Robert Desimone, Ph.D.
Affiliations: | Massachusetts Institute of Technology, Cambridge, MA, United States |
Area:
Systems, attention, visionWebsite:
http://web.mit.edu/mcgovern/html/Principal_Investigators/desimone.shtmlGoogle:
"Robert Desimone"Mean distance: 11.38 (cluster 29) | S | N | B | C | P |
Children
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Sign in to add collaboratorRichard K Nakamura | collaborator | ||
Tomaso A. Poggio | collaborator | MIT | |
Leslie Ungerleider | collaborator | NIMH |
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Publications
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Mendoza-Halliday D, Major AJ, Lee N, et al. (2024) A ubiquitous spectrolaminar motif of local field potential power across the primate cortex. Nature Neuroscience |
Mendoza-Halliday D, Xu H, Azevedo FAC, et al. (2024) Dissociable neuronal substrates of visual feature attention and working memory. Neuron |
Mendoza-Halliday D, Xu H, Azevedo FAC, et al. (2023) Dissociable neuronal substrates of visual feature attention and working memory. Biorxiv : the Preprint Server For Biology |
Srinivasan K, Lowet E, Gomes B, et al. (2023) Stimulus representations in visual cortex shaped by spatial attention and microsaccades. Biorxiv : the Preprint Server For Biology |
Xu R, Bichot NP, Takahashi A, et al. (2021) The cortical connectome of primate lateral prefrontal cortex. Neuron |
Xu F, Shen Y, Ding L, et al. (2021) High-throughput mapping of a whole rhesus monkey brain at micrometer resolution. Nature Biotechnology |
Miller EK, Desimone R. (2020) Charles Gordon Gross (1936 - 2019). Progress in Neurobiology. 101934 |
Tremblay S, Acker L, Afraz A, et al. (2020) An Open Resource for Non-human Primate Optogenetics. Neuron |
Gong X, Mendoza-Halliday D, Ting JT, et al. (2020) An Ultra-Sensitive Step-Function Opsin for Minimally Invasive Optogenetic Stimulation in Mice and Macaques. Neuron. 107: 197 |
Gong X, Mendoza-Halliday D, Ting JT, et al. (2020) An Ultra-Sensitive Step-Function Opsin for Minimally Invasive Optogenetic Stimulation in Mice and Macaques. Neuron |