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Florian Kölbl
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2020 – today
- 2024
- [j4]Thomas Couppey, Louis Regnacq, Roland Giraud, Olivier Romain, Yannick Bornat, Florian Kölbl:
NRV: An open framework for in silico evaluation of peripheral nerve electrical stimulation strategies. PLoS Comput. Biol. 20(7): 1011826 (2024) - 2021
- [c13]Alexia Bailleul, Julien Claudel, Florence Poulletier De Gannes, Gilles N'Kaoua, Florian Kölbl, Fabien Soulier, Noëlle Lewis, Serge Bernard, Sylvie Renaud:
In vitro impedance spectroscopy: A MEA-based measurement bench for myoblasts cultures monitoring. DCIS 2021: 1-6
2010 – 2019
- 2019
- [j3]Edwin De Roux, Amelie Degache, Mehdi Terosiet, Florian Kölbl, Michel Boissière, Emmanuel Pauthe, Aymeric Histace, Olivier Bernus, Noëlle Lewis, Olivier Romain:
Orthogonal Multitone Electrical Impedance Spectroscopy (OMEIS) for the Study of Fibrosis Induced by Active Cardiac Implants. J. Sensors 2019: 7180694:1-7180694:14 (2019) - [j2]Edwin De Roux, Mehdi Terosiet, Florian Kölbl, Michel Boissière, Aymeric Histace, Olivier Romain:
OFDM-based electrical impedance spectroscopy technique for pacemaker-induced fibrosis detection implemented in an ARM microprocessor. Microprocess. Microsystems 70: 38-46 (2019) - 2018
- [c12]Edwin De Roux, Mehdi Terosiet, Florian Kölbl, Michel Boissière, Aymeric Histace, Olivier Romain:
Toward an OFDM-Based Technique for Electrochemical Impedance Spectroscopy. DSD 2018: 484-487 - [c11]Edwin De Roux, Mehdi Terosiet, Florian Kölbl, Michel Boissière, Emmanuel Pauthe, Aymeric Histace, Olivier Romain:
Toward an Embedded OFDM-based System for Living Cells Study by Electrochemical Impedance Spectroscopy. HealthCom 2018: 1-6 - [c10]Florian Kölbl, N. Boulboul, M. Commereuc, Emmanuelle Bourdel:
A microstrip resonator based sensor for GHz characterization of in vitro cell culture. ICST 2018: 319-323 - [c9]J. Sotiere, Mehdi Terosiet, Edwin De Roux, Alejandro Von Chong, Florian Kölbl, Aymeric Histace, Olivier Romain:
Versatile SAR-ADC for Biomedical Applications. NGCAS 2018: 9-12 - 2017
- [c8]Edwin De Roux, Mehdi Terosiet, Florian Kölbl, Johnatan Chrun, Pierre-Henry Aubert, Philippe Banet, Michel Boissière, Emmanuel Pauthe, Aymeric Histace, Olivier Romain:
Wireless and Portable System for the Study of in-vitro Cell Culture Impedance Spectrum by Electrical Impedance Spectroscopy. DSD 2017: 456-461 - [c7]Miguel Capllonch-Juan, Florian Kölbl, Francisco Sepulveda:
Unidirectional ephaptic stimulation between two myelinated axons. EMBC 2017: 230-233 - [c6]Jonathan Castelli, Florian Kölbl, Ricardo Siu, Gilles N'Kaoua, Yannick Bornat, Ashwin Mangalore, Brian Hillen, James J. Abbas, Sylvie Renaud, Ranu Jung, Noëlle Lewis:
An IC-based controllable stimulator for respiratory muscle stimulation investigations. EMBC 2017: 1970-1973 - 2016
- [j1]Florian Kölbl, Gilles N'Kaoua, Frederic Naudet, Florent Berthier, Emilie Faggiani, Sylvie Renaud, Abdelhamid Benazzouz, Noëlle Lewis:
An Embedded Deep Brain Stimulator for Biphasic Chronic Experiments in Freely Moving Rodents. IEEE Trans. Biomed. Circuits Syst. 10(1): 72-84 (2016) - [c5]Florian Kölbl, Miguel Capllonch-Juan, Francisco Sepulveda:
Impact of the angle of implantation of transverse intrafascicular multichannel electrodes on axon activation. BioCAS 2016: 484-487 - [c4]Miguel Capllonch-Juan, Florian Kölbl, Francisco Sepulveda:
Optimisation of the spatial discretisation of myelinated axon models. CEEC 2016: 216-221 - 2015
- [c3]Florian Kölbl, Andreas Demosthenous:
A figure of merit for neural electrical stimulation circuits. EMBC 2015: 2075-2078 - 2014
- [c2]Florian Kölbl, Raphael Guillaume, Jennifer Hasler, Sébastien Joucla, Blaise Yvert, Sylvie Renaud, Noëlle Lewis:
A closed-loop charge balancing FPAA circuit with sub-nano-amp DC error for electrical stimulation. BioCAS 2014: 616-619 - 2013
- [c1]Florian Kölbl, Jocelyn Sabatier, Gilles N'Kaoua, Frederic Naudet, Emilie Faggiani, Abdelhamid Benazzouz, Sylvie Renaud, Noëlle Lewis:
Characterization of a non linear fractional model of electrode-tissue impedance for neuronal stimulation. BioCAS 2013: 338-341
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last updated on 2024-12-02 22:27 CET by the dblp team
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