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    <title>Fabrication of polymer-based optofluidic microsystems for optical fluid analysis on printed circuit boards</title>
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  <abstract type="Summary">This thesis focusses on the establishment of a technological process chain for prototyping of electro-optical circuit boards (EOCB)-based sensing platforms for optical fluid analysis with optical waveguides integrated with microfluidic channels on various substrates. The feasibility of this technology is proved by four optofluidic demonstrators, whose operation principles are based on light absorption in a fluid during light’s free propagation in a microchannel, on evanescent field absorption, on partial back reflection at the waveguide end-faces, and on thermo-optic interferometric effects.&lt;eng&gt;</abstract>
  <abstract type="Summary">In der vorliegenden Dissertation liegt der Fokus auf der Etablierung einer technologischen Prozesskette zum Prototyping von EOCB-basierten optofluidischen Messvorrichtungen mit integrierten Lichtwellenleitern und mikrofluidischen Strukturen. Die breite Anwendbarkeit der entwickelten Technologie zur Herstellung von kompakten Lab-on-a-Board-Systemen wurde anhand von vier optofluidischen Demonstratoren bestätigt, deren Funktionsweise auf Lichtabsorption in einer Flüssigkeit, auf evaneszenter Feldabsorption, auf partieller Rückreflexion und auf thermooptischen modulierter Interferometrie beruht.&lt;ger&gt;</abstract>
  <note type="statement of responsibility">vorgelegt von Ekaterina Sergeeva</note>
  <note>GutachterInnen: Dennis Hohlfeld (Universität Rostock, Institut für Gerätesysteme und Schaltungstechnik) ; Hans Zappe (Albert-Ludwigs-Universität Freiburg, Institut für Mikrosystemtechnik) ; Nils Damaschke (Universität Rostock, Institut für Allgemeine Elektrotechnik)</note>
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      <title>Fabrication of polymer-based optofluidic microsystems for optical fluid analysis on printed circuit boards</title>
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