探索全球顶尖大学的研究室——研究领域与主要论文一览无余。
Professor Jung Dal Lee's research lab specializes in diagnostic and molecular pathology, with a focus on cancer biology, particularly urological and hematological malignancies. The lab investigates the prognostic significance of tumor suppressor and oncogenic proteins such as p53 and Bcl-2 in bladder cancer, and conducts comprehensive histopathological and immunophenotypic analyses of non-Hodgkin’s lymphomas in the Korean population. Additional research interests include rare central nervous system tumors, such as microcystic meningiomas and atretic encephaloceles, with emphasis on their histogenesis and pathological classification. The lab integrates immunohistochemistry, ultrastructural analysis, and clinical correlation to improve diagnostic accuracy and patient outcomes.
Professor Hyun-Soul Cho's research lab specializes in Korean traditional mythology, folk religion, and the interplay between myth, religion, and literary culture from the medieval to early modern periods. The lab explores how mythic narratives—particularly those involving celestial bodies, divine figures, and creation myths—are transformed, reinterpreted, and re-embedded in historical texts, oral traditions, and literary works. A central focus is on the dynamic relationship between folk belief and institutional religion, especially the syncretism between shamanistic traditions and Buddhism, as well as the role of religious practices in shaping elite and popular consciousness.
Professor Ouk-Yeop Kwon's research lab focuses on monetary economics, financial stability, and the macroeconomic implications of central bank digital currencies (CBDCs). The lab explores how CBDC design—particularly in terms of privacy, interest rates, and central bank lending—impacts credit supply, tax compliance, financial inclusion, and social welfare. Key research directions include the general equilibrium effects of digital money, the role of central banks in fiscal and monetary policy, and the behavioral responses to new payment technologies.
Professor Gwangmin Jeong's research lab specializes in quantitative risk modeling with a focus on cyber risk, operational risk, and financial market risk. The lab develops advanced statistical and econometric models—such as extreme value theory, Tweedie distributions, and dynamic portfolio risk frameworks—to analyze and predict large-scale losses in financial and healthcare systems. A key research direction involves leveraging big data and machine learning techniques to improve risk measurement while addressing challenges like the curse of dimensionality and behavioral biases in risk decision-making. The lab also explores biological mechanisms underlying disease protection and cancer progression, particularly in relation to signaling pathways such as RAS–BRAF and adenosine receptors.
Professor Jaehong Jeong's research lab specializes in statistical modeling and data science for complex, large-scale environmental and geospatial systems, with a strong focus on spherical and spatial statistics. The lab develops advanced covariance models and stochastic generators to accurately represent global climate and wind energy data on the sphere, addressing challenges related to geometric distortion and computational efficiency. A key emphasis is on creating physically realistic, non-Gaussian models—such as trans-Gaussian and evolutionary spectrum approaches—for uncertainty quantification in climate simulations and renewable energy applications. The lab also explores self-supervised learning techniques to reduce labeling burdens in machine learning, particularly for voice spoofing detection.
Professor Eun-Young Hyun's research lab specializes in interdisciplinary education innovation, focusing on the integration of art, design, and technology to foster creativity and 21st-century competencies. The lab develops digital and multimedia-based educational tools—such as digital textbooks, animation, and STEAM programs—aimed at enhancing student engagement, learning motivation, and holistic development. Central to the lab’s work is the application of new media and design thinking in K-12 education, particularly in art and science education, with an emphasis on experiential, immersive, and student-centered learning models. The lab also pioneers curriculum development for national educational reforms, such as the free semester system, through innovative, technology-enhanced teaching materials and community platforms.
Professor Byung-Sul Jung's research lab specializes in the history of the Korean language, early modern Korean literature, and the socio-cultural impact of print culture in Joseon Dynasty. The lab investigates the development and dissemination of hangul literature, particularly chibangbon (broadside) and sijeokbon (folded-book) publications, as well as the role of vernacular texts in shaping public knowledge and national consciousness. It also explores cross-cultural transmission of Korean language and literature, especially through Japanese and Russian collections, and examines the interplay between media, literacy, and social transformation in pre-modern Korea.
Professor Yeonggon Kim's research lab specializes in applying deep learning and advanced signal processing to medical imaging and physiological data for improved disease prediction and diagnosis. The lab focuses on developing automated AI systems for early detection and classification of conditions such as fractures, epilepsy, and renal tumors using medical imaging (CT, X-ray, EEG). A key direction involves leveraging non-invasive, routinely acquired clinical data—like hip CT scans and EEG—to build interpretable, clinically actionable models. The lab also emphasizes accessibility, promoting tools like KNIME to enable researchers without programming expertise to conduct deep learning in healthcare.
Professor Jae-Ho Kim's research lab focuses on interdisciplinary studies spanning regional economic development, innovation management, structural engineering, and public health. The lab investigates the role of entrepreneurship and innovation in driving firm performance and regional growth, particularly through food tourism festivals and local economic revitalization. It also conducts advanced structural analysis on seismic-resistant systems using shape memory alloys and studies impact resistance in civil infrastructure. Additionally, the lab explores critical social issues such as youth suicide risk, emphasizing the mediating role of learned suicidal potential in the context of family violence.
Professor Ji-Yeon Baek's research lab focuses on molecular and population genetics of insect pests, particularly in the context of pest management and biodiversity conservation. The lab investigates mitochondrial and nuclear genome sequences to understand genetic diversity, population structure, and evolutionary patterns in economically and ecologically significant insects, such as the pear psylla and endangered butterflies. Additionally, the lab contributes to viral epidemiology, particularly in studying respiratory viruses like RSV and influenza in human populations. The integration of molecular tools with ecological and clinical data enables a comprehensive understanding of pest and pathogen dynamics.
Professor Jong-gwan Lee's research lab specializes in labor economics and applied microeconomics, with a focus on the labor market impacts of immigration, migration policies, and institutional changes. The lab investigates how large-scale demographic shifts—such as university openings, repatriation campaigns, and temporary foreign worker programs—affect native employment, wages, and residential mobility. Using rigorous empirical methods, including synthetic control, instrumental variables, and administrative data, the lab emphasizes causal identification in complex real-world settings. Current research also explores occupational upgrading and skill complementarity in response to immigration, particularly in high-growth service sectors.
Professor Hyejin Kim's research lab focuses on interdisciplinary environmental and social science, with a strong emphasis on biodiversity and ecosystem services modeling, human-nature relationships, and the psychological and social dimensions of well-being. The lab explores scenarios for sustainable futures through frameworks like the Nature Futures Framework, integrates social-ecological feedbacks in decision-making, and investigates individual-level factors such as perceived ageism, privacy concerns in digital advertising, and the well-being of caregivers and grandparents. The research bridges ecological sustainability with human health and societal values, using mixed-methods and scenario-based modeling approaches.
Professor Sang Won Han's research lab specializes in intelligent vehicle dynamics and structural engineering, with a strong focus on advanced control systems for complex vehicle systems and seismic performance of steel structures. The lab develops innovative control strategies—such as Model Predictive Control (MPC), LQR, and hybrid observer designs using Kalman filters and deep learning—for articulated vehicles, emphasizing hitch angle estimation and lane-keeping performance under uncertainty. In parallel, the lab investigates the seismic behavior of cold-formed steel bracing members and precast prestressed hollow-core slabs, aiming to improve structural safety and design efficiency under dynamic loading. The integration of dynamic modeling, real-time estimation, and experimental validation defines the lab’s interdisciplinary approach to transportation and civil infrastructure systems.
Professor Seung Ho Jeong's research lab focuses on clinical and translational studies in critical care medicine and neuropsychiatry, with a strong emphasis on optimizing sedation strategies in intensive care units and understanding the neuropsychiatric aspects of neurodegenerative and psychotic disorders. The lab investigates ICU noise exposure and its impact on patient outcomes, explores hemodynamic monitoring techniques like carotid FTc for fluid responsiveness in mechanically ventilated patients, and examines the clinical and cognitive profiles of psychiatric and neurodegenerative conditions such as schizophrenia, OCD, and progressive supranuclear palsy. The research integrates clinical observation with advanced physiological monitoring to improve patient care and inform clinical guidelines.
Professor Yongseok Yoo's research lab specializes in digital maxillofacial imaging, orthodontic biomechanics, and craniofacial morphology using advanced 3D imaging techniques such as cone-beam computed tomography (CBCT). The lab focuses on quantitative analysis of dental and skeletal structures in relation to malocclusion, particularly Class III malocclusion, and investigates the effects of orthodontic and surgical interventions on craniofacial form and function. Research directions include treatment outcome prediction, tissue response to botulinum toxin injections, and the biomechanics of palatal expansion devices using finite element analysis.
Professor Kap Pyo Hong's research lab specializes in structural engineering with a focus on the performance, safety, and resilience of tall and irregular buildings under extreme loads and environmental conditions. The lab conducts advanced research on seismic and fire-resistant design of steel and composite structures, including innovative lateral load-resisting systems, drift control, and fire damage assessment. Key research directions include structural health monitoring using smart sensing technologies, strain data recovery, and load identification using fiber optic sensors, with strong emphasis on practical applications in long-term monitoring and performance evaluation of real-world structures.
Professor Xu's research lab specializes in energy systems optimization, with a strong focus on heat pump technologies—particularly geothermal and air-cooled systems—aimed at enhancing energy efficiency, performance monitoring, and operational sustainability. The lab integrates data-driven approaches, including machine learning and artificial neural networks, to predict and improve system performance in real time, reducing reliance on extensive sensor networks. Research also extends to low-power, cost-effective system design in telecommunications and biomedical applications, reflecting a multidisciplinary approach to energy efficiency and system reliability.
Professor Jung-jin Shin's research lab specializes in historical linguistics, particularly the etymology and semantic evolution of native Korean lexical items, with a strong focus on agricultural and nature-related terminology. The lab investigates the historical development of words through extensive analysis of pre-modern Korean texts, including medical, agricultural, and lexicographical works from the 15th to 19th centuries. A central research direction involves tracing the genealogical relationships among historical wordlists and reconstructing the internal morphology of fossilized or archaic words, such as '고드름' (goderum) and '두드러기' (ddudeoreogi), using both standard and dialectal forms. The lab also engages in terminology theory and the systematic selection of basic terminology, contributing to lexicographic standards in Korean.
Professor Wooje Jo's research lab specializes in strategic information technology management, with a focus on IT portfolio optimization, project synergy, and risk dynamics in mergers and acquisitions. The lab investigates how firms can enhance value creation through synergistic IT investments, particularly by balancing operational and strategic IT initiatives. It also explores the impact of software quality on user satisfaction in diverse technological environments, such as mobile and desktop platforms. The lab integrates quantitative modeling, reliability-based design, and empirical analysis to address real-world challenges in IT investment decision-making and system performance.
Professor Soo-kyung Chang's research lab specializes in the electronic and optoelectronic properties of two-dimensional materials and nanostructured semiconductors. Key research directions include charge transport mechanisms in reduced graphene oxide and transition metal dichalcogenides, defect engineering in 2D materials using laser irradiation, and the development of highly sensitive and selective gas sensors based on tunable electronic responses. The lab also investigates fundamental phenomena such as magnetic-field-induced excitonic transitions and low-frequency electrical noise in polycrystalline thin-film transistors.