Michael Winding

Affiliations: 
2023- The Francis Crick Institute, London, England, United Kingdom 
Area:
Social behaviour, connectomics, systems neuroscience
Website:
https://www.crick.ac.uk/research/labs/michael-winding
Google:
"Michael Winding"
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Publications

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Winding M, Pedigo BD, Barnes CL, et al. (2023) The connectome of an insect brain. Science (New York, N.Y.). 379: eadd9330
Croteau-Chonka EC, Clayton MS, Venkatasubramanian L, et al. (2022) High-throughput automated methods for classical and operant conditioning of larvae. Elife. 11
Eschbach C, Fushiki A, Winding M, et al. (2021) Circuits for integrating learned and innate valences in the insect brain. Elife. 10
Eschbach C, Fushiki A, Winding M, et al. (2020) Recurrent architecture for adaptive regulation of learning in the insect brain. Nature Neuroscience
Jovanic T, Winding M, Cardona A, et al. (2019) Neural Substrates of Drosophila Larval Anemotaxis. Current Biology : Cb
Winding M, Kelliher MT, Lu W, et al. (2016) Role of kinesin-1-based microtubule sliding in Drosophila nervous system development. Proceedings of the National Academy of Sciences of the United States of America
Lu W, Winding M, Lakonishok M, et al. (2016) Microtubule-microtubule sliding by kinesin-1 is essential for normal cytoplasmic streaming in Drosophila oocytes. Proceedings of the National Academy of Sciences of the United States of America
Engelke MF, Winding M, Yue Y, et al. (2016) Engineered kinesin motor proteins amenable to small-molecule inhibition. Nature Communications. 7: 11159
Jolly AL, Luan CH, Dusel BE, et al. (2016) A Genome-wide RNAi Screen for Microtubule Bundle Formation and Lysosome Motility Regulation in Drosophila S2 Cells. Cell Reports
Del Castillo U, Winding M, Lu W, et al. (2015) Interplay between kinesin-1 and cortical dynein during axonal outgrowth and microtubule organization in Drosophila neurons. Elife. 4
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