Clayton E. Curtis

New York University, New York, NY, United States 
Executive control
"Clayton Curtis"
Mean distance: 12.96 (cluster 23)


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William G. Iacono grad student 1999 UMN
Mark D'Esposito post-doc 2000-2003 UC Berkeley


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Martin Grund research assistant 2012-2014 NYU
Wayne E. Mackey grad student 2012- NYU
Riju Srimal grad student 2008 NYU
Akiko Ikkai grad student 2011 NYU
Golbarg Tarighat Saber grad student 2013 NYU
Kyeong-Jin Tark grad student 2013 NYU
Jason Connolly post-doc NYU
Trenton Jerde post-doc NYU
Hsin-Hung Li post-doc 2019- NYU


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Brian McElree collaborator NYU
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Rahmati M, DeSimone K, Curtis CE, et al. (2020) Spatially-specific working memory activity in the human superior colliculus. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Winawer J, Curtis C. (2019) Cerebellar Function: Multiple Topographic Maps of Visual Space. Current Biology : Cb. 29: R699-R702
Yoo AH, Klyszejko Z, Curtis CE, et al. (2018) Strategic allocation of working memory resource. Scientific Reports. 8: 16162
Guillaume A, Fuller JR, Srimal R, et al. (2018) Cortico-cerebellar network involved in saccade adaptation. Journal of Neurophysiology
Ikkai A, Dandekar S, Curtis CE. (2016) Lateralization in Alpha-Band Oscillations Predicts the Locus and Spatial Distribution of Attention. Plos One. 11: e0154796
Mackey WE, Devinsky O, Doyle WK, et al. (2016) Human Dorsolateral Prefrontal Cortex Is Not Necessary for Spatial Working Memory. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 36: 2847-56
Markowitz DA, Curtis CE, Pesaran B. (2015) Multiple component networks support working memory in prefrontal cortex. Proceedings of the National Academy of Sciences of the United States of America. 112: 11084-9
Saber GT, Pestilli F, Curtis CE. (2015) Saccade planning evokes topographically specific activity in the dorsal and ventral streams. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 35: 245-52
Klyszejko Z, Rahmati M, Curtis CE. (2014) Attentional priority determines working memory precision. Vision Research. 105: 70-6
Sreenivasan KK, Curtis CE, D'Esposito M. (2014) Revisiting the role of persistent neural activity during working memory. Trends in Cognitive Sciences. 18: 82-9
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