首尔大学、KAIST、延世大学等韩国QS前10名大学的研究室信息。
Professor Suk-Mo Kim's research lab focuses on thyroid cancer biology, with a particular emphasis on molecular mechanisms underlying disease progression, treatment resistance, and therapeutic innovation. The lab investigates epigenetic regulation, such as histone deacetylation and DNA methylation, in thyroid carcinogenesis, especially in aggressive subtypes like anaplastic thyroid cancer. It also explores metabolic reprogramming—particularly glutamine metabolism—and stress response pathways (e.g., ER stress and ATF4-mediated one-carbon metabolism) as therapeutic targets. Additionally, the lab evaluates clinical outcomes and safety of targeted therapies in advanced or refractory thyroid cancers, aiming to improve patient management and develop novel treatment strategies.
Professor Sangbeom Choi's research lab specializes in biomedical data science and computational health, focusing on identifying genetic and environmental risk factors for complex diseases such as oral squamous cell carcinoma, rheumatoid arthritis, and autoimmune thyroid disease. The lab integrates statistical genetics, systems biology, and machine learning to uncover genetic susceptibility loci and gene-environment interactions, particularly in non-European populations. A key focus is on developing efficient, real-time computational models—such as for 3D human pose estimation—enabling clinical and public health applications on resource-limited platforms. The lab also conducts large-scale epidemiological studies to assess the impact of lifestyle factors like sleep duration on mortality and disease risk.
Professor Hee Kyung Lee's research lab focuses on translational neuroscience and translational medicine, with a primary emphasis on understanding the neural and immunological mechanisms underlying psychiatric and neurological disorders. The lab investigates neurodevelopmental models of schizophrenia, particularly through the lens of neural synchrony and excitation-inhibition imbalance, while also exploring the role of adult hippocampal neurogenesis and genetic risk factors such as DISC1. In parallel, the lab examines immune modulation in cancer, particularly the regulatory functions of Treg cells and the therapeutic potential of natural compounds like methyl gallate. Additionally, the lab contributes to clinical research in emergency care, including ultrasound-guided anesthesia and outcomes in cardiac arrest patients.
Professor Sung Jin Kang's research lab specializes in empirical macroeconomics, with a focus on growth economics, environmental economics, and industrial organization. The lab investigates key economic phenomena such as de-industrialization, energy demand elasticity, and the impact of financialization on innovation strategies, using advanced econometric methods and large-scale panel data. Current research directions include the role of foreign direct investment in structural economic change, the effectiveness of environmental policies in promoting green trade, and the interplay between financial development, human capital, and long-term economic growth. The lab emphasizes rigorous empirical analysis to inform economic policy in both developed and emerging economies.
Professor Eui Kyung Lee's research lab focuses on health policy, pharmaceutical outcomes, and health economics, with a strong emphasis on improving medication safety, optimizing chronic disease management, and informing evidence-based healthcare reimbursement decisions. The lab investigates medication error reporting, cost-effectiveness of innovative therapies—including curative treatments—and the impact of health system interventions such as the Chronic Disease Management Program on medication adherence and clinical outcomes. Using real-world data and economic evaluation methods, the lab aims to support transparent, equitable, and patient-centered healthcare decision-making.
Professor Joo Hyung Moon's research lab focuses on neuro-oncology, particularly glioblastoma (GBM) and rare intracranial tumors such as solitary fibrous tumor/hemangiopericytoma (SFT/HPC). The lab investigates surgical outcomes, metabolic reprogramming in GBM—especially fatty acid oxidation and its interaction with standard chemotherapy—and the tumor immune microenvironment, including T-cell exhaustion and response to immune checkpoint inhibitors. Their work integrates clinical outcomes with molecular and metabolic profiling to improve therapeutic strategies for primary brain tumors.
Professor Cheol-Ryong Koo's research lab focuses on metabolic diseases, particularly type 2 diabetes and obesity, with a strong emphasis on the molecular and physiological mechanisms underlying glucose homeostasis. The lab investigates the therapeutic potential of natural compounds like resveratrol in protecting pancreatic β-cells and enhancing energy expenditure through brown adipose tissue. Additionally, the lab explores the metabolic and imaging consequences of bariatric and gastric surgeries, using advanced techniques such as FDG-PET/CT and RNA sequencing to understand intestinal glucose metabolism and post-surgical metabolic adaptation.
Professor Jae-Joon Song's research lab specializes in rock mechanics and fluid flow characterization in porous media, with a strong focus on geological carbon dioxide (CO₂) storage, non-Darcy flow behavior, and pore-scale modeling. The lab integrates advanced imaging techniques such as micro-CT scanning with experimental mechanics and computational modeling to investigate fluid-rock interactions, permeability evolution under varying pressure conditions, and failure mechanisms in fractured rocks. Key research directions include the development of pore channel models from reconstructed microstructures, effective pressure law applications, and digital volume correlation for strain field analysis.
Professor Kyung-Hwa Lee's research lab focuses on educational psychology, mathematics education, and early childhood development, with a strong emphasis on fostering creativity, professional development in mathematics teachers, and the integration of cultural and cognitive dimensions in learning. The lab explores innovative assessment models such as process-oriented evaluation in mathematics education, investigates the interplay between creative thinking and personality in young children, and develops context-specific teacher professional development systems (PDS). Additionally, the lab examines cultural expressions in historical art, particularly how material culture and self-representation in Joseon-era scholar-officials’ works reflect identity and intellectual values.
Professor Ji Won Oh's research lab specializes in genomic and developmental biology, focusing on understanding human embryogenesis, somatic mosaicism, and the genetic basis of evolutionary adaptations. The lab employs advanced single-cell and whole-genome sequencing technologies to reconstruct cellular lineage trees, study somatic mutation dynamics, and explore the molecular mechanisms underlying human development and disease. Additionally, the lab investigates cellular reprogramming and tissue engineering, particularly in dermal papilla cells for regenerative therapies, and applies innovative 3D imaging techniques to study vascular architecture in the brain.
Professor Jungwan Cho's research lab specializes in thermal transport phenomena in advanced semiconductor materials and heterostructures, with a focus on understanding and optimizing thermal resistance at interfaces and defects in wide-bandgap semiconductors such as GaN and AlGaN. The lab employs advanced nanoscale thermal characterization techniques—particularly time-domain thermoreflectance (TDTR) and transient thermoreflectance—to measure thermal conductivity and interfacial resistance in composite substrates, including GaN-on-diamond and GaN-on-SiC systems. Their work addresses critical thermal management challenges in high-power electronic devices, aiming to enhance device performance and reliability through materials engineering and interface optimization. The lab also integrates electron microscopy and phonon transport modeling to provide fundamental insights into heat conduction in complex heteroepitaxial systems.
Professor Sunny Sung's research lab specializes in translational biomedical research, focusing on the molecular mechanisms underlying diabetic kidney disease, renal fibrosis, and rare renal and gastrointestinal malignancies. The lab investigates key signaling pathways such as VEGF and TGF-β/Smad3 in kidney injury and fibrosis, aiming to identify novel therapeutic targets. It also conducts clinical and pathological studies on gastrointestinal stromal tumors (GISTs) and ovarian cancer, developing image-based classifiers like PathoRiCH to predict treatment response. The lab integrates preclinical models with human pathology to advance precision medicine in nephrology and oncology.
Professor Jae-guk Lee's research lab specializes in digital media and political communication, focusing on how social networking sites (SNS) shape political discourse, opinion formation, and social polarization. The lab investigates the dynamics of online political engagement, including cross-cutting discussions, exposure to diverse viewpoints, and the role of social media in mediating political information and network heterogeneity. Key research directions include the impact of SNS use on political polarization, the mediation of news consumption and political talk, and the mechanisms through which users encounter counter-attitudinal content. The lab combines survey data, content analysis, and experimental methods to explore the interplay between digital connectivity and democratic deliberation.
Professor Joon Sang Kang's research lab specializes in the development and characterization of advanced functional materials for thermal management and energy conversion, with a strong focus on novel semiconductors and two-dimensional van der Waals materials. The lab investigates intrinsic thermal transport properties, phonon dynamics, and anharmonicity in materials such as boron arsenide, boron phosphide, black phosphorus, and tin selenide, using advanced ultrafast spectroscopy and nanoscale thermometry techniques. They also explore applications in flexible thermoelectrics, solid-state energy harvesting, and real-time detection of airborne pathogens through integrated microfluidic and optical platforms. Their work bridges fundamental materials physics with practical device integration for next-generation electronics, photonics, and biomedical sensing.
Professor Insoon Yang's research lab specializes in robust optimization, stochastic control, and energy systems, with a focus on developing data-driven and distributionally robust control policies for uncertain environments. The lab integrates advanced mathematical frameworks—such as Wasserstein ambiguity sets and dynamic programming—into practical applications ranging from low-power integrated circuit design to electricity market risk management. Key research directions include dynamic threshold voltage control in nanoscale CMOS technologies and indirect load control mechanisms for renewable energy integration. The lab emphasizes real-world applicability by addressing challenges in imperfect data, system uncertainty, and performance-energy trade-offs.
Professor Hak-Jung Kim's research lab specializes in natural product biosynthesis, with a focus on complex polyketide-derived macrolides such as spinosyn A and siderophores like acinetobactin. The lab integrates chemical synthesis, enzymology, and molecular biology to unravel the intricate biosynthetic pathways of these bioactive molecules, particularly emphasizing post-PKS modifications and enzyme-catalyzed reactions. A key research direction involves the development of chemoenzymatic strategies for the efficient synthesis of structurally complex natural products, while also exploring novel targeted protein degradation technologies as therapeutic tools. The lab also investigates virulence factors in pathogenic bacteria, especially iron acquisition systems in *Acinetobacter baumannii*, to support the discovery of new antimicrobial strategies.
Professor Mun-ki Kang's research lab specializes in advanced image processing and signal restoration techniques, focusing on noise modeling, multiscale decomposition, and multichannel image deconvolution. The lab develops innovative algorithms for low-dose X-ray imaging, multispectral sensor processing, and robust restoration of degraded images under limited prior knowledge. Key research directions include Poisson-Gaussian noise modeling in transform domains, constrained regularization methods, and iterative parameter estimation for improved image quality without requiring explicit noise or image smoothness assumptions.
Professor Ki-Soon Shin's research lab specializes in cellular and molecular neurophysiology, focusing on ion channels and their roles in neuronal and muscular excitability. The lab investigates the functional properties and regulatory mechanisms of inwardly rectifying potassium (Kir) channels, hyperpolarization-activated cyclic nucleotide-gated (HCN) channels, and their contributions to neural circuit function, muscle development, and neurological disorders. Key research directions include channelopathies, synaptic plasticity, and the impact of neuromodulators such as nicotine and substance P on neuronal excitability in specific brain regions like the medial habenula. The lab also explores the pathophysiological mechanisms of neurotoxic compounds, such as acromelic acid, in motor neuron degeneration.
Professor Duhwan Mun's research lab specializes in advancing digital transformation in engineering design and manufacturing through deep learning and 3D data processing. The lab focuses on intelligent recognition and reconstruction of engineering drawings—particularly piping and instrumentation diagrams (P&IDs)—from image formats into structured digital models. Another key direction involves 3D CAD model understanding, including the automatic detection of machining features and topology reconstruction using deep neural networks. The lab also addresses challenges in collaborative product development by enabling interoperability and effective engineering change management across heterogeneous CAD systems.
Professor Kyung Soo Kim's research lab specializes in translational biomedical research with a focus on otorhinolaryngology, oncology, and inflammatory diseases. The lab investigates molecular mechanisms underlying head and neck cancers, including the apoptotic effects of natural compounds like EGb 761 and its active components such as quercetin and kaempferol. It also explores therapeutic applications of botulinum toxin A in treating chronic rhinitis and evaluates clinical risk factors—such as margin status in pancreatic cancer and the link between hypertension and epistaxis—for improved patient outcomes. The lab integrates in vitro cell culture models, clinical trials, and systematic reviews to bridge basic science with clinical practice.