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Journal of Cognitive Neuroscience|February 24, 2006
Reward-period activity in primate dorsolateral prefrontal and orbitofrontal neurons is affected by reward schedulesSatoe Ichihara-Takeda, Shintaro Funahashi
Journal of Cognitive Neuroscience|December 7, 2007
Activity of primate orbitofrontal and dorsolateral prefrontal neurons: effect of reward schedule on task-related activitySatoe Ichihara-Takeda, Shintaro Funahashi
Neural Networks : the Official Journal of the International Neural Network Society|September 1, 2006
Contributions of prefrontal cue-, delay-, and response-period activity to the decision process of saccade direction in a free-choice ODR taskKei Watanabe, Saori Igaki, Shintaro Funahashi
Cognitive, Affective & Behavioral Neuroscience|April 27, 2005
Neural mechanisms of spatial working memory: contributions of the dorsolateral prefrontal cortex and the thalamic mediodorsal nucleusShintaro Funahashi, Kazuyoshi Takeda, Yumiko Watanabe
Cerebral Cortex (New York, N.Y. : 1991)|October 4, 2008
Population vector analysis of primate mediodorsal thalamic activity during oculomotor delayed-response performanceYumiko Watanabe, Kazuyoshi Takeda, Shintaro Funahashi
Neuroreport|February 12, 2010
Reward acts as a signal to control delay-period activity in delayed-response tasksSatoe Ichihara-Takeda, Kazuyoshi Takeda, Shintaro Funahashi
Communications Biology|May 5, 2023
Variational relevance evaluation of individual fMRI data enables deconstruction of task-dependent neural dynamicsXiaoyu Lv, Shintaro Funahashi, Chunlin Li, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|June 1, 2017
Stable and Dynamic Coding for Working Memory in Primate Prefrontal CortexEelke Spaak, Kei Watanabe, Shintaro Funahashi, et al.
Frontiers in Psychology|May 6, 2016
Neuropsychological Assessment of a New Computerized Cognitive Task that Was Developed to Train Several Cognitive Functions SimultaneouslySatoe Ichihara-Takeda, Kazuyoshi Takeda, Nozomu Ikeda, et al.
Cerebral Cortex (New York, N.Y. : 1991)|August 9, 2023
Individual prefrontal neurons contribute to sensory-to-motor information transformation by rotating reference frames during spatial working memory performanceShintaro Funahashi, Binbin Gao, Kazuyoshi Takeda, et al.
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