David Eriksson
Affiliations: | Ernst Strüngmann Institute (ESI) for Neuroscience |
Area:
Visual NeuroscienceWebsite:
http://www.mpih-frankfurt.mpg.de/global/Ng/schmidt_eindex.htmGoogle:
"David Eriksson"Mean distance: 14.38 (cluster 17) | S | N | B | C | P |
Parents
Sign in to add mentorKerstin Erika Schmidt | post-doc | MPI for Brain Research | |
Ilka Diester | post-doc | 2012-2021 | University of Freiburg |
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Publications
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Melbaum S, Russo E, Eriksson D, et al. (2022) Conserved structures of neural activity in sensorimotor cortex of freely moving rats allow cross-subject decoding. Nature Communications. 13: 7420 |
Eriksson D, Schneider A, Thirumalai A, et al. (2022) Multichannel optogenetics combined with laminar recordings for ultra-controlled neuronal interrogation. Nature Communications. 13: 985 |
Eriksson D, Heiland M, Schneider A, et al. (2021) Distinct dynamics of neuronal activity during concurrent motor planning and execution. Nature Communications. 12: 5390 |
Eriksson D, Schneck M, Schneider A, et al. (2020) A starting kit for training and establishing in vivo electrophysiology, intracranial pharmacology, and optogenetics. Journal of Neuroscience Methods. 108636 |
Conde-Ocazionez SA, Jungen C, Wunderle T, et al. (2018) Callosal Influence on Visual Receptive Fields Has an Ocular, an Orientation-and Direction Bias. Frontiers in Systems Neuroscience. 12: 11 |
Hardung S, Alyahyay M, Eriksson D, et al. (2017) A Toolbox for Optophysiological Experiments in Freely Moving Rats. Frontiers in Systems Neuroscience. 11: 27 |
Hardung S, Epple R, Jäckel Z, et al. (2017) A Functional Gradient in the Rodent Prefrontal Cortex Supports Behavioral Inhibition. Current Biology : Cb |
Eriksson D. (2017) A Principle for Describing and Verifying Brain Mechanisms Using Ongoing Activity. Frontiers in Neural Circuits. 11: 1 |
Eriksson D. (2016) Estimating Fast Neural Input Using Anatomical and Functional Connectivity. Frontiers in Neural Circuits. 10: 99 |
Altavini TS, Ocazionez SA, Eriksson D, et al. (2016) Selective interhemispheric circuits account for a cardinal bias in spontaneous activity within early visual areas. Neuroimage |