Mary K L Baldwin

Vanderbilt University, Nashville, TN 
Visual system
"Mary Baldwin"
Mean distance: 13.73 (cluster 17)


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Jon H. Kaas grad student 2012 Vanderbilt
 (Connections of the superior colliculus with visual brain structures in galagos, tree shrews, and gray squirrels.)
Leah Krubitzer post-doc UC Davis
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Halley AC, Baldwin MKL, Cooke DF, et al. (2020) Distributed Motor Control of Limb Movements in Rat Motor and Somatosensory Cortex: The Sensorimotor Amalgam Revisited. Cerebral Cortex (New York, N.Y. : 1991)
Kaas JH, Baldwin MKL. (2019) The Evolution of the Pulvinar Complex in Primates and Its Role in the Dorsal and Ventral Streams of Cortical Processing. Vision (Basel, Switzerland). 4
Mayer A, Baldwin MKL, Cooke DF, et al. (2019) The multiple representations of complex digit movements in primary motor cortex form the building blocks for complex grip types in capuchin monkeys. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Baldwin MK, Krubitzer L. (2018) Architectonic characteristics of the visual thalamus and superior colliculus in titi monkeys. The Journal of Comparative Neurology
Baldwin MKL, Young NA, Matrov D, et al. (2018) Cortical projections to the superior colliculus in gray squirrels (Sciurus Carolinensis). The European Journal of Neuroscience
Baldwin MKL, Cooke DF, Goldring AB, et al. (2017) Representations of Fine Digit Movements in Posterior and Anterior Parietal Cortex Revealed Using Long-Train Intracortical Microstimulation in Macaque Monkeys. Cerebral Cortex (New York, N.Y. : 1991). 1-20
Baldwin MK, Balaram P, Kaas JH. (2017) The evolution and functions of nuclei of the visual pulvinar in primates. The Journal of Comparative Neurology
Baldwin MK, Cooke DF, Krubitzer L. (2016) Intracortical Microstimulation Maps of Motor, Somatosensory, and Posterior Parietal Cortex in Tree Shrews (Tupaia belangeri) Reveal Complex Movement Representations. Cerebral Cortex (New York, N.Y. : 1991)
Kaas JH, Roe AW, Baldwin MK, et al. (2015) Resolving the organization of the territory of the third visual area: A new proposal. Visual Neuroscience. 32: E016
Cooke DF, Goldring AB, Baldwin MK, et al. (2014) Reversible deactivation of higher-order posterior parietal areas. I. Alterations of receptive field characteristics in early stages of neocortical processing. Journal of Neurophysiology. 112: 2529-44
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