chuljung kwak

University of Pennsylvania Medical School, Philadelphia, PA, United States 
"chuljung kwak"
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Choi DI, Kim M, Kim S, et al. (2021) Conditional knock out of transcription factor CTCF in excitatory neurons induces cognitive deficiency. Molecular Brain. 14: 1
Kwak JH, Kim S, Yu NK, et al. (2020) Loss of the neuronal genome organizer and transcription factor CTCF induces neuronal death and reactive gliosis in the anterior cingulate cortex. Genes, Brain, and Behavior. e12701
Lim CS, Kim JI, Kwak C, et al. (2018) β-Adrenergic signaling is required for the induction of a labile state during memory reconsolidation. Brain Research Bulletin
Kang SJ, Kim S, Lee J, et al. (2017) Inhibition of anterior cingulate cortex excitatory neuronal activity induces conditioned place preference in a mouse model of chronic inflammatory pain. The Korean Journal of Physiology & Pharmacology : Official Journal of the Korean Physiological Society and the Korean Society of Pharmacology. 21: 487-493
Lim CS, Nam HJ, Lee J, et al. (2017) PKCα-mediated phosphorylation of LSD1 is required for presynaptic plasticity and hippocampal learning and memory. Scientific Reports. 7: 4912
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
Kim M, Kwak C, Yu NK, et al. (2016) Optimization of the touchscreen paired-associate learning (PAL) task for mice and its dorsal hippocampal dependency Animal Cells and Systems. 20: 229-236
Koga K, Descalzi G, Chen T, et al. (2015) Coexistence of Two Forms of LTP in ACC Provides a Synaptic Mechanism for the Interactions between Anxiety and Chronic Pain. Neuron. 86: 1109
Kwak C, Lim CS, Kaang BK. (2015) Assessments of cognitive abilities in a mouse model of Parkinson's disease with a touch screen test. Behavioural Brain Research
Kang SJ, Kwak C, Lee J, et al. (2015) Bidirectional modulation of hyperalgesia via the specific control of excitatory and inhibitory neuronal activity in the ACC. Molecular Brain. 8: 81
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