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 Hee Jin Yang's research spans interdisciplinary domains, focusing on the biological and environmental impacts of electromagnetic radiation, particularly terahertz (THz) waves, on cellular processes such as DNA methylation and gene expression. Her work also extends to public health policy evaluation, especially in urban health and climate resilience, using data envelopment analysis to assess the efficiency of heatwave response policies in urban settings. Additionally, she investigates nutritional science, particularly vitamin E bioavailability in livestock, and urban planning, examining how compact city development influences carbon emissions through energy use and green space dynamics. Her research integrates biomedicine, environmental science, and policy analysis to address health and sustainability challenges.
Professor Tae Ho Eom's research lab specializes in public administration, local government finance, and institutional reform, with a focus on the interplay between public sector motivation, bureaucratic behavior, and policy implementation. The lab investigates how organizational stressors, such as job demands and red tape, influence employee turnover and service quality, particularly among street-level bureaucrats. It also explores the effects of state-level fiscal policies—like property tax exemptions and school tax relief programs—on local government efficiency, equity, and citizen engagement. A central theme is understanding how institutional design and citizen monitoring can improve public service delivery and fiscal accountability.
Professor Yeon Wook Kim's research lab specializes in pulmonary and critical care medicine, with a strong focus on lung cancer screening, particularly in never-smokers and individuals with subsolid nodules on low-dose CT. The lab investigates the clinical characteristics, diagnostic pathways, and outcomes of screen-detected lung nodules, while also exploring the role of imaging biomarkers and comorbid conditions such as emphysema and hyperinflation in COPD. Additional research extends to rare metabolic disorders, such as metachromatic leukodystrophy, with a focus on extraneural manifestations like gallbladder involvement. The lab also examines the impact of environmental exposures, including secondhand smoke, on health-related quality of life.
Professor Ji Hoon Kim's research lab specializes in clinical decision support systems and digital health innovations, focusing on integrating machine learning, deep learning, and natural language processing into emergency medicine. The lab develops AI-driven tools to enhance diagnostic accuracy, predict critical outcomes, and improve real-time clinical documentation using vital signs, medical imaging, and voice-to-text technologies. Key research directions include continuous patient monitoring, automated interpretation of medical images, and the optimization of emergency department workflows through artificial intelligence.
Professor Park, Juhyuk's research lab specializes in the development of advanced materials and technologies for biological and physical systems, with a focus on hydrodynamic metamaterials, bio-integrated microdevices, and super-resolution tissue imaging. The lab pioneers innovative approaches in transformation optics for fluidic manipulation, such as hydrodynamic cloaking in viscous flows, while also advancing biomedical diagnostics through dermoscopy and micro-LEDs for optoelectronic applications. A central theme is the integration of physical principles with biological systems, exemplified by the creation of antigen-preserving tissue expansion platforms (eMAP) for nanoscale proteomic imaging. The lab bridges materials science, fluid dynamics, and life sciences to enable multiscale, high-precision analysis of complex biological architectures.
Professor Jae Yeon Seok's research lab specializes in molecular oncology and diagnostic pathology, with a focus on rare and aggressive cancers such as hepatocellular carcinoma, cholangiocarcinoma, anaplastic thyroid carcinoma, and chondrosarcoma. The lab investigates molecular markers, genomic profiles, and tumor microenvironment features to improve diagnostic accuracy and identify novel therapeutic targets. Key research directions include the characterization of cancer stem cell traits, immunohistochemical validation of biomarkers like INSM1, TROP-2, and 5hmC, and the clinical application of non-invasive fibrosis markers such as APRI in pediatric and adult liver diseases.
Professor MyoungLae Cho's research lab specializes in natural product chemistry and bioactive compound discovery, with a primary focus on marine algae and plant-derived compounds. The lab investigates the antioxidant, anti-diabetic, and neuroprotective activities of polysaccharides (e.g., fucoidan), phenolics, and flavonoids, emphasizing structure-activity relationships and functional properties. Key research directions include the isolation and characterization of bioactive molecules from seaweeds and medicinal plants, and their applications in food science and nutraceuticals.
Professor Sujeong Kim's research lab specializes in advanced optical communication systems and biomedical engineering, with a focus on improving signal integrity in fiber-optic transmission through novel photonic components such as semiconductor optical amplifiers and fiber gratings. The lab also conducts clinical and translational research in oral and maxillofacial surgery, particularly on tissue regeneration and healing following tooth extraction and temporomandibular joint disorders. A key theme across the research is the development of innovative solutions—both technological and biological—that enhance system performance and patient outcomes. The lab bridges photonics and biomedicine, exploring applications from ultrafast optical coding to inflammatory biomarkers and implant stability.
Professor Jing Liu's research lab focuses on cellular stress responses, particularly in the context of tissue injury, regeneration, and metabolic regulation. Key research directions include the role of stress-activated kinases (such as Mst1 and IRE1α) in apoptosis and cardiomyopathy, the regulation of intracellular trafficking (e.g., COPII vesicles) in response to nutrient stress, and the molecular mechanisms underlying skeletal muscle homeostasis and regeneration. The lab also investigates metabolic imaging biomarkers, such as FDG-PET SUVmax, in early-stage lung cancer, integrating molecular biology with advanced imaging techniques.
Professor Liu Jing's research lab focuses on cellular stress responses, particularly in the context of tissue injury, regeneration, and metabolic regulation. Key research directions include the role of stress-activated kinases (such as Mst1 and IRE1α) in apoptosis and cardiac or skeletal muscle homeostasis, the regulation of intracellular trafficking machinery (like COPII) in response to metabolic cues, and the impact of mitochondrial and metabolic regulators (such as Fnip1) on muscle fiber type specification and function. The lab integrates molecular biology, live-cell imaging, and translational studies to understand how cellular stress pathways influence disease progression and tissue repair.
Professor Ji Won Yoon's research lab focuses on metabolic and musculoskeletal health in aging populations, with a strong emphasis on diabetes management, glycemic control, and its impact on muscle quality and function. The lab investigates the interplay between sarcopenia, obesity, and cardiovascular disease, while also exploring novel therapeutic interventions such as natural extracts (e.g., ginsam) for type 2 diabetes. Additionally, the lab applies computational and imaging methodologies to optimize urban mobility systems and to advance NMR spectroscopy techniques for faster, high-resolution data acquisition.
Professor Heo Gyunyoung's research lab specializes in nuclear power plant safety, focusing on cyber security for digital instrumentation and control systems, advanced risk assessment methodologies, and real-time transient monitoring to enhance plant reliability and accident prevention. The lab also develops intelligent maintenance and evacuation strategies using data-driven technologies such as agent-based modeling and thermal performance analysis. Research integrates probabilistic and deterministic safety approaches to address complex, nonlinear risks in nuclear energy systems.
Professor Hyun-Bok Shim's research lab specializes in the development of next-generation therapeutic antibodies through advanced in vitro antibody discovery technologies. The lab focuses on designing and engineering synthetic antibody libraries—particularly human scFv libraries—with optimized complementarity determining region (CDR) diversity to enhance target specificity, stability, and therapeutic efficacy. Key research directions include the application of phage display technology for high-throughput selection of antibodies, the creation of novel antibody formats such as bispecific antibodies and antibody-drug conjugates, and the identification of novel therapeutic targets to overcome limitations in current antibody therapies.
Professor Seung Pil Ban's research lab specializes in cerebrovascular diseases and neurovascular interventions, with a focus on endovascular treatments for intracranial hemorrhage, moyamoya disease, and chronic subdural hematoma. The lab investigates innovative embolization techniques such as middle meningeal artery embolization and evaluates long-term surgical and hemodynamic outcomes using quantitative imaging and clinical assessments. Research also emphasizes point-of-care ultrasound for intracranial pressure monitoring and national trends in stroke management, reflecting a strong translational approach from clinical data to patient-centered interventions.
Professor Sanghoon Park's research lab specializes in the development and evaluation of advanced numerical methods for atmospheric modeling, with a focus on dynamical cores, mesh refinement strategies, and vertical coordinate systems in global and regional weather prediction models. The lab investigates non-hydrostatic and hydrostatic solvers, particularly within the MPAS and WRF modeling frameworks, to improve simulation accuracy and stability—especially in complex terrain and deep convection. Key research directions include idealized test cases for model intercomparison, such as baroclinic waves and supercells, to assess model performance under controlled conditions. The lab also explores the impact of numerical formulations on gravity wave generation and error propagation in atmospheric simulations.
Professor Hyungmin Cho's research lab specializes in designing energy-efficient, resilient computing systems for emerging applications vulnerable to hardware errors. The lab focuses on cross-layer resilience strategies that integrate techniques across circuit, architecture, and software layers to achieve high reliability at low cost. Key research directions include error-resilient system architectures for probabilistic workloads such as recognition, mining, and synthesis (RMS), as well as quantitative analysis of error injection techniques and fault-tolerant communication systems. The lab also pioneers frameworks for systematic optimization of resilience in radiation-affected environments, particularly for soft errors in processor cores.
Professor Do-Hyun Kim's research lab focuses on immunology and host-microbe interactions, with a central emphasis on innate and adaptive immune regulation in inflammatory diseases and cancer. The lab investigates the roles of endogenous immune modulators such as Chitinase-3-like-1 (Chi3l1) and estrogen receptor alpha (ERα) in T cell differentiation and function, particularly in type 2 inflammation, autoimmunity, and anti-tumor immunity. Using translational mouse models and molecular tools—including cell-permeable peptides for CNS delivery—the lab explores novel therapeutic strategies for autoimmune diseases like multiple sclerosis and respiratory disorders such as asthma and emphysema. The research also extends to host-microbial crosstalk, particularly gut-lung axis mechanisms and dietary modulation of immunity through microbiota and chitin metabolism.
Professor Jong Ho Hong's research lab focuses on sustainable energy systems, environmental economics, and innovative display technologies. The lab conducts scenario-based energy planning using advanced modeling tools like LEAP to evaluate transition pathways toward renewable energy, while also investigating the economic valuation of environmental services through contingent valuation methods. Additionally, the lab explores cutting-edge applications in flexible electronics, such as freeform AMOLED displays, and studies post-harvest quality management in agricultural products under modified atmosphere packaging. These diverse research directions reflect a strong commitment to addressing environmental sustainability through technological innovation and economic analysis.
Professor Kyung Il Park's research lab specializes in cardiovascular and marine biomedical research, with a focus on interventional cardiology, particularly the functional assessment of coronary artery disease using fractional flow reserve (FFR) and the long-term outcomes of revascularization strategies. The lab also investigates marine disease ecology, particularly the role of parasitic pathogens like *Perkinsus* spp. in mass mortality events of commercially important bivalves such as the Manila clam. Additional research interests include the impact of antiplatelet therapy—especially ticagrelor—on microvascular function and the role of hemoglobin variability in the development of hypertension. The lab integrates clinical cardiology with population-based epidemiology and environmental health sciences to address both human and ecological health challenges.
Professor Jeong Eun Shin's research lab specializes in regenerative medicine and neural repair, focusing on innovative strategies to treat central nervous system injuries such as hypoxic-ischemic brain injury and spinal cord injury. The lab investigates the therapeutic potential of combining biomaterial scaffolds with human neural progenitor cells to enhance neural regeneration, survival, and functional recovery. A key focus is optimizing cell transplantation therapies through biological modulation—such as TNF-α pretreatment—to improve cell survival in hostile injury microenvironments. The lab also explores long-term respiratory outcomes in neonates, particularly the impact of bronchopulmonary dysplasia and surfactant therapy on childhood respiratory morbidity.