Simon S. Hong

Affiliations: 
National Eye Institute, Bethesda, Maryland 
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"Simon Hong"
Mean distance: 13.57 (cluster 29)
 
SNBCP

Parents

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Stephen Grossberg grad student 2004 Boston University
 (A neural model of surface perception: Lightness, anchoring, and filling-in.)
Okihide Hikosaka post-doc NEI
Lance M. Optican post-doc 2006-2008 NEI
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Publications

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Hong S, Amemori S, Chung E, et al. (2018) Predominant Striatal Input to the Lateral Habenula in Macaques Comes from Striosomes. Current Biology : Cb
Ghazizadeh A, Hong S, Hikosaka O. (2018) Prefrontal Cortex Represents Long-Term Memory of Object Values for Months. Current Biology : Cb. 28: 2206-2217.e5
Hong S, Hikosaka O. (2014) Pedunculopontine tegmental nucleus neurons provide reward, sensorimotor, and alerting signals to midbrain dopamine neurons. Neuroscience. 282: 139-155
Hong S. (2013) Dopamine system: manager of neural pathways. Frontiers in Human Neuroscience. 7: 854
Hong S, Hikosaka O. (2013) Diverse sources of reward value signals in the basal ganglia nuclei transmitted to the lateral habenula in the monkey. Frontiers in Human Neuroscience. 7: 778
Barrot M, Sesack SR, Georges F, et al. (2012) Braking dopamine systems: a new GABA master structure for mesolimbic and nigrostriatal functions. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 32: 14094-101
Hong S, Jhou TC, Smith M, et al. (2011) Negative reward signals from the lateral habenula to dopamine neurons are mediated by rostromedial tegmental nucleus in primates. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 31: 11457-71
Hong S, Optican LM, Fitzgibbon EJ, et al. (2011) OrbitView: Eye movement visualization software. Journal of Neuroscience Methods. 200: 181-4
Hong S, Hikosaka O. (2011) Dopamine-mediated learning and switching in cortico-striatal circuit explain behavioral changes in reinforcement learning. Frontiers in Behavioral Neuroscience. 5: 15
Bromberg-Martin ES, Matsumoto M, Hong S, et al. (2010) A pallidus-habenula-dopamine pathway signals inferred stimulus values. Journal of Neurophysiology. 104: 1068-76
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