Jeong-tae Kwon
Korea Advanced Institute of Science and Technology · Neuroscience
About the Lab
Professor Jeong-tae Kwon's research lab specializes in the neural mechanisms underlying fear memory formation, with a focus on identifying the specific neural circuits and synaptic plasticity underlying associative learning in the amygdala and its connected sensory pathways. Using advanced techniques such as optogenetics, viral vector-mediated gene delivery, in vivo imaging of neuronal activity, and behavioral assays, the lab investigates how specific neurons are selected to encode memory traces and how synaptic changes in the thalamo-amygdala pathway contribute to the storage and retrieval of fear memories. The lab's work bridges systems neuroscience with cellular and molecular mechanisms to uncover the fundamental principles of memory encoding in the brain.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
9In Pavlovian fear conditioning, the lateral amygdala (LA) has been highlighted as a key brain site for association between sensory cues and aversive stimuli. However, learning-related changes are also found in upstream sensory regions such as thalamus and cortex. To isolate the essential neural circuit components for fear memory association, we tested whether direct activation of presynaptic sensory inputs in LA, without the participation of upstream activity, is sufficient to form fear memory i
Despite considerable progress over the past several decades, our understanding of the mechanisms underlying memory encoding, storage, and expression in a complex neural network are far from complete. In particular, how some neurons rather than others are selectively engaged to encode memory remains largely unknown. Using virus-mediated gene delivery into a small subset of neurons in a given network, molecular imaging of neuronal activity, pharmacological perturbation of specific neurons' activit
Memory is thought to be sparsely encoded throughout multiple brain regions forming unique memory trace. Although evidence has established that the amygdala is a key brain site for memory storage and retrieval of auditory conditioned fear memory, it remains elusive whether the auditory brain regions may be involved in fear memory storage or retrieval. To investigate this possibility, we systematically imaged the brain activity patterns in the lateral amygdala, MGm/PIN, and AuV/TeA using activity-
Use-dependent synaptic modifications in the lateral nucleus of the amygdala (LA) have been suggested to be the cellular analog of memory trace after pavlovian fear conditioning. However, whether neurophysiological changes in the LA are produced as a direct consequence of associative learning awaits additional proof. Using microstimulation of the medial geniculate nucleus of the thalamus as the conditioned stimulus (CS), we demonstrated that contingent pairings of the brain-stimulation CS and a f
Research Areas
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