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 Do Kyun Kim's research lab focuses on antimicrobial resistance (AMR) surveillance and epidemiology, with a strong emphasis on bloodstream infections caused by multidrug-resistant pathogens such as *E. coli*, *Klebsiella pneumoniae*, *Pseudomonas aeruginosa*, and *Acinetobacter* spp. The lab investigates the molecular mechanisms of resistance, including carbapenemase production and virulence factors like the pks gene cluster, while also contributing to national surveillance systems such as Kor-GLASS. In parallel, the lab explores complex fluid dynamics, particularly unsteady incompressible flows around bluff bodies, with applications in biomedical and environmental engineering. The integration of clinical microbiology, public health surveillance, and computational fluid dynamics defines the lab’s interdisciplinary approach.
Professor Kyungkeun Kang's research lab specializes in mathematical analysis of partial differential equations arising in fluid dynamics, materials science, and mathematical physics. The lab focuses on the existence, regularity, and long-time behavior of solutions to nonlinear PDEs, including the Navier–Stokes equations, Cahn–Hilliard systems, and quasilinear curl systems. Key research directions include boundary regularity theory, energy-stable numerical schemes for phase-field models, and the mathematical modeling of superconductivity and chemotaxis. The lab combines deep analytical techniques with numerical simulations to address fundamental problems in continuum mechanics and materials evolution.
Professor Sungkyun Kim's research lab specializes in advanced dental biomaterials and digital dentistry, focusing on the development and evaluation of 3D-printed dental prostheses using additive manufacturing technologies. The lab investigates the mechanical properties, accuracy, biocompatibility, and ceramic bonding performance of materials such as Co-Cr and Ni-Cr alloys fabricated via selective laser melting (SLM), casting, and milling. A key emphasis is placed on optimizing 3D printing parameters for clinical fit and long-term performance, as well as assessing cell-material interactions using human adipose-derived stem cells. The lab also explores surface engineering and bonding agents to enhance the durability and reliability of dental restorations.
Professor Sang-Il Lee's research lab focuses on public health and health services research, with a strong emphasis on health policy, maternal and child health, and health information systems. The lab investigates health behavior, medical decision-making, and the impact of healthcare technologies—such as health information exchange and complementary and alternative medicine—on clinical practice and population outcomes. It also applies advanced spatial analysis and GIS-based methodologies to identify health-related geographic clusters and inform public health interventions.
Professor Sang Yul Baek's research lab specializes in bioinspired adhesion and soft robotics, focusing on developing advanced, biocompatible adhesive systems that mimic natural structures found in octopuses, tree frogs, and diving beetles. The lab pioneers smart, switchable, and sensory-integrated adhesive devices for wearable electronics, medical diagnostics, and minimally invasive therapies, emphasizing robust performance on wet, rough, or dynamic biological surfaces. Key research directions include hierarchical micro/nano-architectures, in situ skin interfacing, and stimuli-responsive adhesion mechanisms for real-time health monitoring and therapeutic applications.
Professor Young-Mi Park's research lab focuses on the molecular mechanisms underlying atherosclerosis, with a central emphasis on the role of CD36 in macrophage dysfunction, foam cell formation, and immune cell trafficking. The lab investigates how oxidized low-density lipoprotein (oxLDL) signaling through CD36 contributes to chronic inflammation, impaired macrophage migration, and cellular polarization defects in atherosclerotic plaque development. Additionally, the lab explores the systemic links between oral infections—particularly *Porphyromonas gingivalis*—and gut microbiota dysbiosis in promoting cardiovascular disease. The research integrates in vitro cell biology, in vivo murine models, and multi-omics approaches such as 16S rRNA sequencing and lipid metabolism profiling.
Professor Dong Hwan Lee's research lab specializes in catalysis, particularly in the development of transition metal-catalyzed C–H functionalization and cross-coupling reactions for sustainable organic synthesis. The lab also focuses on machine learning applications in neuroscience and mental health, using EEG and QEEG data to classify psychiatric disorders. Additionally, the lab investigates advanced materials for energy and electronics, including zeolite-supported catalysts and parameter estimation in NAND flash memory. The integration of chemistry, data science, and materials science defines the lab’s interdisciplinary approach.
Professor Yong-Shik Lee's research focuses on international trade law, development economics, and the intersection of law and economic progress, particularly in the context of developing countries. His work critically examines WTO disciplines, safeguard measures, trade-related investment, intellectual property rights, and regulatory reforms, with a strong emphasis on fostering sustainable development in Asia, Africa, and Latin America. He also explores the legal frameworks governing trade disputes and national security exceptions, offering comprehensive analyses of key WTO agreements and their implications for economic policy.
Professor Sang-Hyo Kim's research lab specializes in advanced signal processing, coding theory, and wireless communication systems, with a strong focus on the design and analysis of error-correcting codes, including polar codes and orthogonal space-time block codes (OSTBCs), for reliable transmission in fading channels. The lab investigates low-complexity decoding techniques, such as successive cancellation list decoding with CRC-aided detection, and develops innovative multiple-access schemes like trellis tone modulation for device-to-device (D2D) communications. Additionally, the lab explores practical structural engineering applications, such as optimizing shear connectors in composite steel-concrete structures, demonstrating a multidisciplinary approach combining communications and civil engineering. The research integrates theoretical analysis with practical implementation, aiming to enhance system performance in 5G and beyond networks.
Professor Tae Won Jang's research lab focuses on occupational and environmental health, with a strong emphasis on the impact of work-related factors on chronic disease risk and physical health outcomes. Key research directions include the epidemiological investigation of genetic mutations in lung cancer among Korean populations, the association between work hours, shift work, and obesity or sleep disturbances, and the relationship between occupational physical activity and cardiorespiratory fitness. The lab also explores environmental exposures—such as cadmium—on cardiovascular health, particularly in non-occupational settings. These studies integrate epidemiological methods with clinical and imaging data to inform public health policy and preventive strategies in occupational and community settings.
Professor Jongsoo Lee's research spans interdisciplinary domains, focusing on public administration innovation in local governments, community-based social capital, and multicultural society policy. His work explores how democratic governance, citizen participation, and institutional design influence local innovation and social well-being. He also investigates engineering design methodologies, particularly in multidisciplinary optimization and creative engineering education, reflecting a dual interest in social innovation and technical problem-solving. His research consistently bridges social theory, public policy, and practical implementation in both societal and technological contexts.
Professor Kyae Hyung Kim's research lab focuses on population health and preventive medicine, with a strong emphasis on lifestyle-related diseases, metabolic health, and health disparities across diverse populations. The lab investigates the impact of behavioral factors—such as alcohol consumption, tobacco use, and health behaviors in vulnerable groups—on chronic disease risk and long-term health outcomes. It also explores health policy interventions, including taxation and media regulation for unhealthy products, and examines the psychosocial and healthcare needs of marginalized populations, such as immigrants and adolescents affected by parental cancer. The lab integrates epidemiological data with public health policy analysis to inform evidence-based health promotion strategies.
Professor Yo Han Ahn's research lab specializes in pediatric nephrology, with a strong focus on the genetic and molecular mechanisms underlying congenital anomalies of the kidney and urinary tract (CAKUT), inherited kidney diseases such as Alport syndrome and HNF1B-related disorders, and acute kidney injury in neonates and children. The lab investigates genotype-phenotype correlations, identifies disease-causing variants through targeted exome sequencing, and evaluates novel therapeutic strategies for difficult-to-treat nephrotic syndrome and tumor lysis syndrome. Their work bridges clinical nephrology with translational genetics, aiming to improve diagnosis, prognosis, and treatment outcomes in pediatric kidney diseases.
Professor Minsung Kim's research lab specializes in advanced energy systems and sustainable technologies, with a strong focus on supercritical carbon dioxide (sCO2) power cycles for high-efficiency, compact power generation. The lab also explores the integration of emerging technologies such as quantum computing in wireless communication systems and investigates human-centered aspects of learning through affective and cognitive science. Additionally, the lab contributes to environmental and educational research, including critical geography and global citizenship education through case studies like Rwanda in school textbooks. The interdisciplinary approach bridges engineering, computer science, and social sciences to address global challenges in energy, technology, and education.
Professor Andrea Kim's research lab specializes in organizational behavior, human resource management, and workplace sustainability, with a focus on how individual, group, and contextual factors influence employee motivation, citizenship behaviors, and organizational effectiveness. Her work explores the role of personality traits, leadership, organizational culture, and HR practices in shaping green behavior, work–family balance, innovation, and firm performance across diverse cultural and institutional contexts. The lab employs multilevel and longitudinal research designs to examine the interplay between individual characteristics, team dynamics, and systemic HR practices in driving sustainable and high-performance organizations.
Professor Sue-Hyun Lee's research lab specializes in cognitive neuroscience and behavioral psychology, focusing on the neural mechanisms underlying memory formation, retrieval, and reconsolidation. The lab investigates how memories are dynamically updated through protein synthesis and degradation processes in the hippocampus and neocortex, using behavioral, neurochemical, and advanced neuroimaging techniques such as 7T fMRI and MVPA. A key focus is understanding the role of synaptic plasticity and neural representation in working memory and long-term memory, as well as the impact of sleep deprivation on cognitive control and memory consolidation. The lab also explores real-world human behaviors, such as self-gifting, through ethnographic interviews and big data analytics, linking psychological motivations to neural and behavioral outcomes.
Professor Min-Soo Hwang's research lab specializes in nanophotonics and topological photonics, focusing on the design and application of ultracompact optical devices with enhanced light-matter interactions. The lab explores bound states in the continuum, topological edge and corner states, and exceptional points in photonic crystals to enable low-threshold, high-efficiency nanolasers and tunable optical sensors. By integrating 2D materials, photonic crystals, and responsive nanostructures, the lab develops next-generation optoelectronic devices with applications in sensing, quantum optics, and integrated photonics. Their work uniquely bridges fundamental photonic phenomena with practical device engineering.
Professor Ki Hyuk Sung's research lab specializes in pediatric orthopedic surgery and lower limb deformity correction, with a strong focus on cerebral palsy-related musculoskeletal conditions. The lab investigates surgical interventions such as calcaneal lengthening, femoral varization osteotomy, and hemiepiphysiodesis to correct angular and planovalgus foot deformities. It also explores patient-reported outcomes, parenting stress in families of children with CP, and postoperative complications like urinary retention in orthopedic patients. The lab integrates clinical outcomes with biomechanical and decision analysis models to optimize surgical timing and improve long-term functional results.
Professor Hyuntak Roh's research lab specializes in organizational diversity, equity, and inclusion, with a focus on how macro-level (e.g., industry, occupation) and micro-level (e.g., team, individual) contextual factors shape diversity outcomes in the workplace. The lab employs meta-analytic and quantitative methods to examine the complex interplay between diversity, team processes, and performance across multiple levels of analysis. Key research directions include the role of structural diversity in shaping performance evaluations and rewards, the impact of diversity management practices on representation in leadership, and the mediating mechanisms linking top management team diversity to firm outcomes.
Professor Anna Lee's research lab specializes in advanced materials and interfacial phenomena, focusing on innovative membrane technologies, water harvesting from humid air, and the development of functional materials for energy storage and soft electronics. Her team explores the fundamental principles governing liquid transport, surface wettability, and mechanical behavior in responsive materials, with applications in sustainable water collection, high-performance batteries, and stretchable conductive films. The lab integrates experimental studies with theoretical modeling and finite element simulations to design smart, multifunctional materials with precise structural and functional control.