Shahab Rezaei-Mazinani
École des Mines de Saint-Étienne Centre Microélectronique de Provence, École des Mines de Saint-Étienne, Ecole Nationale Superieure des Mines Centre Microélectronique de Provence Georges Charpak
About
Charles Rezaei-Mazinani (publishing as S. Rezaei-Mazinani) is an Associate Professor and Group Leader in the Department of Bioelectronics (BEL) at the École des Mines de Saint-Étienne. He received his MSc in Systems Design, studying at Fachhochschule Kärnten, the University of Amsterdam, and the Medical University of Vienna, where he developed an interest in biomedical informatics and the intersection of electronic systems and biological applications. He received his PhD in Bioelectronics from the École des Mines, where he developed organic photodetectors for neuroscience applications. He then completed a postdoctoral fellowship in the laboratory of Alexander Fleischmann at the Center for Interdisciplinary Research in Biology (CIRB), Collège de France, where he investigated how neural ensembles in the piriform and entorhinal cortex represent odor and spatial context in the mouse brain.
His current research explores the use of electronic and optoelectronic materials to design neural interfaces, with a focus on high-performance implants for stimulation and recording. In addition, he has a strong interest in neural data analysis.
Employment
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École des Mines de Saint-Étienne Centre Microélectronique de Provence Associate Professor2020 - Present
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École des Mines de Saint-Étienne Assistant Professor2019 - 2020
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Collège de France Postdoctoral Scholar2017 - 2019
Education
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Ecole Nationale Superieure des Mines Centre Microélectronique de Provence Georges Charpak PhD Researcher2014 - 2017
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Medical University of Vienna Diplomarbeit2014 - 2014
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University of Amsterdam 3rd Semester of Master2013 - 2014
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Fachhochschule Kärnten - Standort Villach M.Sc. / Systems Design2012 - 2014
Projects & Funding
Projects & funding information is unavailable.
Publications (9)
- Cortical neuroprostheses improve auditory coding and perception compared to cochlear implants Save
- Differential Encoding of Odor and Place in the Mouse Piriform and Entorhinal Cortex Save
- Flexible Depth Probes with PEDOT:PSS Microelectrodes for Chronic Recording and Stimulation Save
- Design, Characterization, and In Vivo Application of Multi-Conductive Layer Organic Electrocorticography Probes Save
- Monitoring fluorescent calcium signals in neural cells with organic photodetectors Save
- Monitoring Intrinsic Optical Signals in Brain Tissue with Organic Photodetectors Save
- Development of novel organic optoelectronic technologies for biomedical applications Save
- Cutaneous Recording and Stimulation of Muscles Using Organic Electronic Textiles Save
- Orientation selectivity with organic photodetectors and an organic electrochemical transistor Save