23 results on '"Bartic, C."'
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2. Towards a noise prediction model for in vivo neural recording
3. Micro-sized syringes for single-cell fluidic access integrated on a micro-electrode array CMOS chip
4. Systematic design of a programmable low-noise CMOS neural interface for cell activity recording
5. A novel 16k micro-nail CMOS-chip for in-vitro single-cell recording, stimulation and impedance measurements
6. Single-cell stimulation and electroporation using a novel 0.18 µ CMOS chip with subcellular-sized electrodes
7. Using reciprocal derivative chronopotentiometry as a technique to determine safe charge injection limits of electrodes used for neural stimulation
8. In vitro and In vivo electrochemical characterization of a microfabricated neural Probe
9. Local electrical stimulation of single adherent cells using three-dimensional electrode arrays with small interelectrode distances
10. Building the human-chip interface
11. Modeling the impact of local and distant electrode configuration on the stimulation pattern in micrometer-size neural probes
12. Peptide-functionalized microfabricated structures for improved on-chip neuronal adhesion
13. Towards the Formation of Neuro-Transistor Artificial Chemical Synapse
14. Systematic design of a programmable low-noise CMOS neural interface for cell activity recording.
15. An automated calibration system for in vivo neural network study.
16. Towards a closed-loop system for stimulation and recording: An in vitro approach with embryonic cardiomyocytes.
17. Improved Neuronal Adhesion to the Surface of Electronic Device by Engulfment of Protruding Micro-Nails Fabricated on the Chip Surface.
18. Techniques to evaluate the mass sensitivity of Love mode surface acoustic wave biosensors.
19. Development of microelectronic based biosensors.
20. Organic-based transducer for low-cost charge detection in aqueous media.
21. Development of microelectronic based biosensors
22. Organic-based transducer for low-cost charge detection in aqueous media
23. A multichannel integrated circuit for electrical recording of neural activity, with independent channel programmability.
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