Nuno Miguel Macarico A. da Costa
Affiliations: | ETH/Uni Zurich, Zürich, Zürich, Switzerland |
Area:
visual system, anatomyWebsite:
http://www.ini.unizh.ch/public/person.php?uname=ndacostaGoogle:
"Nuno da Costa"Mean distance: 14.31 (cluster 6) | S | N | B | C | P |
Cross-listing: Anatomy Tree
Children
Sign in to add traineeNivretta Thatra | research assistant | 2014-2014 | Allen Institute |
Adam A. Bleckert | research scientist | 2014- | Allen Institute |
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Publications
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Arkhipov A, da Costa N, de Vries S, et al. (2025) Integrating multimodal data to understand cortical circuit architecture and function. Nature Neuroscience |
Ott CM, Torres R, Kuan TS, et al. (2024) Ultrastructural differences impact cilia shape and external exposure across cell classes in the visual cortex. Current Biology : Cb |
Dorkenwald S, Li PH, Januszewski M, et al. (2023) Multi-layered maps of neuropil with segmentation-guided contrastive learning. Nature Methods |
Ding Z, Fahey PG, Papadopoulos S, et al. (2023) Functional connectomics reveals general wiring rule in mouse visual cortex. Biorxiv : the Preprint Server For Biology |
Schneider-Mizell CM, Bodor A, Brittain D, et al. (2023) Cell-type-specific inhibitory circuitry from a connectomic census of mouse visual cortex. Biorxiv : the Preprint Server For Biology |
Buchanan J, Elabbady L, Collman F, et al. (2022) Oligodendrocyte precursor cells ingest axons in the mouse neocortex. Proceedings of the National Academy of Sciences of the United States of America. 119: e2202580119 |
Turner NL, Macrina T, Bae JA, et al. (2022) Reconstruction of neocortex: Organelles, compartments, cells, circuits, and activity. Cell |
Yin W, Brittain D, Borseth J, et al. (2020) A petascale automated imaging pipeline for mapping neuronal circuits with high-throughput transmission electron microscopy. Nature Communications. 11: 4949 |
Arkhipov A, Gouwens NW, Billeh YN, et al. (2018) Visual physiology of the layer 4 cortical circuit in silico. Plos Computational Biology. 14: e1006535 |
da Costa NM, Martin KA. (2013) Sparse reconstruction of brain circuits: or, how to survive without a microscopic connectome. Neuroimage. 80: 27-36 |