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A modular approach to handle in-vivo drift correction for high-density extracellular recordings
View ORCID ProfileSamuel Garcia, View ORCID ProfileCharlie Windolf, View ORCID ProfileJulien Boussard, View ORCID ProfileBenjamin Dichter, View ORCID ProfileAlessio P. Buccino, View ORCID ProfilePierre Yger
doi: https://doi.org/10.1101/2023.06.29.546882
Samuel Garcia
1Centre de Recherche en Neuroscience de Lyon, CNRS, Lyon, France
Charlie Windolf
2Columbia University, New York City, NY, USA
Julien Boussard
2Columbia University, New York City, NY, USA
Benjamin Dichter
3CatalystNeuro, Benicia, CA, USA
Alessio P. Buccino
3CatalystNeuro, Benicia, CA, USA
4Allen Institute for Neural Dynamics, Seattle, WA, USA
Pierre Yger
5Institut de la Vision, Sorbonne Université, INSERM, Paris
6Lille Neurosciences & Cognition (lilNCog) – U1172 (INSERM, Lille), Univ Lille, CHU Lille 59045 Lille, France

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Posted June 29, 2023.
A modular approach to handle in-vivo drift correction for high-density extracellular recordings
Samuel Garcia, Charlie Windolf, Julien Boussard, Benjamin Dichter, Alessio P. Buccino, Pierre Yger
bioRxiv 2023.06.29.546882; doi: https://doi.org/10.1101/2023.06.29.546882
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