Mark H. Histed

Harvard Medical School, Boston, MA, United States 
"Mark Histed"
Mean distance: 12.74 (cluster 17)
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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, 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
Glickfeld LL, Histed MH, Maunsell JH. (2013) Mouse primary visual cortex is used to detect both orientation and contrast changes. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 33: 19416-22
Histed MH, Ni AM, Maunsell JH. (2013) Insights into cortical mechanisms of behavior from microstimulation experiments. Progress in Neurobiology. 103: 115-30
Ohtsuki G, Nishiyama M, Yoshida T, et al. (2012) Similarity of visual selectivity among clonally related neurons in visual cortex. Neuron. 75: 65-72
Silver MR, Grossberg S, Bullock D, et al. (2012) A neural model of sequential movement planning and control of eye movements: Item-Order-Rank working memory and saccade selection by the supplementary eye fields. Neural Networks : the Official Journal of the International Neural Network Society. 26: 29-58
Histed MH, Carvalho LA, Maunsell JH. (2012) Psychophysical measurement of contrast sensitivity in the behaving mouse. Journal of Neurophysiology. 107: 758-65
Bonin V, Histed MH, Yurgenson S, et al. (2011) Local diversity and fine-scale organization of receptive fields in mouse visual cortex. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 31: 18506-21
Histed MH, Bonin V, Reid RC. (2009) Direct activation of sparse, distributed populations of cortical neurons by electrical microstimulation. Neuron. 63: 508-22
Histed MH, Pasupathy A, Miller EK. (2009) Learning substrates in the primate prefrontal cortex and striatum: sustained activity related to successful actions. Neuron. 63: 244-53
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