Mark H. Histed, PhD

Affiliations: 
2015- Intramural Program National Institute of Mental Health, Bethesda, MD, United States 
Area:
cortex stimulation optogenetics computation
Website:
https://markhisted.org
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"Mark Histed"
Mean distance: 12.74 (cluster 17)
 
SNBCP

Parents

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Earl K. Miller grad student 1999-2006 MIT
R Clay Reid post-doc 2006-2009 Harvard Medical School
John HR Maunsell post-doc 2009-2016 Harvard Medical School

Children

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Hannah Douglas research assistant
Anna J Li research assistant 2017-2020
Hannah C. Goldbach research assistant 2018-2020 National Institute of Mental Health (NIMH)
Paul Kristian LaFosse grad student
Bradley C. Akitake research scientist 2016- National Institute of Mental Health (NIMH) (FlyTree)
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Publications

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Akitake B, Douglas HM, LaFosse PK, et al. (2023) Amplified cortical neural responses as animals learn to use novel activity patterns. Current Biology : Cb
LaFosse PK, Zhou Z, Friedman NG, et al. (2023) Bicistronic expression of a high-performance calcium indicator and opsin for all-optical stimulation and imaging at cellular resolution. Eneuro
Goldbach HC, Akitake B, Leedy CE, et al. (2021) Performance in even a simple perceptual task depends on mouse secondary visual areas. Elife. 10
Sanzeni A, Histed MH, Brunel N. (2020) Response nonlinearities in networks of spiking neurons. Plos Computational Biology. 16: e1008165
Sanzeni A, Akitake B, Goldbach HC, et al. (2020) Inhibition stabilization is a widespread property of cortical networks. Elife. 9
Sanzeni A, Histed MH. (2020) Finding patterns in cortical responses. Elife. 9
Sanzeni A, Akitake B, Goldbach HC, et al. (2020) Author response: Inhibition stabilization is a widespread property of cortical networks Elife
Cone JJ, Scantlen MD, Histed MH, et al. (2019) Different Inhibitory Interneuron Cell Classes Make Distinct Contributions to Visual Contrast Perception. Eneuro. 6
Histed MH. (2018) Feedforward Inhibition Allows Input Summation to Vary in Recurrent Cortical Networks. Eneuro. 5
Histed MH, Maunsell JH. (2014) Cortical neural populations can guide behavior by integrating inputs linearly, independent of synchrony. Proceedings of the National Academy of Sciences of the United States of America. 111: E178-87
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