Areas of activity
System integration of electronics and microfluidics for biological applications in , Lab on a Chip Systems, Microfluidics - Design,, Peripheral systems for dielectrophoresis and fluidic control,, rapid prototyping: 3D CAD (SolidWorks®), CAM/CAE, micro milling, AVT, opt. Sensors/ Measurement technology
Stages of career
since 2009 Part-time Master's degree in Electrical Engineering/ Information Technology, Open University in Hagen, Germany
since 2007 Scientific employee/engineer at the AG BioMEMS und Sensorik
2003 - 2007 Studied Mechatronics at the FH Reutlingen
2001 - 2006 Scintec AG, Atmospheric Measurement Technology
Simon Werner
M.Sc. Electrical Engineering and Information Technology
Projects
Publications
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Parallelizable Microfluidic Platform to Model and Assess In Vitro Cellular Barriers: Technology and Application to Study the Interaction of 3D Tumor Spheroids with Cellular BarriersNair A L , Mesch L, Schulz I, Becker H , Raible J, Kiessling H, Werner S, Rothbauer U , Schmees C, Busche M, Trennheuser S, Fricker G and Stelzle MBiosensors 2021, 11, 314. https://doi.org/10.3390/bios11090314
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HepaChip-MP – a twenty-four chamber microplate for a continuously perfused liver coculture modelBusche M, Tomilova O, Schütte J, Werner S, Beer M, Groll N, Hagmeyer B, Pawlak M, Jones P D, Schmees C, Becker H, Schnabel J, Gall K, Hemmler R, Matz-Soja M, Damm G, Beuck S, Klaassen T, Moer J, Ullrich A, Runge D, Schenke-Layland K, Gebhardt R und Stelzle MLab on a Chip, DOI: 10.1039/d0lc00357c
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Multimodal Chemosensor-Based, Real-Time Biomaterial/Cell Interface MonitoringKubon M, Hartmann H, Moschallski M, Burkhardt C, Link G, Werner S, Stelzle MAdvanced Biosystems. 2018; 2(6):1700236.
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Auf Herz und Nieren prüfenHagmeyer B, Becker H, Werner S, Stelzle M (2016).Physik Journal. 2016; 10:31
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Towards quantification of biocompatibility: Monitoring ingrowth behavior of biomaterials in tissue with a microsensor implantKubon M, Moschallski M, Ensslen T, Link G, Werner S, Burkhardt C, Hartmann H, Schlosshauer B, Urban G, Stelzle MIEEE Conference Paper, 2011, doi: 10.1109/TRANSDUCERS.2011.5969289
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A microsensor system to probe physiological environments and tissue responseKubon M, Moschallski M, Link G, Ensslen T, Werner S, Burkhardt C, Nisch W, Scholz B, Schlosshauer B, Urban G, Stelzle MIEEE Conference Paper, 2010, doi: 10.1109/TRANSDUCERS.2011.5969289
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Towards implantable sensors and actuators (Part 1): A microsensor device to probe biological and physiological environmentsKubon M, Moschallski M, Werner S, Link G, Burkhardt C, Nisch W, Urban G & Stelzle MBiomedizinische Technik / Biomedical Engineering (2010), 10.1515/bmt.2010.711
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Towards implantable sensors and actuators (Part 2): Avian ex ovo culture as quasi-in vivo environmentKubon M, Moschallski M, Link G, Werner S, Burkhardt C, Nisch W, Scholz B, Schlosshauer B, Urban G & Stelzle MBiomedizinische Technik / Biomedical Engineering (2010), 10.1515/bmt.2010.520
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Ex ovo culture: An in vivo model for microsensorarray implantsKubon M, Moschallski M, Link GS, Werner S, Burkhardt C, Nisch W, Scholz B, Schlosshauer B, Urban G, Stelzle M7th International Meeting on Substrate-Integrated Microelectrode Arrays Reutlingen, 2010, NMI, BioPro.