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 Kyung Soo Jung's research lab focuses on translational biomedical research with a strong emphasis on clinical genomics, infectious disease epidemiology, and critical care biomarkers. The lab investigates genomic alterations in cancer using archival formalin-fixed paraffin-embedded (FFPE) tissues, explores risk factors and outcomes in multidrug-resistant bacterial infections like carbapenem-resistant *Acinetobacter baumannii* bacteremia, and evaluates novel biomarkers such as serum cystatin C for early detection and prognosis of acute kidney injury in septic patients. The lab integrates molecular diagnostics with clinical data to improve patient outcomes in intensive care and oncology settings.
Professor Jisun Heo's research lab specializes in oral and maxillofacial regeneration, with a focus on periodontal tissue engineering, biomaterials for bone regeneration, and the management of complications in dental implantology. The lab investigates the clinical and histological outcomes of growth factor-based therapies—such as rhBMP-2/ACS—using preclinical animal models, while also exploring the pathophysiology and treatment of medication-related osteonecrosis of the jaw (MRONJ), including novel therapies like teriparatide. Additionally, the lab examines surgical risks in oral surgery, particularly inferior alveolar nerve injury and root remnant migration after coronectomy, using advanced imaging techniques like CBCT.
Professor Soobong Kim's research lab specializes in neutrino physics, with a primary focus on reactor neutrino oscillations and the search for sterile neutrinos. The lab leads the RENO experiment at the Hanbit nuclear power plant in Korea, where precise measurements of the neutrino mixing angle θ₁₃ and the effective mass-squared difference Δmₑₑ² have been achieved using long-baseline electron antineutrino disappearance. The lab is also actively involved in the JSNS² experiment at J-PARC, investigating short-baseline neutrino anomalies and sterile neutrino candidates using advanced detector technologies. Their work combines high-precision neutrino detection, innovative detector design, and data analysis to probe fundamental questions in particle physics and cosmology.
Professor Tae-hee Won's research lab specializes in clinical and translational studies within oral and maxillofacial surgery, with a strong focus on regenerative medicine, musculoskeletal disorders, and minimally invasive interventions. The lab investigates tissue engineering approaches using growth factors like bFGF to enhance tracheal regeneration and explores novel therapies such as low-level laser therapy for dental hypersensitivity. It also conducts clinical research on masticatory muscle biomechanics and rare thoracic pathologies, including pleural loose bodies and giant cell tumors of the rib, emphasizing diagnostic imaging and endoscopic or open surgical management.
Professor Kyung-hee Kim's research lab specializes in natural product science and health-related biomedical research, focusing on the bioactive properties of medicinal plants such as *Ligularia stenocephala* for applications in functional foods and cosmetics. The lab also investigates health outcomes in aging populations, particularly frailty in older adults, and explores psychosocial factors influencing health risk perception, including gender and age differences in response to environmental health threats like mobile phone radiation. Additionally, the lab contributes to plant biotechnology through tissue culture and genetic transformation studies in turfgrass species such as *Zoysia matrella*. These diverse research directions reflect a strong commitment to translational health science, from natural compounds to human health and plant biotechnology.
Professor Yubong Kim's research lab specializes in historical Korean linguistics, with a strong focus on the phonological and grammatical developments in Middle and Early Modern Korean. The lab investigates sound changes such as consonant tensification, initial-‘g’ deletion, and honorific ending allomorphy, employing both historical data and theoretical frameworks like analogy and phonological theory. A central theme is the interplay between phonological conditioning and morphological motivation in language change, particularly how syntactic and morphological environments influence sound patterns over time.
Professor Ji-soo Shim's research lab focuses on respiratory immunology and allergic airway diseases, with a particular emphasis on the impact of environmental exposures—such as chlorine, tobacco products (including e-cigarettes and heated tobacco products), and inhaled irritants—on the development and exacerbation of asthma and allergic rhinitis. The lab investigates underlying immune mechanisms, especially involving innate lymphoid cells (ILCs), macrophages, and type 2 inflammation, using preclinical murine models and clinical cohort studies. It also explores the real-world effectiveness and safety of biologic therapies in severe asthma and asthma-COPD overlap (ACO), contributing to precision medicine in respiratory diseases. The lab integrates translational research to bridge basic immunology with clinical applications in chronic airway disorders.
Professor Jeongyeon Lee's research lab focuses on applied linguistics and language education, particularly in the areas of Korean for Academic Purposes (KAP), debate instruction, and digital literacy for vulnerable populations. The lab investigates learner-centered pedagogies such as flipped learning to enhance speaking and critical thinking skills among foreign language learners, while also exploring the sociocultural and cognitive dimensions of information access among elderly and disabled individuals. A central theme is the reduction of digital and information inequality through library services and targeted educational interventions.
Professor Sangkyu No's research lab specializes in information systems, distributed database design, and performance evaluation of complex organizational processes. The lab focuses on optimizing data allocation and processing in distributed environments, developing advanced modeling techniques such as genetic algorithms and data envelopment analysis (DEA) for efficiency evaluation. A key research direction involves addressing semantic and structural challenges in database systems, particularly in reducing user cognitive load through improved data representation and query design. The lab also explores semantic web technologies, emphasizing schema-driven resource ranking independent of link directionality.
Professor Dahong Jeong's research lab specializes in the development of advanced nanomaterials for bioanalytical and sensing applications, with a strong focus on surface-enhanced Raman scattering (SERS) platforms. The lab pioneers the design of stable, highly sensitive SERS substrates using hybrid nanostructures such as bacterial cellulose-gold nanoparticle composites, silver-embedded silica-coated graphene oxide, and multifunctional SERS dots. These materials are engineered for applications in environmental monitoring, glucose detection, and single-particle detection, emphasizing reproducibility, long-term stability, and real-world usability. Additionally, the lab explores the integration of data literacy and inquiry-based learning in science education, particularly in data-driven scientific investigations for STEM students.
Professor Jae Hwan Lee's research lab specializes in lipid chemistry, oleogel development, and antioxidant activity in food systems. The lab investigates the physical and oxidative stability of structured lipids, including organogels and solid fat blends, with a focus on natural waxes and polymers like ethylcellulose. Research also extends to the identification and characterization of volatile flavor compounds in oils and beverages, as well as the antioxidant and anti-obesity properties of natural plant extracts such as *Artemisia princeps* (ssuk). The lab employs advanced analytical techniques such as HS-SPME-GC-MS, DPPH/ABTS assays, and electronic nose/electronic tongue systems to evaluate food quality, stability, and sensory attributes.
Professor Seok Ho Sohn's research lab specializes in structural and interventional cardiac surgery, with a strong focus on prosthetic heart valve performance, long-term outcomes following valve replacement, and optimal anticoagulation strategies in patients with bioprosthetic valves. The lab conducts large-scale, population-based studies using national health insurance databases to evaluate clinical and angiographic outcomes in patients undergoing aortic and tricuspid valve replacement, as well as redo coronary artery bypass grafting. Key research directions include comparing bioprosthetic valve types (e.g., porcine vs. bovine), assessing the safety and efficacy of non-vitamin K oral anticoagulants in patients with bioprosthetic heart valves, and optimizing saphenous vein graft harvesting techniques to improve graft patency. The lab emphasizes evidence-based surgical decision-making through rigorous retrospective and propensity-matched analyses of real-world data.
Professor Geon Hong Lee's research lab specializes in the design, synthesis, and characterization of advanced nanomaterials with a focus on anodic aluminum oxide templates, carbon nanotubes, and nanostructured phosphates. The lab explores innovative fabrication techniques such as two-step anodization, sonochemical synthesis, and microwave-assisted processing to develop materials with tailored morphologies and functionalities. Key research directions include the creation of hierarchical superhydrophobic surfaces, controlled pore engineering for nanofabrication, and the application of nanomaterials in energy and environmental technologies.
Professor Mi Seon Lee's research lab specializes in second language acquisition (SLA), with a particular focus on syntactic processing and sentence comprehension in bilingual and second language learners. The lab investigates how learners of different languages—especially those with typologically distinct word order, such as Korean and English—process complex syntactic structures like relative clauses and gap-filler dependencies. Using eye-tracking methodologies in both L1 and L2 contexts, the lab explores the interplay between structural complexity, linear distance, and processing strategies, contributing to our understanding of universal and language-specific processing mechanisms in human language comprehension.
Professor Jinyeop Lee's research lab specializes in developing advanced microfluidic and nanomaterial-based platforms for pathogen detection, environmental monitoring, and medical diagnostics. The lab focuses on innovative solutions for viral and bacterial detection with high sensitivity, including microfluidic preconcentration systems, magnetic nanoparticle-based isolation, and ozone-based sterilization of personal protective equipment. Their work bridges materials science, biomedical engineering, and clinical diagnostics to address real-world challenges in infectious disease control and point-of-care testing.
Professor Sang-Eun Choi's research lab specializes in health economics, pharmacoeconomics, and health-related quality of life (HRQoL) assessment, with a focus on chronic respiratory and cardiovascular diseases such as asthma, COPD, and chronic heart failure. The lab conducts cost-effectiveness analyses of medical interventions, including intravenous iron therapy and vaccination strategies, and develops and validates mapping algorithms between patient-reported outcome measures and standardized HRQoL instruments like EQ-5D. The research also extends into pharmaceutical solid-state characterization, particularly polymorphism and thermodynamic stability of drug substances such as donepezil.
Professor Kyu Young Hwang's research lab specializes in the design and synthesis of advanced organic and transition metal complexes for optoelectronic applications, with a primary focus on organic light-emitting diodes (OLEDs). The lab investigates molecular engineering strategies to control photophysical properties, such as emission color tuning, non-radiative decay suppression, and light-emitting dipole orientation, to enhance device efficiency. Key research directions include the development of novel hole-blocking materials, phosphorescent emitters, and functional materials for optical shutters and display technologies.
Professor Nam-Soo Kim's research lab focuses on clinical and translational studies in cardiovascular and metabolic health, with a strong emphasis on non-invasive imaging techniques, pediatric hypertension, and obesity-related cardiovascular risk factors. The lab investigates the impact of lifestyle interventions, such as short-term exercise programs, on metabolic and hemodynamic parameters, while also advancing diagnostic tools like echocardiographic assessment of epicardial fat and indocyanine green (ICG) angiography for surgical and clinical applications. A significant portion of the research leverages large-scale population data, such as KNHANES, to establish sex-, age-, and height-specific reference values for blood pressure in Korean youth. The lab also explores rare genetic disorders, such as CACP syndrome, contributing to the understanding of inherited musculoskeletal and cardiovascular phenotypes.
Professor Sangwon Kim's research lab focuses on public safety, criminal justice reform, and environmental disaster management, with a strong emphasis on preventive policies and systemic improvements. The lab investigates critical social issues such as sexual violence prevention, school violence, police integrity, and the long-term impacts of industrial accidents—particularly oil spills—through interdisciplinary analysis of policy, legislation, and real-world implementation. Research directions include developing institutional frameworks for offender management, enhancing law enforcement accountability, and improving national response strategies to large-scale environmental disasters.
Professor Jeong-tae Kwon's research lab specializes in the neural mechanisms underlying fear memory formation, with a focus on identifying the specific neural circuits and synaptic plasticity underlying associative learning in the amygdala and its connected sensory pathways. Using advanced techniques such as optogenetics, viral vector-mediated gene delivery, in vivo imaging of neuronal activity, and behavioral assays, the lab investigates how specific neurons are selected to encode memory traces and how synaptic changes in the thalamo-amygdala pathway contribute to the storage and retrieval of fear memories. The lab's work bridges systems neuroscience with cellular and molecular mechanisms to uncover the fundamental principles of memory encoding in the brain.