: Zecevic, D.; Yale University School of Medicine, Department of Cellular and Molecular PhysiologyUnited States; email: dejan.zecevic@yale.edu            
            Chemicals/CAS: glutamic acid, 11070-68-1, 138-15-8, 56-86-0, 6899-05-4            
            Funding details: National Institutes of Health, NIH, MH106906            
            Funding details: Bio-oriented Technology Research Advancement Institution, BRAIN, 1U01NS099691            
            Funding text 1: This work was supported in part by the National Institutes of Health award (MH106906) and BRAIN Initiative award (1U01NS099691) to DZ.
Paris Descartes University, Neurophotonics Laboratory, CNRS UMR8250, Paris, France            
            Yale University School of Medicine, Department of Cellular and Molecular Physiology, New Haven, CT, United States            
            Université Grenoble Alpes and CNRS, Laboratory for Interdisciplinary Physics, UMR 5588, Saint Martin d'Hères, France            
            Laboratories of Excellence, Ion Channel Science and Therapeutics, France            
            Institut National de la Santé et Recherche Médicale, Grenoble, France            
            Institute of Experimental Medicine of the Hungarian Academy of Sciences, Budapest, Hungary            
            Cited By :16            
            Export Date: 17 March 2021            
            Correspondence Address: Zecevic, D.; Yale University School of Medicine, United States; email: dejan.zecevic@yale.edu            
            Chemicals/CAS: glutamic acid, 11070-68-1, 138-15-8, 56-86-0, 6899-05-4            
            Funding details: National Institutes of Health, NIH, MH106906            
            Funding details: Horizon 2020 Framework Programme, H2020, 682426            
            Funding details: Bio-oriented Technology Research Advancement Institution, BRAIN, 1U01NS099691            
            Funding text 1: This work was supported in part by the National Institutes of Health award (MH106906) and BRAIN Initiative award (1U01NS099691) to DZ.
Paris Descartes University, Neurophotonics Laboratory, CNRS UMR8250, Paris, France            
            Yale University School of Medicine, Department of Cellular and Molecular Physiology, New Haven, CT, United States            
            Université Grenoble Alpes and CNRS, Laboratory for Interdisciplinary Physics, UMR 5588, Saint Martin d'Hères, France            
            Laboratories of Excellence, Ion Channel Science and Therapeutics, France            
            Institut National de la Santé et Recherche Médicale, Grenoble, France            
            Institute of Experimental Medicine of the Hungarian Academy of Sciences, Budapest, Hungary            
            Cited By :16            
            Export Date: 30 March 2021            
            Correspondence Address: Zecevic, D.; Yale University School of Medicine, United States; email: dejan.zecevic@yale.edu            
            Chemicals/CAS: glutamic acid, 11070-68-1, 138-15-8, 56-86-0, 6899-05-4            
            Funding details: National Institutes of Health, NIH, MH106906            
            Funding details: Horizon 2020 Framework Programme, H2020, 682426            
            Funding details: Bio-oriented Technology Research Advancement Institution, BRAIN, 1U01NS099691            
            Funding text 1: This work was supported in part by the National Institutes of Health award (MH106906) and BRAIN Initiative award (1U01NS099691) to DZ.
Paris Descartes University, Neurophotonics Laboratory, CNRS UMR8250, Paris, France            
            Yale University School of Medicine, Department of Cellular and Molecular Physiology, New Haven, CT, United States            
            Université Grenoble Alpes and CNRS, Laboratory for Interdisciplinary Physics, UMR 5588, Saint Martin d'Hères, France            
            Laboratories of Excellence, Ion Channel Science and Therapeutics, France            
            Institut National de la Santé et Recherche Médicale, Grenoble, France            
            Institute of Experimental Medicine of the Hungarian Academy of Sciences, Budapest, Hungary            
            Cited By :16            
            Export Date: 20 April 2021            
            Correspondence Address: Zecevic, D.; Yale University School of Medicine, United States; email: dejan.zecevic@yale.edu            
            Chemicals/CAS: glutamic acid, 11070-68-1, 138-15-8, 56-86-0, 6899-05-4            
            Funding details: National Institutes of Health, NIH, MH106906            
            Funding details: Horizon 2020 Framework Programme, H2020, 682426            
            Funding details: Bio-oriented Technology Research Advancement Institution, BRAIN, 1U01NS099691            
            Funding text 1: This work was supported in part by the National Institutes of Health award (MH106906) and BRAIN Initiative award (1U01NS099691) to DZ.
Paris Descartes University, Neurophotonics Laboratory, CNRS UMR8250, Paris, France            
            Yale University School of Medicine, Department of Cellular and Molecular Physiology, New Haven, CT, United States            
            Université Grenoble Alpes and CNRS, Laboratory for Interdisciplinary Physics, UMR 5588, Saint Martin d'Hères, France            
            Laboratories of Excellence, Ion Channel Science and Therapeutics, France            
            Institut National de la Santé et Recherche Médicale, Grenoble, France            
            Institute of Experimental Medicine of the Hungarian Academy of Sciences, Budapest, Hungary            
            Cited By :16            
            Export Date: 23 April 2021            
            Correspondence Address: Zecevic, D.; Yale University School of Medicine, United States; email: dejan.zecevic@yale.edu            
            Chemicals/CAS: glutamic acid, 11070-68-1, 138-15-8, 56-86-0, 6899-05-4            
            Funding details: National Institutes of Health, NIH, MH106906            
            Funding details: Horizon 2020 Framework Programme, H2020, 682426            
            Funding details: Bio-oriented Technology Research Advancement Institution, BRAIN, 1U01NS099691            
            Funding text 1: This work was supported in part by the National Institutes of Health award (MH106906) and BRAIN Initiative award (1U01NS099691) to DZ.</comment>
      <unhandledTickets>0</unhandledTickets>
      <oldTimestamp>2018-04-13T06:53:22.000+0000</oldTimestamp>
      <deleted>false</deleted>
      <oldId>17192501</oldId>
      <lastRefresh>2026-08-30T22:31:09.162+0000</lastRefresh>
      <lastModified>2024-02-29T18:30:52.309+0000</lastModified>
      <created>2018-03-04T14:32:57.000+0000</created>
      <creator>
        <snippet>true</snippet>
        <mtid>10012926</mtid>
        <familyName>Rózsa J.</familyName>
        <givenName>Balázs</givenName>
        <link>/api/author/10012926</link>
        <otype>Author</otype>
        <label>Balázs Rózsa J. (Idegtudomány, fizika)</label>
        <published>true</published>
        <oldId>10012926</oldId>
      </creator>
      <lastDuplumOK>2025-03-22T18:50:57.280+0000</lastDuplumOK>
      <lastDuplumSearch>2025-03-22T18:50:57.280+0000</lastDuplumSearch>
      <validated>2019-05-22T08:46:38.083+0000</validated>
      <validator>
        <snippet>true</snippet>
        <mtid>10063747</mtid>
        <familyName>Szepesi</familyName>
        <givenName>Dóra Anna</givenName>
        <link>/api/admin/10063747</link>
        <otype>Admin</otype>
        <label>Dóra Anna Szepesi (SE_KK_Admin5 - INAKTÍV, admin)</label>
        <published>true</published>
        <oldId>10063747</oldId>
      </validator>
      <core>true</core>
      <publicationPending>false</publicationPending>
      <type>
        <snippet>true</snippet>
        <mtid>24</mtid>
        <code>24</code>
        <link>/api/publicationtype/24</link>
        <otype>PublicationType</otype>
        <label>Journal Article</label>
        <listPosition>1</listPosition>
        <published>true</published>
        <oldId>24</oldId>
        <otypeName>JournalArticle</otypeName>
      </type>
      <subType>
        <snippet>true</snippet>
        <mtid>10000059</mtid>
        <nameEng>Article</nameEng>
        <docType>
          <snippet>true</snippet>
          <mtid>24</mtid>
          <code>24</code>
          <link>/api/publicationtype/24</link>
          <otype>PublicationType</otype>
          <label>Journal Article</label>
          <listPosition>1</listPosition>
          <published>true</published>
          <oldId>24</oldId>
          <otypeName>JournalArticle</otypeName>
        </docType>
        <link>/api/subtype/10000059</link>
        <name>Szakcikk</name>
        <otype>SubType</otype>
        <label>Article (Journal Article)</label>
        <listPosition>101</listPosition>
        <published>true</published>
        <oldId>10000059</oldId>
      </subType>
      <category>
        <snippet>true</snippet>
        <mtid>1</mtid>
        <link>/api/category/1</link>
        <otype>Category</otype>
        <label>Scientific</label>
        <published>true</published>
        <oldId>1</oldId>
      </category>
      <firstAuthor>Tanese, D</firstAuthor>
      <title>Imaging membrane potential changes from dendritic spines using computer-generated holography</title>
      <journal>
        <snippet>true</snippet>
        <sciIndexed>true</sciIndexed>
        <link>/api/journal/10033269</link>
        <reviewType>REVIEWED</reviewType>
        <label>NEUROPHOTONICS 2329-423X 2329-4248</label>
        <published>true</published>
        <hungarian>false</hungarian>
        <oldId>10033269</oldId>
        <noIF>false</noIF>
        <mtid>10033269</mtid>
        <scopusIndexed>true</scopusIndexed>
        <pIssn>2329-423X</pIssn>
        <eIssn>2329-4248</eIssn>
        <otype>Journal</otype>
        <lang>FOREIGN</lang>
      </journal>
      <volume>4</volume>
      <issue>3</issue>
      <internalId>031211</internalId>
      <firstPageOrInternalIdForSort>031211</firstPageOrInternalIdForSort>
      <publishedYear>2017</publishedYear>
      <digital>true</digital>
      <printed/>
      <sourceYear>2018</sourceYear>
      <packet>783251</packet>
      <foreignEdition>true</foreignEdition>
      <foreignLanguage>true</foreignLanguage>
      <fullPublication>true</fullPublication>
      <conferencePublication>false</conferencePublication>
      <nationalOrigin>true</nationalOrigin>
      <missingAuthor>false</missingAuthor>
      <oaType>NONE</oaType>
      <oaCheckDate>2026-08-31</oaCheckDate>
      <oaFree>false</oaFree>
      <citationCount>23</citationCount>
      <citationCountUnpublished>2</citationCountUnpublished>
      <citationCountWoOther>23</citationCountWoOther>
      <independentCitCountWoOther>18</independentCitCountWoOther>
      <nationalOriginCitationCount>0</nationalOriginCitationCount>
      <foreignEditionCitationCount>23</foreignEditionCitationCount>
      <doiCitationCount>23</doiCitationCount>
      <wosCitationCount>21</wosCitationCount>
      <scopusCitationCount>23</scopusCitationCount>
      <wosScopusCitationCount>23</wosScopusCitationCount>
      <wosScopusCitationCountWoOther>23</wosScopusCitationCountWoOther>
      <wosScopusIndependentCitationCount>18</wosScopusIndependentCitationCount>
      <wosScopusIndependentCitationCountWoOther>18</wosScopusIndependentCitationCountWoOther>
      <independentCitationCount>18</independentCitationCount>
      <selfCitationCount>5</selfCitationCount>
      <unhandledCitationCount>0</unhandledCitationCount>
      <citingPubCount>23</citingPubCount>
      <independentCitingPubCount>18</independentCitingPubCount>
      <citingPubCountWoOther>23</citingPubCountWoOther>
      <independentCitingPubCountWoOther>18</independentCitingPubCountWoOther>
      <unhandledCitingPubCount>0</unhandledCitingPubCount>
      <citedPubCount>3</citedPubCount>
      <citedCount>3</citedCount>
      <pubStats>
        <types>
          <type>Folyóiratcikk</type>
          <typeEng>Journal Article</typeEng>
          <code>24</code>
          <count>23</count>
        </types>
        <types>
          <type>Könyvrészlet</type>
          <typeEng>Chapter in Book</typeEng>
          <code>25</code>
          <count>0</count>
        </types>
        <types>
          <type>Könyv</type>
          <typeEng>Book</typeEng>
          <code>23</code>
          <count>0</count>
        </types>
        <types>
          <type>Egyéb konferenciaközlemény</type>
          <typeEng>Conference paper</typeEng>
          <code>31</code>
          <count>0</count>
        </types>
        <types>
          <type>Egyéb konferenciakötet</type>
          <typeEng>Conference proceedings</typeEng>
          <code>32</code>
          <count>0</count>
        </types>
        <types>
          <type>Oltalmi formák</type>
          <typeEng>Protection forms</typeEng>
          <code>26</code>
          <count>0</count>
        </types>
        <types>
          <type>Disszertáció</type>
          <typeEng>Thesis</typeEng>
          <code>28</code>
          <count>0</count>
        </types>
        <types>
          <type>Egyéb</type>
          <typeEng>Miscellaneous</typeEng>
          <code>29</code>
          <count>0</count>
        </types>
        <types>
          <type>Alkotás</type>
          <typeEng>Achievement</typeEng>
          <code>22</code>
          <count>0</count>
        </types>
        <types>
          <type>Kutatási adat</type>
          <typeEng>Research data</typeEng>
          <code>33</code>
          <count>0</count>
        </types>
        <citationTypes>
          <type>Folyóiratcikk</type>
          <typeEng>Journal Article</typeEng>
          <code>24</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Könyvrészlet</type>
          <typeEng>Chapter in Book</typeEng>
          <code>25</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Könyv</type>
          <typeEng>Book</typeEng>
          <code>23</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Egyéb konferenciaközlemény</type>
          <typeEng>Conference paper</typeEng>
          <code>31</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Egyéb konferenciakötet</type>
          <typeEng>Conference proceedings</typeEng>
          <code>32</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Oltalmi formák</type>
          <typeEng>Protection forms</typeEng>
          <code>26</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Disszertáció</type>
          <typeEng>Thesis</typeEng>
          <code>28</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Egyéb</type>
          <typeEng>Miscellaneous</typeEng>
          <code>29</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Alkotás</type>
          <typeEng>Achievement</typeEng>
          <code>22</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Kutatási adat</type>
          <typeEng>Research data</typeEng>
          <code>33</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <years>
          <year>2017</year>
          <publicationCount>0</publicationCount>
          <citationCount>3</citationCount>
          <independentCitationCount>1</independentCitationCount>
          <citingPubCount>3</citingPubCount>
          <independentCitingPubCount>1</independentCitingPubCount>
          <oaStats/>
          <oaStats2/>
        </years>
        <years>
          <year>2018</year>
          <publicationCount>0</publicationCount>
          <citationCount>4</citationCount>
          <independentCitationCount>2</independentCitationCount>
          <citingPubCount>4</citingPubCount>
          <independentCitingPubCount>2</independentCitingPubCount>
          <oaStats/>
          <oaStats2/>
        </years>
        <years>
          <year>2019</year>
          <publicationCount>0</publicationCount>
          <citationCount>4</citationCount>
          <independentCitationCount>4</independentCitationCount>
          <citingPubCount>4</citingPubCount>
          <independentCitingPubCount>4</independentCitingPubCount>
          <oaStats/>
          <oaStats2/>
        </years>
        <years>
          <year>2020</year>
          <publicationCount>0</publicationCount>
          <citationCount>4</citationCount>
          <independentCitationCount>4</independentCitationCount>
          <citingPubCount>4</citingPubCount>
          <independentCitingPubCount>4</independentCitingPubCount>
          <oaStats/>
          <oaStats2/>
        </years>
        <years>
          <year>2021</year>
          <publicationCount>0</publicationCount>
          <citationCount>2</citationCount>
          <independentCitationCount>2</independentCitationCount>
          <citingPubCount>2</citingPubCount>
          <independentCitingPubCount>2</independentCitingPubCount>
          <oaStats/>
          <oaStats2/>
        </years>
        <years>
          <year>2022</year>
          <publicationCount>0</publicationCount>
          <citationCount>0</citationCount>
          <independentCitationCount>0</independentCitationCount>
          <citingPubCount>0</citingPubCount>
          <independentCitingPubCount>0</independentCitingPubCount>
          <oaStats/>
          <oaStats2/>
        </years>
        <years>
          <year>2023</year>
          <publicationCount>0</publicationCount>
          <citationCount>2</citationCount>
          <independentCitationCount>2</independentCitationCount>
          <citingPubCount>2</citingPubCount>
          <independentCitingPubCount>2</independentCitingPubCount>
          <oaStats/>
          <oaStats2/>
        </years>
        <years>
          <year>2024</year>
          <publicationCount>0</publicationCount>
          <citationCount>2</citationCount>
          <independentCitationCount>2</independentCitationCount>
          <citingPubCount>2</citingPubCount>
          <independentCitingPubCount>2</independentCitingPubCount>
          <oaStats/>
          <oaStats2/>
        </years>
        <years>
          <year>2025</year>
          <publicationCount>0</publicationCount>
          <citationCount>2</citationCount>
          <independentCitationCount>1</independentCitationCount>
          <citingPubCount>2</citingPubCount>
          <independentCitingPubCount>1</independentCitingPubCount>
          <oaStats/>
          <oaStats2/>
        </years>
      </pubStats>
      <ratingsForSort>D1</ratingsForSort>
      <hasCitationDuplums>false</hasCitationDuplums>
      <importDuplum>false</importDuplum>
      <importOverwritten>false</importOverwritten>
      <importSkipped>false</importSkipped>
      <userChangeableUntil>2019-01-31T22:59:00.000+0000</userChangeableUntil>
      <publishDate>2018-03-04T14:35:34.000+0000</publishDate>
      <directInstitutesForSort>Neuronhálózat és Dendritikus Aktivitás Kutatócs... (HRN KOKI)</directInstitutesForSort>
      <ownerAuthorCount>1</ownerAuthorCount>
      <ownerInstituteCount>14</ownerInstituteCount>
      <directInstituteCount>1</directInstituteCount>
      <authorCount>8</authorCount>
      <contributorCount>0</contributorCount>
      <hasQualityFactor>true</hasQualityFactor>
      <languages>
        <language>
          <otype>Language</otype>
          <mtid>10002</mtid>
          <link>/api/language/10002</link>
          <label>English</label>
          <name>Angol</name>
          <nameEng>English</nameEng>
          <published>true</published>
          <oldId>2</oldId>
          <snippet>true</snippet>
        </language>
      </languages>
      <authorships>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>76165859</mtid>
          <link>/api/authorship/76165859</link>
          <label>Tanese, D</label>
          <listPosition>1</listPosition>
          <share>0.125</share>
          <first>true</first>
          <last>false</last>
          <familyName>Tanese</familyName>
          <givenName>D</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Author</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <oldId>156126837</oldId>
          <snippet>true</snippet>
        </authorship>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>76165860</mtid>
          <link>/api/authorship/76165860</link>
          <label>Weng, J-Y</label>
          <listPosition>2</listPosition>
          <share>0.125</share>
          <first>false</first>
          <last>false</last>
          <familyName>Weng</familyName>
          <givenName>J-Y</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Author</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <oldId>156126836</oldId>
          <snippet>true</snippet>
        </authorship>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>76165861</mtid>
          <link>/api/authorship/76165861</link>
          <label>Zampini, V</label>
          <listPosition>3</listPosition>
          <share>0.125</share>
          <first>false</first>
          <last>false</last>
          <familyName>Zampini</familyName>
          <givenName>V</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Author</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <oldId>156126835</oldId>
          <snippet>true</snippet>
        </authorship>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>76165862</mtid>
          <link>/api/authorship/76165862</link>
          <label>De Sars, V</label>
          <listPosition>4</listPosition>
          <share>0.125</share>
          <first>false</first>
          <last>false</last>
          <familyName>De Sars</familyName>
          <givenName>V</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Author</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <oldId>156126834</oldId>
          <snippet>true</snippet>
        </authorship>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>76165863</mtid>
          <link>/api/authorship/76165863</link>
          <label>Canepari, M</label>
          <listPosition>5</listPosition>
          <share>0.125</share>
          <first>false</first>
          <last>false</last>
          <familyName>Canepari</familyName>
          <givenName>M</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Author</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <oldId>156126833</oldId>
          <snippet>true</snippet>
        </authorship>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>76165864</mtid>
          <link>/api/authorship/76165864</link>
          <label>Rozsa, B [Rózsa J., Balázs (Idegtudomány, fizika), author] Neuronhálózat és Dendritikus Aktivitás Kutatócs...</label>
          <listPosition>6</listPosition>
          <share>0.125</share>
          <first>false</first>
          <last>false</last>
          <author>
            <otype>Author</otype>
            <mtid>10012926</mtid>
            <link>/api/author/10012926</link>
            <label>Balázs Rózsa J. (Idegtudomány, fizika)</label>
            <familyName>Rózsa J.</familyName>
            <givenName>Balázs</givenName>
            <published>true</published>
            <oldId>10012926</oldId>
            <snippet>true</snippet>
          </author>
          <familyName>Rozsa</familyName>
          <givenName>B</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Author</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <oldId>156126832</oldId>
          <snippet>true</snippet>
        </authorship>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>76165865</mtid>
          <link>/api/authorship/76165865</link>
          <label>Emiliani, V</label>
          <listPosition>7</listPosition>
          <share>0.125</share>
          <first>false</first>
          <last>false</last>
          <familyName>Emiliani</familyName>
          <givenName>V</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Author</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <oldId>156126831</oldId>
          <snippet>true</snippet>
        </authorship>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>76165866</mtid>
          <link>/api/authorship/76165866</link>
          <label>Zecevic, D</label>
          <listPosition>8</listPosition>
          <share>0.125</share>
          <first>false</first>
          <last>true</last>
          <familyName>Zecevic</familyName>
          <givenName>D</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Author</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <oldId>156126830</oldId>
          <snippet>true</snippet>
        </authorship>
      </authorships>
      <identifiers>
        <identifier>
          <otype>PublicationIdentifier</otype>
          <mtid>13623375</mtid>
          <link>/api/publicationidentifier/13623375</link>
          <label>DOI: 10.1117/1.NPh.4.3.031211</label>
          <source>
            <otype>PlainSource</otype>
            <mtid>6</mtid>
            <link>/api/publicationsource/6</link>
            <label>DOI</label>
            <type>
              <otype>PublicationSourceType</otype>
              <mtid>10001</mtid>
              <link>/api/publicationsourcetype/10001</link>
              <label>DOI</label>
              <mayHaveOa>true</mayHaveOa>
              <published>true</published>
              <snippet>true</snippet>
            </type>
            <name>DOI</name>
            <nameEng>DOI</nameEng>
            <linkPattern>https://doi.org/@@@</linkPattern>
            <publiclyVisible>true</publiclyVisible>
            <published>true</published>
            <oldId>6</oldId>
            <snippet>true</snippet>
          </source>
          <validState>IDENTICAL</validState>
          <idValue>10.1117/1.NPh.4.3.031211</idValue>
          <realUrl>https://doi.org/10.1117/1.NPh.4.3.031211</realUrl>
          <published>false</published>
          <oldId>16665865</oldId>
          <snippet>true</snippet>
        </identifier>
        <identifier>
          <otype>PublicationIdentifier</otype>
          <mtid>13623373</mtid>
          <link>/api/publicationidentifier/13623373</link>
          <label>WoS: 000413586000013</label>
          <source>
            <otype>PlainSource</otype>
            <mtid>1</mtid>
            <link>/api/publicationsource/1</link>
            <label>WoS</label>
            <type>
              <otype>PublicationSourceType</otype>
              <mtid>10003</mtid>
              <link>/api/publicationsourcetype/10003</link>
              <label>Indexelő adatbázis</label>
              <mayHaveOa>false</mayHaveOa>
              <published>true</published>
              <snippet>true</snippet>
            </type>
            <name>WoS</name>
            <nameEng>WoS</nameEng>
            <linkPattern>https://www.webofscience.com/wos/woscc/full-record/@@@</linkPattern>
            <publiclyVisible>true</publiclyVisible>
            <published>true</published>
            <oldId>1</oldId>
            <snippet>true</snippet>
          </source>
          <validState>IDENTICAL</validState>
          <idValue>000413586000013</idValue>
          <realUrl>https://www.webofscience.com/wos/woscc/full-record/000413586000013</realUrl>
          <published>false</published>
          <oldId>16870551</oldId>
          <snippet>true</snippet>
        </identifier>
        <identifier>
          <otype>PublicationIdentifier</otype>
          <mtid>13623374</mtid>
          <link>/api/publicationidentifier/13623374</link>
          <label>Scopus: 85019986934</label>
          <source>
            <otype>PlainSource</otype>
            <mtid>3</mtid>
            <link>/api/publicationsource/3</link>
            <label>Scopus</label>
            <type>
              <otype>PublicationSourceType</otype>
              <mtid>10003</mtid>
              <link>/api/publicationsourcetype/10003</link>
              <label>Indexelő adatbázis</label>
              <mayHaveOa>false</mayHaveOa>
              <published>true</published>
              <snippet>true</snippet>
            </type>
            <name>Scopus</name>
            <nameEng>Scopus</nameEng>
            <linkPattern>http://www.scopus.com/record/display.url?origin=inward&amp;eid=2-s2.0-@@@</linkPattern>
            <publiclyVisible>true</publiclyVisible>
            <published>true</published>
            <oldId>3</oldId>
            <snippet>true</snippet>
          </source>
          <validState>IDENTICAL</validState>
          <idValue>85019986934</idValue>
          <realUrl>http://www.scopus.com/record/display.url?origin=inward&amp;eid=2-s2.0-85019986934</realUrl>
          <published>false</published>
          <oldId>16665864</oldId>
          <snippet>true</snippet>
        </identifier>
        <identifier>
          <otype>PublicationIdentifier</otype>
          <mtid>25784560</mtid>
          <link>/api/publicationidentifier/25784560</link>
          <label>PubMed: 28523281</label>
          <source>
            <otype>PlainSource</otype>
            <mtid>17</mtid>
            <link>/api/publicationsource/17</link>
            <label>PubMed</label>
            <type>
              <otype>PublicationSourceType</otype>
              <mtid>10003</mtid>
              <link>/api/publicationsourcetype/10003</link>
              <label>Indexelő adatbázis</label>
              <mayHaveOa>false</mayHaveOa>
              <published>true</published>
              <snippet>true</snippet>
            </type>
            <name>PubMed</name>
            <nameEng>PubMed</nameEng>
            <linkPattern>http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;list_uids=@@@&amp;dopt=Abstract</linkPattern>
            <publiclyVisible>true</publiclyVisible>
            <published>true</published>
            <oldId>17</oldId>
            <snippet>true</snippet>
          </source>
          <validState>IDENTICAL</validState>
          <idValue>28523281</idValue>
          <realUrl>http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;list_uids=28523281&amp;dopt=Abstract</realUrl>
          <published>true</published>
          <snippet>true</snippet>
        </identifier>
      </identifiers>
      <ratings>
        <rating>
          <otype>SjrRating</otype>
          <mtid>10974906</mtid>
          <link>/api/sjrrating/10974906</link>
          <label>sjr:D1 (2017) Scopus - Radiology, Nuclear Medicine and Imaging NEUROPHOTONICS 2329-423X 2329-4248</label>
          <listPos>28</listPos>
          <rankValue>0.1</rankValue>
          <type>journal</type>
          <ratingType>
            <otype>RatingType</otype>
            <mtid>10002</mtid>
            <link>/api/ratingtype/10002</link>
            <label>sjr</label>
            <code>sjr</code>
            <published>true</published>
            <snippet>true</snippet>
          </ratingType>
          <subject>
            <otype>ClassificationExternal</otype>
            <mtid>2741</mtid>
            <link>/api/classificationexternal/2741</link>
            <label>Scopus - Radiology, Nuclear Medicine and Imaging</label>
            <published>true</published>
            <oldId>2741</oldId>
            <snippet>true</snippet>
          </subject>
          <ranking>D1</ranking>
          <calculation>DIRECT</calculation>
          <published>true</published>
          <snippet>true</snippet>
        </rating>
      </ratings>
      <references>
        <reference>
          <otype>Reference</otype>
          <mtid>2406725</mtid>
          <link>/api/reference/2406725</link>
          <label>1. Stuart, G.J., Dodt, H.U., Sakmann, B., Patch-clamp recordings from the soma and dendrites of neurons in brain slices using infrared video microscopy (1993) Pflugers Arch., 423, pp. 511-518</label>
          <listPosition>1</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406726</mtid>
          <link>/api/reference/2406726</link>
          <label>2. Stuart, G.J., Sakmann, B., Active propagation of somatic action potentials into neocortical pyramidal cell dendrites (1994) Nature, 367, pp. 69-72</label>
          <listPosition>2</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406727</mtid>
          <link>/api/reference/2406727</link>
          <label>3. Larkum, M.E., Zhu, J.J., Sakmann, B., Dendritic mechanisms underlying the coupling of the dendritic with the axonal action potential initiation zone of adult rat layer 5 pyramidal neurons (2001) J. Physiol., 533, pp. 447-466</label>
          <listPosition>3</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406728</mtid>
          <link>/api/reference/2406728</link>
          <label>4. Grier, D.G., A revolution in optical manipulation (2003) Nature, 424, pp. 810-816</label>
          <listPosition>4</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406729</mtid>
          <link>/api/reference/2406729</link>
          <label>5. Grinvald, A., Ross, W.N., Farber, I., Simultaneous optical measurements of electrical activity from multiple sites on processes of cultured neurons (1981) Proc. Natl. Acad. Sci. U. S. A., 78, pp. 3245-3249</label>
          <listPosition>5</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406730</mtid>
          <link>/api/reference/2406730</link>
          <label>6. Grinvald, A., Farber, I.C., Optical recording of calcium action potentials from growth cones of cultured neurons with a laser microbeam (1981) Science, 212, pp. 1164-1167</label>
          <listPosition>6</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406731</mtid>
          <link>/api/reference/2406731</link>
          <label>7. Parsons, T.D., Optical recording of the electrical activity of synaptically interacting Aplysia neurons in culture using potentiometric probes (1989) Biophys. J., 56, pp. 213-221</label>
          <listPosition>7</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406732</mtid>
          <link>/api/reference/2406732</link>
          <label>8. Parsons, T.D., Long-term optical recording of patterns of electrical activity in ensembles of cultured Aplysia neurons (1991) J. Neurophysiol., 66, pp. 316-333</label>
          <listPosition>8</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406733</mtid>
          <link>/api/reference/2406733</link>
          <label>9. Rohr, S., Salzberg, B.M., Characterization of impulse propagation at the microscopic level across geometrically defined expansions of excitable tissue: Multiple site optical recording of transmembrane voltage (MSORTV) in patterned growth heart cell cultures (1994) J. Gen. Physiol., 104, pp. 287-309</label>
          <listPosition>9</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406734</mtid>
          <link>/api/reference/2406734</link>
          <label>10. Ross, W.N., Krauthamer, V., Optical measurements of potential changes in axons and processes of neurons of a barnacle ganglion (1984) J. Neurosci., 4, pp. 659-672</label>
          <listPosition>10</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406735</mtid>
          <link>/api/reference/2406735</link>
          <label>11. Davila, H.V., Changes in ANS and TNS fluorescence in giant axons from Loligo (1974) J. Membr. Biol., 15, pp. 29-46</label>
          <listPosition>11</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406736</mtid>
          <link>/api/reference/2406736</link>
          <label>12. Cohen, L.B., Changes in axon fluorescence during activity: Molecular probes of membrane potential (1974) J. Membr. Biol., 19, pp. 1-36</label>
          <listPosition>12</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406737</mtid>
          <link>/api/reference/2406737</link>
          <label>13. Salzberg, B., Optical signals from giant axon following perfusion or superfusion with potentiometric probes (1978) Biol. Bull., 155, pp. 463-464</label>
          <listPosition>13</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406738</mtid>
          <link>/api/reference/2406738</link>
          <label>14. Gupta, R.K., Improvements in optical methods for measuring rapid changes in membrane potential (1981) J. Membr. Biol., 58, pp. 123-137</label>
          <listPosition>14</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406739</mtid>
          <link>/api/reference/2406739</link>
          <label>15. Obaid, A., Shimizu, H., Salzberg, B., Intracellular staining with potentiometric dyes: Optical signals from identified leech neurons and their processes (1982) Biol. Bull., 163, p. 388</label>
          <listPosition>15</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406740</mtid>
          <link>/api/reference/2406740</link>
          <label>16. Grinvald, A., Optical recording of synaptic potentials from processes of single neurons using intracellular potentiometric dyes (1987) Biophys. J., 51, pp. 643-651</label>
          <listPosition>16</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406741</mtid>
          <link>/api/reference/2406741</link>
          <label>17. Waggoner, A., Grinvald, A., Mechanisms of rapid optical changes of potential sensitive dyes (1977) Ann. N.Y. Acad. Sci., 303, pp. 217-242</label>
          <listPosition>17</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406742</mtid>
          <link>/api/reference/2406742</link>
          <label>18. Grinvald, A., Improved fluorescent probes for the measurement of rapid changes in membrane potential (1982) Biophys. J., 39, pp. 301-308</label>
          <listPosition>18</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406743</mtid>
          <link>/api/reference/2406743</link>
          <label>19. Cohen, L.B., Lesher, S., Optical monitoring of membrane potential: Methods of multisite optical measurement (1986) Soc. Gen. Physiol. Ser., 40, pp. 71-99</label>
          <listPosition>19</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406744</mtid>
          <link>/api/reference/2406744</link>
          <label>20. Holthoff, K., Zecevic, D., Konnerth, A., Rapid time course of action potentials in spines and remote dendrites of mouse visual cortex neurons (2010) J. Physiol., 588, pp. 1085-1096</label>
          <listPosition>20</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406745</mtid>
          <link>/api/reference/2406745</link>
          <label>21. Djurisic, M., Voltage imaging from dendrites of mitral cells: EPSP attenuation and spike trigger zones (2004) J. Neurosci., 24, pp. 6703-6714</label>
          <listPosition>21</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406746</mtid>
          <link>/api/reference/2406746</link>
          <label>22. Djurisic, M., Functional structure of the mitral cell dendritic tuft in the rat olfactory bulb (2008) J. Neurosci., 28, pp. 4057-4068</label>
          <listPosition>22</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406747</mtid>
          <link>/api/reference/2406747</link>
          <label>23. Zhou, W.-L., Dynamics of action potential backpropagation in basal dendrites of prefrontal cortical pyramidal neurons (2008) Eur. J. Neurosci., 27, pp. 923-936</label>
          <listPosition>23</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406748</mtid>
          <link>/api/reference/2406748</link>
          <label>24. Acker, C.D., Antic, S.D., Quantitative assessment of the distributions of membrane conductances involved in action potential backpropagation along basal dendrites (2009) J. Neurophysiol., 101, pp. 1524-1541</label>
          <listPosition>24</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406749</mtid>
          <link>/api/reference/2406749</link>
          <label>25. Yuste, R., Denk, W., Dendritic spines as basic functional units of neuronal integration (1995) Nature, 375, pp. 682-684</label>
          <listPosition>25</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406750</mtid>
          <link>/api/reference/2406750</link>
          <label>26. Sabatini, B.L., Oertner, T.G., Svoboda, K., The life cycle of Ca(2+) ions in dendritic spines (2002) Neuron, 33, pp. 439-452</label>
          <listPosition>26</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406751</mtid>
          <link>/api/reference/2406751</link>
          <label>27. Noguchi, J., Spine-neck geometry determines NMDA receptordependent Ca2+ signaling in dendrites (2005) Neuron, 46, pp. 609-622</label>
          <listPosition>27</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406752</mtid>
          <link>/api/reference/2406752</link>
          <label>28. Rall, W., Cellular mechanisms subserving changes in neuronal activity (1974) The Theoretical Foundation of Dendritic Function, , MIT Press, London, England</label>
          <listPosition>28</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406753</mtid>
          <link>/api/reference/2406753</link>
          <label>29. Koch, C., Zador, A., The function of dendritic spines: Devices subserving biochemical rather than electrical compartmentalization (1993) J. Neurosci., 13, pp. 413-422</label>
          <listPosition>29</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406754</mtid>
          <link>/api/reference/2406754</link>
          <label>30. Sala, C., Segal, M., Dendritic spines: The locus of structural and functional plasticity (2014) Physiol. Rev., 94, pp. 141-188</label>
          <listPosition>30</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406755</mtid>
          <link>/api/reference/2406755</link>
          <label>31. Segev, I., Rall, W., Excitable dendrites and spines: Earlier theoretical insights elucidate recent direct observations (1998) Trends Neurosci., 21, pp. 453-460</label>
          <listPosition>31</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406756</mtid>
          <link>/api/reference/2406756</link>
          <label>32. Jack, J., Noble, D., Tsien, R., (1975) Electric Current Flow in Excitable Cells, , Oxford University Press, London</label>
          <listPosition>32</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406757</mtid>
          <link>/api/reference/2406757</link>
          <label>33. Bloodgood, B.L., Sabatini, B.L., Neuronal activity regulates diffusion across the neck of dendritic spines (2005) Science, 310, pp. 866-869</label>
          <listPosition>33</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406758</mtid>
          <link>/api/reference/2406758</link>
          <label>34. Araya, R., The spine neck filters membrane potentials (2006) Proc. Natl. Acad. Sci. U. S. A., 103, pp. 17961-17966</label>
          <listPosition>34</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406759</mtid>
          <link>/api/reference/2406759</link>
          <label>35. Araya, R., Eisenthal, K.B., Yuste, R., Dendritic spines linearize the summation of excitatory potentials (2006) Proc. Natl. Acad. Sci. U. S. A., 103, pp. 18799-18804</label>
          <listPosition>35</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406760</mtid>
          <link>/api/reference/2406760</link>
          <label>36. Harnett, M.T., Synaptic amplification by dendritic spines enhances input cooperativity (2012) Nature, 491, pp. 599-602</label>
          <listPosition>36</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406761</mtid>
          <link>/api/reference/2406761</link>
          <label>37. Gulledge, A.T., Carnevale, N.T., Stuart, G.J., Electrical advantages of dendritic spines (2012) PLoS One, 7, p. e36007</label>
          <listPosition>37</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406762</mtid>
          <link>/api/reference/2406762</link>
          <label>38. Acker, C.D., Hoyos, E., Loew, L.M., EPSPs measured in proximal dendritic spines of cortical pyramidal neurons (2016) Eneuro, 3, pp. 1-13</label>
          <listPosition>38</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406763</mtid>
          <link>/api/reference/2406763</link>
          <label>39. Jayant, K., Targeted intracellular voltage recordings from dendritic spines using quantum-dot-coated nanopipettes (2017) Nat. Nanotechnol., 12 (4), pp. 335-342</label>
          <listPosition>39</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406764</mtid>
          <link>/api/reference/2406764</link>
          <label>40. Svoboda, K., Tank, D.W., Denk, W., Direct measurement of coupling between dendritic spines and shafts (1996) Science, 272, pp. 716-719</label>
          <listPosition>40</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406765</mtid>
          <link>/api/reference/2406765</link>
          <label>41. Tnnesen, J., Spine neck plasticity regulates compartmentalization of synapses (2014) Nat. Neurosci., 17, pp. 678-685</label>
          <listPosition>41</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406766</mtid>
          <link>/api/reference/2406766</link>
          <label>42. Popovic, M.A., Cortical dendritic spine heads are not electrically isolated by the spine neck from membrane potential signals in parent dendrites (2014) Cereb. Cortex, 24, pp. 385-395</label>
          <listPosition>42</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406767</mtid>
          <link>/api/reference/2406767</link>
          <label>43. Popovic, M.A., Electrical behaviour of dendritic spines as revealed by voltage imaging (2015) Nat. Commun., 6, p. 8436</label>
          <listPosition>43</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406768</mtid>
          <link>/api/reference/2406768</link>
          <label>44. Obaid, A.L., Spatiotemporal patterns of activity in an intact mammalian network with single-cell resolution: Optical studies of nicotinic activity in an enteric plexus (1999) J. Neurosci., 19, pp. 3073-3093</label>
          <listPosition>44</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406769</mtid>
          <link>/api/reference/2406769</link>
          <label>45. Foust, A.J., Computer-generated holography enhances voltage dye fluorescence discrimination in adjacent neuronal structures (2015) Neurophotonics, 2, p. 21007</label>
          <listPosition>45</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406770</mtid>
          <link>/api/reference/2406770</link>
          <label>46. Anselmi, F., Three-dimensional imaging and photostimulation by remote-focusing and holographic light patterning (2011) Proc. Natl. Acad. Sci. U. S. A., 108, pp. 19504-19509</label>
          <listPosition>46</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406771</mtid>
          <link>/api/reference/2406771</link>
          <label>47. Yang, S., Three-dimensional holographic photostimulation of the dendritic arbor (2011) J. Neural. Eng., 8, p. 46002</label>
          <listPosition>47</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406772</mtid>
          <link>/api/reference/2406772</link>
          <label>48. Nikolenko, V., SLM microscopy: Scanless two-photon imaging and photostimulation using spatial light modulators (2008) Front. Neural Circuits, 2, pp. 1-14</label>
          <listPosition>48</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406773</mtid>
          <link>/api/reference/2406773</link>
          <label>49. Daria, V.R., Arbitrary multisite two-photon excitation in four dimensions (2009) Appl. Phys. Lett., 95, p. 093701</label>
          <listPosition>49</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406774</mtid>
          <link>/api/reference/2406774</link>
          <label>50. Dal Maschio, M., Simultaneous two-photon imaging and photo-stimulation with structured light illumination (2010) Opt. Express, 18, pp. 18720-18731</label>
          <listPosition>50</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406775</mtid>
          <link>/api/reference/2406775</link>
          <label>51. Antić, S., Zecević, D., Optical signals from neurons with internally applied voltage-sensitive dyes (1995) J. Neurosci., 15, pp. 1392-1405</label>
          <listPosition>51</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406776</mtid>
          <link>/api/reference/2406776</link>
          <label>52. Di Leonardo, R., Ianni, F., Ruocco, G., Computer generation of optimal holograms for optical trap arrays (2007) Opt. Express, 15, pp. 1913-1922</label>
          <listPosition>52</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406777</mtid>
          <link>/api/reference/2406777</link>
          <label>53. Conti, R., Computer generated holography with intensity-graded patterns (2016) Front. Cell. Neurosci., 10, p. 236</label>
          <listPosition>53</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406778</mtid>
          <link>/api/reference/2406778</link>
          <label>54. Hernandez, O., Three-dimensional spatiotemporal focusing of holographic patterns (2016) Nat. Commun., 7, p. 11928</label>
          <listPosition>54</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406779</mtid>
          <link>/api/reference/2406779</link>
          <label>55. Lutz, C., Holographic photolysis of caged neurotransmitters (2008) Nat. Methods, 5, pp. 821-827</label>
          <listPosition>55</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406780</mtid>
          <link>/api/reference/2406780</link>
          <label>56. Stuart, G., Spruston, N., Determinants of voltage attenuation in neocortical pyramidal neuron dendrites (1998) J. Neurosci., 18, pp. 3501-3510</label>
          <listPosition>56</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406781</mtid>
          <link>/api/reference/2406781</link>
          <label>57. Nevian, T., Properties of basal dendrites of layer 5 pyramidal neurons: A direct patch-clamp recording study (2007) Nat. Neurosci., 10, pp. 206-214</label>
          <listPosition>57</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406782</mtid>
          <link>/api/reference/2406782</link>
          <label>58. Palmer, L.M., Stuart, G.J., Membrane potential changes in dendritic spines during action potentials and synaptic input (2009) J. Neurosci., 29, pp. 6897-6903</label>
          <listPosition>58</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406783</mtid>
          <link>/api/reference/2406783</link>
          <label>59. Bovetti, S., Simultaneous high-speed imaging and optogenetic inhibition in the intact mouse brain (2017) Sci. Rep., 7, p. 40041</label>
          <listPosition>59</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406784</mtid>
          <link>/api/reference/2406784</link>
          <label>60. Quirin, S., Simultaneous imaging of neural activity in three dimensions (2014) Front. Neural Circuits, 8, p. 29</label>
          <listPosition>60</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406785</mtid>
          <link>/api/reference/2406785</link>
          <label>61. Yang, W., Simultaneous multi-plane imaging of neural circuits (2016) Neuron, 89, pp. 269-284</label>
          <listPosition>61</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406786</mtid>
          <link>/api/reference/2406786</link>
          <label>62. Reutsky-Gefen, I., Holographic optogenetic stimulation of patterned neuronal activity for vision restoration (2013) Nat. Commun., 4, p. 1509</label>
          <listPosition>62</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406787</mtid>
          <link>/api/reference/2406787</link>
          <label>63. Papagiakoumou, E., Scanless two-photon excitation of channelrhodopsin- 2 (2010) Nat. Methods, 7, pp. 848-854</label>
          <listPosition>63</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406788</mtid>
          <link>/api/reference/2406788</link>
          <label>64. Chaigneau, E., Two-photon holographic stimulation of ReaChR (2016) Front. Cell. Neurosci., 10, p. 234</label>
          <listPosition>64</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406789</mtid>
          <link>/api/reference/2406789</link>
          <label>65. Packer, A.M., Simultaneous all-optical manipulation and recording of neural circuit activity with cellular resolution in vivo (2015) Nat. Methods, 12, pp. 140-146</label>
          <listPosition>65</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406790</mtid>
          <link>/api/reference/2406790</link>
          <label>66. Ronzitti, E., Sub-millisecond optogenetic control of neuronal firing by two-photon holographic photoactivation of Chronos (2016) BioRxiv, p. 062182</label>
          <listPosition>66</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406791</mtid>
          <link>/api/reference/2406791</link>
          <label>67. Bègue, A., Two-photon excitation in scattering media by spatiotemporally shaped beams and their application in optogenetic stimulation (2013) Biomed. Opt. Express, 4, pp. 2869-2879</label>
          <listPosition>67</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406792</mtid>
          <link>/api/reference/2406792</link>
          <label>68. Davila, H.V., A large change in axon fluorescence that provides a promising method for measuring membrane potential (1973) Nature, 241, pp. 159-160</label>
          <listPosition>68</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406793</mtid>
          <link>/api/reference/2406793</link>
          <label>69. Salzberg, B.M., Optical recording of neuronal activity in an invertebrate central nervous system: Simultaneous monitoring of several neurons (1977) J. Neurophysiol., 40, pp. 1281-1291</label>
          <listPosition>69</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406794</mtid>
          <link>/api/reference/2406794</link>
          <label>70. Popovic, M., Imaging submillisecond membrane potential changes from individual regions of single axons, dendrites and spines (2015) Membrane Potential Imaging in the Nervous System and Heart, pp. 57-101. , Springer, Heidelberg, New York, London</label>
          <listPosition>70</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406795</mtid>
          <link>/api/reference/2406795</link>
          <label>71. Papagiakoumou, E., Functional patterned multiphoton excitation deep inside scattering tissue (2013) Nat. Photonics, 7, pp. 274-278</label>
          <listPosition>71</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406796</mtid>
          <link>/api/reference/2406796</link>
          <label>72. Quirin, S., Peterka, D.S., Yuste, R., Instantaneous three-dimensional sensing using spatial light modulator illumination with extended depth of field imaging (2013) Opt. Express, 21, pp. 16007-16021</label>
          <listPosition>72</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>2406797</mtid>
          <link>/api/reference/2406797</link>
          <label>73. Shipton, O.A., Left-right dissociation of hippocampal memory processes in mice (2014) Proc. Natl. Acad. Sci. U. S. A., 111, pp. 15238-15243</label>
          <listPosition>73</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
      </references>
      <link>/api/publication/27192501</link>
      <label>Tanese D et al. Imaging membrane potential changes from dendritic spines using computer-generated holography. (2017) NEUROPHOTONICS 2329-423X 2329-4248 4 3</label><template>&lt;div class=&quot;JournalArticle Publication short-list&quot;&gt; &lt;div class=&quot;authors&quot;&gt; &lt;span class=&quot;author-name&quot; &gt; Tanese, D &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; &gt; Weng, J-Y &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; &gt; Zampini, V &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; &gt; De Sars, V &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; &gt; Canepari, M &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; mtid=&quot;10012926&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10012926&quot; target=&quot;_blank&quot;&gt;Rozsa, B&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; &gt; Emiliani, V &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; &gt; Zecevic, D &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; &lt;/div &gt;&lt;div class=&quot;title&quot;&gt;&lt;a href=&quot;/gui2/?mode=browse&amp;params=publication;27192501&quot; mtid=&quot;27192501&quot; target=&quot;_blank&quot;&gt;Imaging membrane potential changes from dendritic spines using computer-generated holography&lt;/a&gt;&lt;/div&gt; &lt;div class=&quot;pub-info&quot;&gt; &lt;span class=&quot;journal-title&quot;&gt;NEUROPHOTONICS&lt;/span&gt; &lt;span class=&quot;journal-volume&quot;&gt;4&lt;/span&gt; : &lt;span class=&quot;journal-issue&quot;&gt;3&lt;/span&gt; &lt;span class=&quot;page&quot;&gt; Paper: 031211 &lt;/span&gt; &lt;span class=&quot;year&quot;&gt;(2017)&lt;/span&gt; &lt;/div&gt; &lt;div class=&quot;pub-end&quot;&gt;&lt;div class=&quot;identifier-list&quot;&gt; &lt;span class=&quot;identifiers&quot;&gt; &lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt; &lt;a style=&quot;color:blue&quot; title=&quot;10.1117/1.NPh.4.3.031211&quot; target=&quot;_blank&quot; href=&quot;https://doi.org/10.1117/1.NPh.4.3.031211&quot;&gt; DOI &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt; &lt;a style=&quot;color:blue&quot; title=&quot;000413586000013&quot; target=&quot;_blank&quot; href=&quot;https://www.webofscience.com/wos/woscc/full-record/000413586000013&quot;&gt; WoS &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt; &lt;a style=&quot;color:blue&quot; title=&quot;85019986934&quot; target=&quot;_blank&quot; href=&quot;http://www.scopus.com/record/display.url?origin=inward&amp;eid=2-s2.0-85019986934&quot;&gt; Scopus &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt; &lt;a style=&quot;color:blue&quot; title=&quot;28523281&quot; target=&quot;_blank&quot; href=&quot;http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;list_uids=28523281&amp;dopt=Abstract&quot;&gt; PubMed &lt;/a&gt; &lt;/span&gt; &lt;/span&gt; &lt;/div&gt; &lt;div class=&quot;short-pub-prop-list&quot;&gt; &lt;span class=&quot;short-pub-mtid&quot;&gt; Publication:27192501 &lt;/span&gt; &lt;span class=&quot;status-holder&quot;&gt;&lt;span class=&quot;status-data status-VALIDATED&quot;&gt; Validated &lt;/span&gt;&lt;/span&gt; &lt;span class=&quot;pub-core&quot;&gt;Core Citing &lt;/span&gt; &lt;span class=&quot;pub-type&quot;&gt;Journal Article (Article ) &lt;/span&gt; &lt;!-- &amp;&amp; !record.category.scientific --&gt; &lt;span class=&quot;pub-category&quot;&gt;Scientific&lt;/span&gt; &lt;div class=&quot;publication-citation&quot; style=&quot;margin-left: 0.5cm;&quot;&gt; &lt;span title=&quot;&quot; class=&quot;citingPub-count&quot;&gt;Citing papers: 23&lt;/span&gt; | Independent citation: 18 | Self citation: 5 | Unknown citation: 0 | Number of citations in WoS: 21 | Number of citations in Scopus:&amp;nbsp;23 | WoS/Scopus assigned:&amp;nbsp;23 | Number of citations with DOI:&amp;nbsp;23 (Not published:&amp;nbsp;2) &lt;/div&gt; &lt;/div&gt; &lt;/div&gt; &lt;/div&gt;</template><template2>&lt;div class=&quot;JournalArticle Publication long-list&quot;&gt;
&lt;div class=&quot;authors&quot;&gt;
	&lt;img title=&quot;Forrásközlemény&quot; style=&quot;float: left&quot; src=&quot;/frontend/resources/grid/publication-core-icon.png&quot;&gt;
	&lt;img title=&quot;Idézőközlemény&quot; style=&quot;float: left&quot; src=&quot;/frontend/resources/grid/publication-citation-icon.png&quot;&gt;

		&lt;div class=&quot;autype autype0&quot;&gt;				&lt;span class=&quot;author-name&quot; &gt;Tanese D
    &lt;/span&gt;
;&amp;nbsp;&amp;nbsp;&amp;nbsp;
							&lt;span class=&quot;author-name&quot; &gt;Weng J-Y
    &lt;/span&gt;
;&amp;nbsp;&amp;nbsp;&amp;nbsp;
							&lt;span class=&quot;author-name&quot; &gt;Zampini V
    &lt;/span&gt;
;&amp;nbsp;&amp;nbsp;&amp;nbsp;
							&lt;span class=&quot;author-name&quot; &gt;De Sars V
    &lt;/span&gt;
;&amp;nbsp;&amp;nbsp;&amp;nbsp;
							&lt;span class=&quot;author-name&quot; &gt;Canepari M
    &lt;/span&gt;
;&amp;nbsp;&amp;nbsp;&amp;nbsp;
							&lt;span class=&quot;author-name&quot; mtid=&quot;10012926&quot;&gt;&lt;a 
																				   href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10012926&quot; target=&quot;_blank&quot;&gt;Rozsa B
            (&lt;span class=&quot;authorship-author-name&quot;&gt;Rózsa J. Balázs&lt;/span&gt;
            &lt;span class=&quot;authorAux-mtmt&quot;&gt; Idegtudomány, fizika&lt;/span&gt;)
			&lt;/a&gt;
    &lt;/span&gt;
&lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;MTA Kísérleti Orvostudományi Kutatóintézet&quot;&gt;IEMHAS&lt;/span&gt;/&lt;span title=&quot;Department of Pharmacology&quot;&gt;DP&lt;/span&gt;/Neuronhálózat és Dendritikus Aktivitás Kutatócsoport&lt;/span&gt;
;&amp;nbsp;&amp;nbsp;&amp;nbsp;
							&lt;span class=&quot;author-name&quot; &gt;Emiliani V
    &lt;/span&gt;
;&amp;nbsp;&amp;nbsp;&amp;nbsp;
							&lt;span class=&quot;author-name&quot; &gt;Zecevic D
    &lt;/span&gt;

				    &lt;/div&gt;
&lt;/div&gt;
&lt;div class=&quot;title&quot;&gt;&lt;a href=&quot;/gui2/?mode=browse&amp;params=publication;27192501&quot; target=&quot;_blank&quot;&gt;Imaging membrane potential changes from dendritic spines using computer-generated holography&lt;/a&gt;&lt;/div&gt;    &lt;div&gt;		&lt;span class=&quot;journal-title&quot;&gt;NEUROPHOTONICS&lt;/span&gt;

        &lt;span class=&quot;journal-issn&quot;&gt;(&lt;a target=&quot;_blank&quot; href=&quot;https://portal.issn.org/resource/ISSN/2329-423X&quot;&gt;2329-423X&lt;/a&gt; &lt;a target=&quot;_blank&quot; href=&quot;https://portal.issn.org/resource/ISSN/2329-4248&quot;&gt;2329-4248&lt;/a&gt;)&lt;/span&gt;:
		&lt;span class=&quot;journal-volume&quot;&gt;4&lt;/span&gt; &lt;span class=&quot;journal-issue&quot;&gt;3&lt;/span&gt;
&lt;span class=&quot;page&quot;&gt;
		Paper 031211.
	
&lt;/span&gt;		 &lt;span class=&quot;year&quot;&gt;(2017)&lt;/span&gt;  
    &lt;/div&gt;
&lt;div class=&quot;pub-footer&quot;&gt;
    

	&lt;span class=&quot;language&quot; xmlns=&quot;http://www.w3.org/1999/html&quot;&gt;Language:
			English
		 |  &lt;/span&gt;

	&lt;span class=&quot;identifiers&quot;&gt;
						&lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt;
							
							&lt;a style=&quot;color:blue&quot; title=&quot;10.1117/1.NPh.4.3.031211&quot; target=&quot;_blank&quot; href=&quot;https://doi.org/10.1117/1.NPh.4.3.031211&quot;&gt;
									DOI
							&lt;/a&gt;
						&lt;/span&gt;
						&lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt;
							
							&lt;a style=&quot;color:blue&quot; title=&quot;000413586000013&quot; target=&quot;_blank&quot; href=&quot;https://www.webofscience.com/wos/woscc/full-record/000413586000013&quot;&gt;
									WoS
							&lt;/a&gt;
						&lt;/span&gt;
						&lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt;
							
							&lt;a style=&quot;color:blue&quot; title=&quot;85019986934&quot; target=&quot;_blank&quot; href=&quot;http://www.scopus.com/record/display.url?origin=inward&amp;eid=2-s2.0-85019986934&quot;&gt;
									Scopus
							&lt;/a&gt;
						&lt;/span&gt;
						&lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt;
							
							&lt;a style=&quot;color:blue&quot; title=&quot;28523281&quot; target=&quot;_blank&quot; href=&quot;http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;list_uids=28523281&amp;dopt=Abstract&quot;&gt;
									PubMed
							&lt;/a&gt;
						&lt;/span&gt;
	&lt;/span&gt;


	&lt;OnlyViewableByAuthor&gt;&lt;div class=&quot;ratings&quot;&gt;
				&lt;div class=&quot;journal-subject&quot;&gt;Journal subject: Scopus - Radiology, Nuclear Medicine and Imaging&amp;nbsp;&amp;nbsp;&amp;nbsp;Rank:&amp;nbsp;D1&lt;/div&gt;
				&lt;div class=&quot;journal-subject&quot;&gt;Journal subject: Scopus - Radiological and Ultrasound Technology&amp;nbsp;&amp;nbsp;&amp;nbsp;Rank:&amp;nbsp;Q1&lt;/div&gt;
				&lt;div class=&quot;journal-subject&quot;&gt;Journal subject: Scopus - Neuroscience (miscellaneous)&amp;nbsp;&amp;nbsp;&amp;nbsp;Rank:&amp;nbsp;Q2&lt;/div&gt;
    &lt;/div&gt;&lt;/OnlyViewableByAuthor&gt;


	&lt;div class=&quot;publication-citation&quot; style=&quot;margin-left: 0.5cm;&quot;&gt;
		&lt;span title=&quot;&quot; class=&quot;citingPub-count&quot;&gt;Citing papers: 23&lt;/span&gt;
		| Independent citation: 18
		| Self citation: 5
		| Unknown citation: 0
		| Number of citations in WoS: 21 
		|  Number of citations in Scopus:&amp;nbsp;23 
		|  WoS/Scopus assigned:&amp;nbsp;23 
		|  Number of citations with DOI:&amp;nbsp;23 
		 (Not published:&amp;nbsp;2)
	&lt;/div&gt;
    
    
	&lt;div class=&quot;publication-citation&quot;&gt;
		&lt;a target=&quot;_blank&quot; href=&quot;/api/publication?cond=citations.related;eq;27192501&amp;sort=publishedYear,desc&amp;sort=title&quot;&gt;
			Number of cited publications: 3
		&lt;/a&gt;
	&lt;/div&gt;



    &lt;div class=&quot;mtid&quot;&gt;&lt;span class=&quot;long-pub-mtid&quot;&gt;Publication: 27192501&lt;/span&gt;
    | &lt;span class=&quot;status-data status-VALIDATED&quot;&gt; 	Validated
  &lt;/span&gt;
        
	&lt;span class=&quot;oldId&quot;&gt;Old id: 17192501&lt;/span&gt; | 
	
Core	 Citing
	
	
    | &lt;span class=&quot;type-subtype&quot;&gt;Journal Article
			( Article
			
			)
		&lt;/span&gt;
      		| &lt;span class=&quot;pub-category&quot;&gt;Scientific&lt;/span&gt;
	| &lt;span class=&quot;publication-sourceOfData&quot;&gt;Scopus-RIS&lt;/span&gt;
&lt;/div&gt;


&lt;div class=&quot;lastModified&quot;&gt;Last Modified: 2024.02.29. 19:30 Évi Nemec (MTMT Központi 3, admin)
&lt;/div&gt;




	&lt;pre class=&quot;comment&quot; style=&quot;margin-top: 0; margin-bottom: 0;&quot;&gt;&lt;u&gt;Comments&lt;/u&gt;: N1 Funding details: 1U01NS099691, BRAIN, Bio-oriented Technology Research Advancement Institution
N1 Funding details: MH106906, NIH, National Institutes of Health
N1 Funding text: This work was supported in part by the National Institutes of Health award (MH106906) and BRAIN Initiative award (1U01NS099691) to DZ.
Paris Descartes University, Neurophotonics Laboratory, CNRS UMR8250, Paris, France...&lt;/pre&gt;

&lt;/div&gt;&lt;/div&gt;</template2>
    </publication>
  </content>
</myciteResult>
