Hyoung Kim
Affiliations: | National Institutes of Health, Bethesda, MD |
Area:
Neuroscience, working memory, neural circuitGoogle:
"Hyoung Kim"Mean distance: 13.64 (cluster 17) | S | N | B | C | P |
Parents
Sign in to add mentorOkihide Hikosaka | post-doc | 2009- | NEI |
Bong-Kiun Kaang | post-doc | 2009 | Seoul National University |
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Publications
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Hwang SH, Park D, Paeng S, et al. (2023) Pneumatic tactile stimulus delivery system for studying brain responses evoked by active finger touch with fMRI. Journal of Neuroscience Methods. 109938 |
Kang J, Kim H, Hwang SH, et al. (2021) Primate ventral striatum maintains neural representations of the value of previously rewarded objects for habitual seeking. Nature Communications. 12: 2100 |
Kim HF, Griggs WS, Hikosaka O. (2020) Long-Term Value Memory in the Primate Posterior Thalamus for Fast Automatic Action. Current Biology : Cb |
Amita H, Kim HF, Inoue KI, et al. (2020) Optogenetic manipulation of a value-coding pathway from the primate caudate tail facilitates saccadic gaze shift. Nature Communications. 11: 1876 |
Hikosaka O, Yasuda M, Nakamura K, et al. (2019) Multiple neuronal circuits for variable object-action choices based on short- and long-term memories. Proceedings of the National Academy of Sciences of the United States of America |
Amita H, Kim HF, Smith M, et al. (2018) Neuronal connections of direct and indirect pathways for stable value memory in caudal basal ganglia. The European Journal of Neuroscience |
Hikosaka O, Kim HF, Amita H, et al. (2018) Direct and indirect pathways for choosing objects and actions. The European Journal of Neuroscience |
Griggs WS, Kim HF, Ghazizadeh A, et al. (2017) Flexible and Stable Value Coding Areas in Caudate Head and Tail Receive Anatomically Distinct Cortical and Subcortical Inputs. Frontiers in Neuroanatomy. 11: 106 |
Kim HF, Amita H, Hikosaka O. (2017) Indirect Pathway of Caudal Basal Ganglia for Rejection of Valueless Visual Objects. Neuron. 94: 920-930.e3 |
Yu NK, Kim HF, Shim J, et al. (2016) A transducible nuclear/nucleolar protein, mLLP, regulates neuronal morphogenesis and synaptic transmission. Scientific Reports. 6: 22892 |