Sungkyunkwan University · 生化学・遺伝学・分子生物学
Professor HJ Lee's research lab focuses on neurotrophic mechanisms in the hippocampal formation, particularly the trophic interactions between the septal cholinergic system and hippocampal neurons. The lab employs primary neuronal cell cultures and immortalized cell lines to study neuronal differentiation, electrophysiological properties, and the role of neurotrophic factors such as nerve growth factor (NGF). Additionally, the lab investigates geotechnical properties of submarine sediments, emphasizing laboratory testing methods and shear strength evaluation with an emphasis on minimizing sampling disturbance and improving test accuracy. This dual focus spans neuroscience and marine geomechanics, reflecting interdisciplinary approaches to biological and environmental systems.
Figures are computed from collected data and may differ slightly.
The hippocampal formation elaborates trophic factors such as nerve growth factor (NGF) to support the cholinergic innervation it receives from the septal region. To further study the trophic interactions of this pathway, hippocampal cells from embryonic day 18 and postnatal day 21 mice were immortalized via somatic cell fusion to N18TG2 neuroblastoma cells. The hippocampal cell lines exhibit morphological and cytoskeletal features which are typical of their neuronal parents but which are not exp
The steps and procedures used to obtain submarine sediment shear strengths from laboratory tests on samples are reviewed and evaluated. These steps and procedures include sampling, handling, testing, and interpretation. Sampling causes the most uncertainty through the introduction of varied amounts of coring disturbance. The selection of the appropriate test and testing strategy is next in importance. Laboratory vane shear and other strength index tests are reviewed in detail because they have d
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