David A. Crowe, Ph.D.

Augsburg College, Minneapolis, MN, United States 
motor system
"David Crowe"
Mean distance: 14.76 (cluster 29)


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Apostolos P. Georgopoulos grad student 2001 UMN
 (Cortical maze processing.)
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Zick JL, Blackman RK, Crowe DA, et al. (2018) Blocking NMDAR Disrupts Spike Timing and Decouples Monkey Prefrontal Circuits: Implications for Activity-Dependent Disconnection in Schizophrenia. Neuron
Chafee MV, Crowe DA. (2017) Implicit and Explicit Learning Mechanisms Meet in Monkey Prefrontal Cortex. Neuron. 96: 256-258
Blackman RK, Crowe DA, DeNicola AL, et al. (2016) Monkey Prefrontal Neurons Reflect Logical Operations for Cognitive Control in a Variant of the AX Continuous Performance Task (AX-CPT). The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 36: 4067-79
Crowe DA, Zarco W, Bartolo R, et al. (2014) Dynamic representation of the temporal and sequential structure of rhythmic movements in the primate medial premotor cortex. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 34: 11972-83
Merchant H, Crowe DA, Fortes AF, et al. (2014) Cognitive modulation of local and callosal neural interactions in decision making. Frontiers in Neuroscience. 8: 245
Crowe DA, Goodwin SJ, Blackman RK, et al. (2013) Prefrontal neurons transmit signals to parietal neurons that reflect executive control of cognition. Nature Neuroscience. 16: 1484-91
Chafee MV, Crowe DA. (2012) Thinking in spatial terms: decoupling spatial representation from sensorimotor control in monkey posterior parietal areas 7a and LIP. Frontiers in Integrative Neuroscience. 6: 112
Christopoulos VN, Boeff DV, Evans CD, et al. (2012) A network analysis of developing brain cultures. Journal of Neural Engineering. 9: 046008
Merchant H, Crowe DA, Robertson MS, et al. (2011) Top-down spatial categorization signal from prefrontal to posterior parietal cortex in the primate. Frontiers in Systems Neuroscience. 5: 69
Crowe DA, Leuthold AC, Georgopoulos AP. (2010) Differential brain activity states during the perception and nonperception of illusory motion as revealed by magnetoencephalography. Proceedings of the National Academy of Sciences of the United States of America. 107: 22677-81
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