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Jan Gimsa</field><field name="mods.name.top">Prof. Dr. rer. nat. habil. Jan Gimsa</field></doc><doc><field name="id">rosdok_disshab_0000000455-d2133483e72</field><field name="mods.name">Prof. Dr.-Ing. habil. Helmut Beikirch</field><field name="mods.name.top">Prof. Dr.-Ing. habil. Helmut Beikirch</field></doc><doc><field name="id">rosdok_disshab_0000000455-d2133483e84</field><field name="mods.nameIdentifier">gnd:2147083-2</field><field name="mods.name">Universität Rostock Mathematisch-Naturwissenschaftliche Fakultät</field><field name="mods.name.top">Universität Rostock Mathematisch-Naturwissenschaftliche Fakultät</field></doc><field name="mods.name">Philipp Julian Köster</field><field name="mods.name">Prof. Dr. rer. nat. habil. Jan Gimsa</field><field name="mods.name">Prof. Dr.-Ing. habil. Helmut Beikirch</field><field name="mods.name">Universität Rostock Mathematisch-Naturwissenschaftliche Fakultät</field><field name="mods.name.top">Philipp Julian Köster</field><field name="mods.name.top">Prof. Dr. rer. nat. habil. Jan Gimsa</field><field name="mods.name.top">Prof. Dr.-Ing. habil. Helmut Beikirch</field><field name="mods.name.top">Universität Rostock Mathematisch-Naturwissenschaftliche Fakultät</field><field name="mods.author">Philipp Julian Köster</field><field name="mods.place">Rostock</field><field name="mods.publisher">Universität Rostock</field><field name="mods.genre">epub.dissertation</field><field name="mods.identifier">10.18453/rosdok_id00000672</field><field name="mods.identifier">http://purl.uni-rostock.de/rosdok/id00000672</field><field name="mods.identifier">urn:nbn:de:gbv:28-diss2010-0088-6</field><field name="mods.subject">microelectrode array</field><field name="mods.subject">electrophysiology</field><field name="mods.subject">patch clamp</field><field name="mods.subject">drug screening</field><field name="mods.subject">MEA</field><field name="mods.subject">Mikroelektroden</field><field name="mods.subject">Elektrophysiologie</field><field name="mods.subject">Transmembranpotential</field><field name="mods.abstract">This work shows the applicability of three biochip types with integrated microelectrodes. To differentiate thermal and athermal effects, action potentials (AP) of dielectrophoretically positioned neuronal networks were detected under HF-EMF exposition on the Si-neurochip. AP of nerves and cardiomyocytes were detected with the modular glass chip system MOGS. With the PoreGenic® Patch Clamp system, cardiac AP and transmembrane potentials of fibroblasts were detected; on-chip polymers for cell structuring were examined as well as FIB SEM images used to describe the cell-electrode interaction.</field><field name="mods.abstract">Die Arbeit zeigt die Anwendbarkeit von drei Biochiptypen mit integrierten Mikroelektroden. Es wurden, um thermale und athermale Effekte zu unterscheiden, Aktionspotentiale (AP) von dielektrophoretisch positionierten Neuronen auf dem Si-Neurochip unter HF-EMF detektiert. AP von Nerven und Herzmuskelzellen wurden mit dem modularen Glaschipsystem MOGS detektiert. Mit dem PoreGenic®-Patch-Clamp-System wurden kardiale AP, von Fibroblasten Transmembranpotentiale erfasst, On-chip-Polymere zur Zellwachstumsteuerung untersucht sowie FIB-REM-Bilder zur Darstellung der Zell-Elektroden-Interaktion benutzt.</field><field name="mods.dateIssued">2010</field><field name="mods.yearIssued">2010</field><field name="mods.type">epub.dissertation</field><field name="search_result_link_text">1
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        rosdok/id00000672734534590MODS updated during RosDok migration in June 2021DissertationHochschulschrift141725672Philipp JulianKöster1976-VerfasserInautBiochips for the Detection of Biological Cell PotentialsenProf. Dr. rer. nat. habil.JanGimsaAkademischeR BetreuerIndgsProf. Dr.-Ing. habil.HelmutBeikirchAkademischeR BetreuerIndgs2147083-2Universität RostockMathematisch-Naturwissenschaftliche FakultätGrad-verleihende Institutiondgg10.18453/rosdok_id00000672http://purl.uni-rostock.de/rosdok/id00000672urn:nbn:de:gbv:28-diss2010-0088-6570 Biowissenschaften, BiologieMathematisch-Naturwissenschaftliche Fakultätfrei zugänglich (Open Access)Lizenz Metadaten: CC0Nutzungsrechte erteiltalle Rechte vorbehaltenUniversität RostockRostock2010monographic20102010Universitätsbibliothek RostockRostock20132013This work shows the applicability of three biochip types with integrated microelectrodes. To differentiate thermal and athermal effects, action potentials (AP) of dielectrophoretically positioned neuronal networks were detected under HF-EMF exposition on the Si-neurochip. AP of nerves and cardiomyocytes were detected with the modular glass chip system MOGS. With the PoreGenic® Patch Clamp system, cardiac AP and transmembrane potentials of fibroblasts were detected; on-chip polymers for cell structuring were examined as well as FIB SEM images used to describe the cell-electrode interaction.Die Arbeit zeigt die Anwendbarkeit von drei Biochiptypen mit integrierten Mikroelektroden. Es wurden, um thermale und athermale Effekte zu unterscheiden, Aktionspotentiale (AP) von dielektrophoretisch positionierten Neuronen auf dem Si-Neurochip unter HF-EMF detektiert. AP von Nerven und Herzmuskelzellen wurden mit dem modularen Glaschipsystem MOGS detektiert. Mit dem PoreGenic®-Patch-Clamp-System wurden kardiale AP, von Fibroblasten Transmembranpotentiale erfasst, On-chip-Polymere zur Zellwachstumsteuerung untersucht sowie FIB-REM-Bilder zur Darstellung der Zell-Elektroden-Interaktion benutzt.microelectrode arrayelectrophysiologypatch clampdrug screeningMEAMikroelektrodenElektrophysiologieTransmembranpotentialUniversitätsbibliothek Rostockhttp://purl.uni-rostock.de/rosdok/id00000672
      
    
  
  
    
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      2023-08-08T10:01:51.081Z
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      administrator</field><field name="derivateLabel">fulltext</field><field name="ir.pdffulltext_url">file/rosdok_disshab_0000000455/rosdok_derivate_0000004352/Dissertation_Koester_2010.pdf</field><field name="mods.title">Biochips for the Detection of Biological Cell Potentials</field><field name="mods.title.main">Biochips for the Detection of Biological Cell Potentials</field><field name="mods.title.subtitle"></field><field name="mods.nameIdentifier">gnd:141725672</field><field name="mods.nameIdentifier">gnd:2147083-2</field><field name="mods.nameIdentifier.top">gnd:141725672</field><field name="mods.nameIdentifier.top">gnd:2147083-2</field><doc><field name="id">rosdok_disshab_0000000455-d2133483e39</field><field name="mods.nameIdentifier">gnd:141725672</field><field name="mods.name">Philipp Julian Köster</field><field name="mods.name.top">Philipp Julian Köster</field></doc><doc><field name="id">rosdok_disshab_0000000455-d2133483e60</field><field name="mods.name">Prof. Dr. rer. nat. habil. Jan Gimsa</field><field name="mods.name.top">Prof. Dr. rer. nat. habil. Jan Gimsa</field></doc><doc><field name="id">rosdok_disshab_0000000455-d2133483e72</field><field name="mods.name">Prof. Dr.-Ing. habil. Helmut Beikirch</field><field name="mods.name.top">Prof. Dr.-Ing. habil. Helmut Beikirch</field></doc><doc><field name="id">rosdok_disshab_0000000455-d2133483e84</field><field name="mods.nameIdentifier">gnd:2147083-2</field><field name="mods.name">Universität Rostock Mathematisch-Naturwissenschaftliche Fakultät</field><field name="mods.name.top">Universität Rostock Mathematisch-Naturwissenschaftliche Fakultät</field></doc><field name="mods.name">Philipp Julian Köster</field><field name="mods.name">Prof. Dr. rer. nat. habil. Jan Gimsa</field><field name="mods.name">Prof. Dr.-Ing. habil. Helmut Beikirch</field><field name="mods.name">Universität Rostock Mathematisch-Naturwissenschaftliche Fakultät</field><field name="mods.name.top">Philipp Julian Köster</field><field name="mods.name.top">Prof. Dr. rer. nat. habil. Jan Gimsa</field><field name="mods.name.top">Prof. Dr.-Ing. habil. Helmut Beikirch</field><field name="mods.name.top">Universität Rostock Mathematisch-Naturwissenschaftliche Fakultät</field><field name="mods.author">Philipp Julian Köster</field><field name="mods.place">Rostock</field><field name="mods.publisher">Universität Rostock</field><field name="mods.genre">epub.dissertation</field><field name="mods.identifier">10.18453/rosdok_id00000672</field><field name="mods.identifier">http://purl.uni-rostock.de/rosdok/id00000672</field><field name="mods.identifier">urn:nbn:de:gbv:28-diss2010-0088-6</field><field name="mods.subject">microelectrode array</field><field name="mods.subject">electrophysiology</field><field name="mods.subject">patch clamp</field><field name="mods.subject">drug screening</field><field name="mods.subject">MEA</field><field name="mods.subject">Mikroelektroden</field><field name="mods.subject">Elektrophysiologie</field><field name="mods.subject">Transmembranpotential</field><field name="mods.abstract">This work shows the applicability of three biochip types with integrated microelectrodes. 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Mit dem PoreGenic®-Patch-Clamp-System wurden kardiale AP, von Fibroblasten Transmembranpotentiale erfasst, On-chip-Polymere zur Zellwachstumsteuerung untersucht sowie FIB-REM-Bilder zur Darstellung der Zell-Elektroden-Interaktion benutzt.</field><field name="mods.dateIssued">2010</field><field name="mods.yearIssued">2010</field><field name="ir.identifier">[xslt]Saxon</field><field name="recordIdentifier">rosdok/id00000672</field><field name="purl">https://purl.uni-rostock.de/rosdok/id00000672</field><field name="ppn">734534590</field><field name="doi">10.18453/rosdok_id00000672</field><field name="urn">urn:nbn:de:gbv:28-diss2010-0088-6</field><field name="ir.creator.result">Philipp Julian Köster</field><field name="ir.creator.sort">Köster Philipp Julian</field><field name="ir.title.result">Biochips for the Detection of Biological Cell Potentials</field><field name="ir.doctype.result">Dissertation</field><field name="ir.doctype_en.result">doctoral thesis</field><field name="ir.originInfo.result">Universität Rostock, 2010</field><field name="ir.abstract300.result">This work shows the applicability of three biochip types with integrated microelectrodes. 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