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 In-soo Oh's research lab specializes in youth psychological development with a focus on school bullying, bystander behavior, and the psychological mechanisms underlying aggressive and prosocial behaviors. The lab investigates key factors such as empathy, aggression, self-regulation, stress, and social dynamics in both traditional and cyberbullying contexts among elementary, middle, and high school students. Using large-scale survey data and multi-level analyses, the lab aims to inform effective school-based interventions, counseling strategies, and preventive programs. Research also explores the role of individual differences—such as gender, past victimization, and social support—in shaping responses to bullying.
Professor Wonsik Lee's research lab focuses on antimicrobial discovery, bacterial pathogenesis, and synthetic biology, with a strong emphasis on understanding microbial metabolism, antibiotic resistance mechanisms, and the development of novel therapeutics. The lab investigates key pathways in pathogenic bacteria such as *Mycobacterium tuberculosis* and *Staphylococcus aureus*, exploring metabolic stress responses and essential genetic networks to identify new drug targets. It also pioneers innovative genome engineering strategies and explores the use of extracellular vesicles and synthetic biology for sustainable production of bioactive natural products like ginsenosides. The lab integrates systems biology, enzymology, and structural microbiology to develop next-generation antibiotics and host-directed therapies.
Professor Takuji Oda's research lab specializes in computational and experimental materials science, focusing on defect engineering in semiconductors, plasma-catalytic environmental remediation, and the fundamental behavior of metals in liquid metal systems. The lab employs advanced first-principles calculations—such as density functional theory with tailored functionals—to investigate electronic structures and defect formation in materials like silicon carbide and lithium oxide, while also exploring practical applications in pollution control and nuclear materials. A key theme is understanding interfacial phenomena, from plasma-catalyst interactions for air purification to the dissolution mechanisms of steels in lead-bismuth eutectic, with implications for advanced energy systems. The lab also conducts in vivo biological studies using intravital microscopy to investigate cellular migration processes, particularly neutrophil trafficking in microcirculation, linking materials science with biomedical phenomena.
Professor Subin Lee's research lab focuses on interdisciplinary biomedical and materials science research, spanning regenerative medicine, spinal surgery innovation, and functional food development. The lab investigates the biological and clinical implications of adolescent idiopathic scoliosis, including psychiatric comorbidities and advanced spinal implant technologies such as expandable interbody cages. It also explores bioactive compounds in natural products—like cinnamon powder in baked goods—for health-promoting effects, while conducting fundamental studies on fungal glycobiology and graphene-based thermal energy conversion. The lab integrates clinical data, molecular biology, and materials engineering to develop novel therapeutic and functional solutions.
Professor Kang Won-Seob's research lab focuses on the intersection of neurobiology, psychiatry, and molecular genetics, with a particular emphasis on the gut-brain axis, neurodevelopmental disorders such as autism spectrum disorder (ASD), and the pathophysiology of neuropsychiatric conditions. The lab investigates how early-life stress and microbial dysbiosis influence neuroinflammation and tryptophan metabolism, while also exploring genetic factors—such as polymorphisms in *MFN2*, *IRS1*, and *IRS2*—that may contribute to the risk of Alzheimer’s disease and ASD. Additionally, the lab examines psychological and behavioral factors in chronic inflammatory conditions like inflammatory bowel disease, linking mental health, cognitive distortions, and disease progression.
Professor Hyea-Kyung Byun's research lab specializes in advancing radiation oncology through innovative radiotherapy techniques and personalized treatment strategies. The lab focuses on optimizing treatment outcomes in breast cancer, glioblastoma, and hepatocellular carcinoma by investigating risk factors for complications such as lymphedema and lymphopenia, and by exploring the clinical benefits of advanced radiotherapy modalities like particle therapy and carbon ion radiotherapy. A key emphasis is placed on integrating artificial intelligence—particularly deep learning—for automated contouring of organs at risk, enhancing precision and efficiency in treatment planning. The lab also investigates organ-sparing approaches, such as the watch-and-wait strategy in rectal cancer, to improve quality of life without compromising oncologic control.
Professor Ji-Hyeon Choi's research lab focuses on the molecular mechanisms of cellular stress responses, particularly endoplasmic reticulum (ER) stress, and its implications in inflammatory diseases, neurodegeneration, and metabolic disorders. The lab investigates the therapeutic potential of natural compounds and microbial-derived vesicles—such as *Lactobacillus paracasei*-derived extracellular vesicles and baicalein—in modulating ER stress and inflammation. Using in vitro cell models and in vivo animal models (e.g., colitis and obesity models), the lab explores cytoprotective and anti-inflammatory effects, with a strong emphasis on oxidative stress, mitochondrial function, and immune modulation. Additionally, the lab extends into translational and behavioral research, examining how voice characteristics in smart society contexts influence human perception and emotional response.
Professor Hwasung Yeom's research lab specializes in advanced materials for energy applications, with a focus on surface engineering, plasma-material interactions, and hydrogen-related materials degradation. The lab investigates nanostructured coatings—such as titanium and titania on zirconium wires—for enhancing heat transfer in boiling systems, as well as tantalum cold spray coatings for fusion energy applications due to their hydrogen gettering capabilities. A key research direction involves understanding and mitigating material degradation in high-temperature ammonia environments, critical for next-generation hydrogen energy systems. The lab combines experimental techniques like high-speed imaging, thermal desorption spectrometry, and plasma exposure to develop durable, functional materials for sustainable energy technologies.
Professor Andrea Bianchi's research lab focuses on human-computer interaction, with a strong emphasis on secure, non-visual authentication methods for interactive systems. The lab explores tangible and wearable interfaces that leverage haptic, audio, and tactile feedback to enable eyes-free and observation-resistant interaction, particularly in public or sensitive environments. Key research directions include the design of secure input mechanisms—such as haptic PINs and tactile passwords—using unimodal and multi-modal cues, as well as the integration of these techniques into mobile and wearable devices. The lab also investigates the technical and social challenges of authenticating users in contexts where privacy, usability, and physical form factors are critical constraints.
Professor Il-Chul Moon's research lab specializes in modeling and simulation of complex socio-technical systems, with a focus on multiagent systems, social network analysis, and environmental forecasting. The lab develops theoretical and computational models to understand the coevolution of social and spatial dynamics in security contexts—such as terrorist networks—and applies these models to real-world challenges like fine dust pollution in urban environments. By integrating data from diverse sources—including meteorological, topographical, and human activity data—the lab advances predictive analytics for crisis management and organizational intelligence. The lab also explores the intersection of social dynamics and organizational workflows, using game-based simulations to study human behavior and team evolution.
Professor Hyun's research lab specializes in interdisciplinary studies spanning educational psychology, non-profit organization efficiency, and engineering applications in fluid dynamics. The lab investigates the impact of arts-integrated education on child development, particularly focusing on creativity and social skills in young children. It also conducts empirical research on program and fundraising efficiency in Korean non-profit organizations using data envelopment analysis (DEA), and explores technical aspects of hydrodynamic cavitation reactors for industrial applications. These diverse research directions reflect a strong commitment to both social impact and technological innovation.
Professor Seung Hyun Han's research lab focuses on the immunomodulatory roles of bacterial cell wall components, particularly lipoteichoic acids (LTA) and lipoproteins, in host-microbe interactions. The lab investigates how these microbial patterns influence innate immune responses, inflammation, and tissue homeostasis in contexts ranging from sepsis and bone destruction to gut and oral health. A central theme is understanding the structural and functional diversity of LTA from different bacteria and its impact on immune cell activation or suppression. The lab also explores the therapeutic potential of probiotic-derived molecules in preventing or treating infectious and inflammatory diseases.
Professor Dong-bin Shin's research lab specializes in satellite-based precipitation measurement and atmospheric remote sensing, with a focus on improving rainfall estimation through advanced satellite instruments and retrieval algorithms. The lab develops innovative methods using geostationary and low Earth-orbiting satellites—such as Himawari-8, FY-2E, and TRMM—to enhance cloud and precipitation characterization, including cloud top height, reflectivity profiles, and three-dimensional atmospheric structure. Key research directions include multi-sensor data fusion, radiative transfer modeling, and addressing sampling biases in satellite precipitation observations.
Professor Jae Yoon Song's research lab focuses on advancing gynecological oncology through innovative diagnostic and surgical approaches. The lab investigates the application of artificial intelligence in improving colposcopic diagnosis of cervical lesions, explores the molecular and immunohistochemical characteristics of aggressive endometrial cancers such as clear cell carcinoma, and examines surgical proficiency and learning curves in minimally invasive gynecologic oncology. The lab also conducts proteomic studies to identify biomarkers like osteopontin associated with cervical carcinogenesis and progression.
Professor Donghyun Lee's research lab focuses on advanced materials and sustainable technologies, with key research directions in organic electronics, particularly single-layer OLEDs fabricated via scalable methods like screen printing; bioinspired and biodegradable materials for biomedical applications such as nerve guidance conduits; and the integration of design theory with functional performance in graphic design and human factors. The lab also explores performance optimization in sports science through personality, temperament, and self-efficacy analysis in elite athletes, as well as energy-efficient building simulation using Bayesian calibration techniques.
Professor Eun Byung Park's research lab specializes in computer vision, 3D scene understanding, and deep learning for robotics and autonomous systems. The lab focuses on advancing novel 3D view synthesis, neural rendering techniques like NeRF and 3D Gaussian Splatting, and the development of large-scale, real-world datasets to support robust visual perception. Key research directions include geometric reasoning, object detection under real-world challenges (e.g., occlusion and scale variation), and efficient deep learning architectures tailored for real-time, safety-critical applications such as autonomous vehicles. The lab emphasizes the integration of perception with robotics, particularly through active vision and efficient inference under strict SWaP (size, weight, and power) constraints.
Professor Jungwon Yoo's research lab specializes in anterior segment imaging and microvascular assessment in glaucoma, with a focus on optical coherence tomography angiography (OCT-A) to evaluate peripapillary vessel density in various glaucoma subtypes such as pseudoexfoliation glaucoma, normal-tension glaucoma, and primary open-angle glaucoma. The lab investigates the structural and hemodynamic changes in the anterior segment, including anterior scleral thickness and ciliary body anatomy, particularly in relation to intraocular pressure regulation and glaucoma progression. A key research direction involves understanding the effects of glaucoma medications—especially prostaglandin analogues—on anterior segment tissue remodeling over time. The lab also explores the impact of scan alignment variability on retinal nerve fiber layer measurements, emphasizing the importance of standardized imaging protocols in clinical diagnosis.
Professor Uichin Lee's research lab specializes in mobile underwater networking and intelligent sensor systems, focusing on underwater mobile sensor networks, geographic and anycast routing protocols, and real-time data collection in dynamic ocean environments. The lab develops energy- and bandwidth-efficient communication protocols such as DOTS and HydroCast to address challenges like long propagation delays, node mobility, and 3D voids in sparse underwater networks. Their work also extends to innovative applications such as SEA Swarms—drifting sensor clouds for 4D environmental monitoring—combined with autonomous underwater vehicles and surface sonobuoys for real-time event reporting. The lab integrates signal processing and machine learning techniques to enhance routing reliability and prediction accuracy in underwater and biological systems.
Professor Seongyun Lim's research lab focuses on critical care medicine and metabolic disorders, with a strong emphasis on organ system interactions—particularly cardiorenal and respiratory-renal syndromes—among critically ill patients. The lab investigates clinical risk factors, such as serum bicarbonate levels, malnutrition, and body composition, in relation to acute kidney injury, pulmonary nontuberculous mycobacterial disease, and complications like new-onset atrial fibrillation. Using large-scale retrospective and prospective cohort studies, the lab explores the pathophysiology of volume overload, venous congestion, and metabolic derangements in intensive care settings. Their work aims to identify early biomarkers and optimize nutritional and sedation strategies to improve patient outcomes in critical illness.
Professor Ji-Hwan Kim's research lab specializes in digital dentistry, biomaterials, and oral implantology, with a strong focus on improving clinical outcomes through advanced imaging, 3D printing technologies, and genetic biomarker discovery. The lab investigates the accuracy and reliability of intraoral scanning and additive manufacturing in prosthesis fabrication, while also exploring the biological and genetic factors underlying systemic complications such as bisphosphonate-related osteonecrosis of the jaw. Their work bridges clinical dentistry with materials science and genomics, aiming to enhance treatment precision and patient safety.