Chris I. de Zeeuw
Affiliations: | Erasmus Medical Center Rotterdam, Rotterdam, Netherlands |
Website:
http://www2.eur.nl/fgg/neuro/people/C.I.deZeeuw.htmlGoogle:
"Chris de Zeeuw"Bio:
http://hdl.handle.net/1765/50888
Mean distance: 13.75 (cluster 6) | S | N | B | C | P |
Parents
Sign in to add mentorJan Voogd | grad student | 1990 | Erasmus MC | |
(Ultrastructure of the cat inferior olive : an anatomical study using three new combination techniques) | ||||
Enrico Mugnaini | post-doc | University of Connecticut | ||
John I. Simpson | post-doc | NYU School of Medicine |
Children
Sign in to add traineeThijs van der Vaart | research assistant | 2007- | Erasmus MC |
Marco Bocchio | research assistant | 2010-2012 | Erasmus MC |
Zhenyu Gao | grad student | Erasmus MC | |
Yoshiyuki Onuki | grad student | ||
Martijn Schonewille | grad student | Erasmus MC | |
Claudia Bonardi | grad student | 2009-2010 | Erasmus MC |
Aleksandra Badura | grad student | 2007-2011 | Erasmus MC |
Laurens Witter | grad student | 2007-2013 | Netherlands Institute for Neuroscience, Amsterdam, NL |
Elisabetta Iavarone | grad student | 2014-2014 | |
Eric Avila | grad student | 2010-2015 | Erasmus MC |
Saša Peter | grad student | 2012-2017 | Erasmus MC |
Robin Broersen | grad student | 2014-2019 | Erasmus MC |
Laurens W. Bosman | post-doc | 2006- | Erasmus MC |
Marylka Yoe Uusisaari | post-doc | 2016- | Erasmus MC |
Tycho M. Hoogland | research scientist | Netherlands Institute for Neuroscience | |
Katja Kornysheva | research scientist | Erasmus MC | |
Ger Ramakers | research scientist | Netherlands Institute for Neuroscience |
Collaborators
Sign in to add collaboratorRobert Buccigrossi | collaborator | Erasmus MC | ||
Egidio D'Angelo | collaborator | University of Pavia | ||
Eric Burguiere | collaborator | 2002- | CNRS, Collège de France | |
(L7-PKCi mice) |
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Publications
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Loyola S, Hoogland TM, Hoedemaker H, et al. (2023) How inhibitory and excitatory inputs gate output of the inferior olive. Elife. 12 |
Blot FGC, White JJ, van Hattem A, et al. (2023) Purkinje cell microzones mediate distinct kinematics of a single movement. Nature Communications. 14: 4358 |
Wang XT, Zhou L, Dong BB, et al. (2023) cAMP-EPAC-PKCε-RIM1α signaling regulates presynaptic long-term potentiation and motor learning. Elife. 12 |
Kaiser FMP, Gruenbacher S, Oyaga MR, et al. (2022) Correction: Biallelic PAX5 mutations cause hypogammaglobulinemia, sensorimotor deficits, and autism spectrum disorder. The Journal of Experimental Medicine. 220 |
Voerman S, Urbanus BHA, Schonewille M, et al. (2022) Postsynaptic plasticity of Purkinje cells in mice is determined by molecular identity. Communications Biology. 5: 1328 |
Bauer S, van Wingerden N, Jacobs T, et al. (2022) Purkinje Cell Activity Resonation Generates Rhythmic Behaviors at the Preferred Frequency of 8 Hz. Biomedicines. 10 |
De Zeeuw CI, Canto CB. (2022) Interpreting thoughts during sleep. Science (New York, N.Y.). 377: 919-920 |
Kaiser FMP, Gruenbacher S, Oyaga MR, et al. (2022) Biallelic PAX5 mutations cause hypogammaglobulinemia, sensorimotor deficits, and autism spectrum disorder. The Journal of Experimental Medicine. 219 |
Avila E, Flierman NA, Holland PJ, et al. (2022) Purkinje Cell Activity in the Medial and Lateral Cerebellum During Suppression of Voluntary Eye Movements in Rhesus Macaques. Frontiers in Cellular Neuroscience. 16: 863181 |
Schonewille M, Girasole AE, De Zeeuw CI, et al. (2022) Reply to Piochon et al.: NMDARs in Purkinje cells are not involved in parallel fiber-Purkinje cell synaptic plasticity or motor learning. Proceedings of the National Academy of Sciences of the United States of America. 119 |