世界の主要大学の研究室を探索 — 研究分野と主要論文を一目で確認できます。
Professor Jeehyeok Chung's research lab specializes in craniofacial plastic surgery and reconstructive surgery, with a primary focus on individualized treatment strategies for patients with complex craniofacial anomalies such as unilateral cleft lip and palate (UCLP), hemifacial microsomia (HFM), and posterior rhizotomy syndrome (PRS). The lab investigates innovative surgical techniques—such as limited intermediate rhinoplasty, rotation-advancement repair (RAR), and straight-line repair with medial orbicularis muscle lengthening (SLR-ml)—to improve aesthetic and functional outcomes while minimizing complications. Long-term outcomes and prognostic indicators are systematically evaluated using clinical and photographic assessments, emphasizing patient-centered care and multidisciplinary collaboration.
Professor Kyu-Wan Kim's research focuses on civil law, particularly constitutional and private law reforms in South Korea, with an emphasis on contract law, property law, and the legal regulation of real estate and collective housing. His work critically examines key provisions of the Korean Civil Code (KBGB), including liability for breach of contract, defects in performance, and secured transactions such as joint mortgages. He also explores institutional frameworks for standardized management regulations in multi-unit residential buildings, aiming to enhance legal clarity, efficiency, and uniformity in property governance.
Professor Young Sun Kwon's research lab specializes in intelligent robotics, sensor-based environment perception, and advanced signal processing for dynamic and complex environments. The lab focuses on developing innovative solutions for mobile robot navigation using multi-sensor fusion, including CCTV data and vision-inertial systems, to enable safe and socially aware navigation in crowded indoor settings. Additionally, the lab explores signal modeling and hardware design, such as high-frequency oscillators and resistance-switching devices, for next-generation communication and memory technologies. Their work bridges the gap between perception, control, and embedded systems in real-world robotic applications.
Professor Kyeongsik Nam's research lab specializes in low-power, low-noise analog and mixed-signal integrated circuit design for biomedical and microsensor applications. The lab focuses on advanced instrumentation amplifier architectures, including chopper-stabilized and current-feedback topologies, for high-precision signal conditioning in implantable and wearable medical devices. Key research directions include energy-efficient readout circuits for resistive-bridge and electrochemical sensors, as well as innovative noise reduction and offset cancellation techniques for miniaturized sensor systems.
Professor Jin-Hoon Kim's research lab specializes in adaptive signal processing, intelligent control systems, and bio-inspired machine learning, with a strong focus on developing robust and efficient algorithms for real-world applications. The lab explores advanced adaptive filtering techniques—such as variable step-size sign subband algorithms and multi-channel active noise control—for enhanced performance in noisy or uncertain environments. It also investigates biologically inspired neural network architectures that emulate complex neuronal dynamics using multi-input activation functions, aiming to improve learning efficiency and generalization. Additionally, the lab contributes to materials science through the development and characterization of functional coatings, particularly Cu-based bulk metallic glasses, for improved corrosion resistance and performance under thermal stress.
Professor Do-Keun Kim's research lab specializes in high-energy particle physics, with a primary focus on experimental particle physics at the Large Hadron Collider (LHC). The lab is actively involved in the CMS experiment at CERN, conducting cutting-edge research on Higgs boson properties, top quark physics, and quantum chromodynamics (QCD) through precision measurements of proton-proton collisions. The lab also contributes to the development of advanced detector systems, trigger algorithms, and event simulation tools, including new tunes for the Pythia8 event generator and studies of underlying event structures. Additionally, the lab is engaged in next-generation neutrino physics, particularly through contributions to the DUNE-PRISM program and near detector R&D for long-baseline neutrino experiments.
Professor Aram Shin's research lab specializes in rehabilitation science and musculoskeletal health, focusing on improving motor function and neuromuscular control in clinical populations. Key research directions include the application of biofeedback and motion analysis in stroke rehabilitation, the biomechanics of hip and scapular muscle activation, and the optimization of therapeutic exercise techniques. The lab also investigates health outcomes in infectious disease contexts, such as the role of immune response in COVID-19 progression among vaccinated individuals. Additionally, it explores behavioral and psychological factors influencing engagement in digital health and online education platforms.
Professor Sung-ki Ahn's research lab focuses on medical education innovation, leadership development, and professionalism in medical training. The lab investigates longitudinal data systems to support evidence-based curriculum development and policy-making in medical education. It also explores students' perceptions of leadership and professionalism through qualitative and longitudinal research, particularly within the context of Yonsei University College of Medicine. The lab's work emphasizes integrating humanities, ethics, and practical leadership into medical curricula to address evolving healthcare challenges.
Professor In-hyung Jeon's research lab specializes in sustainable water treatment technologies, focusing on innovative membrane processes and solar-driven disinfection systems for decentralized and resource-limited applications. The lab develops smart materials such as thermoresponsive polymers for energy-efficient membrane cleaning and designs integrated solar water treatment systems that combine water collection, phyto-based photosensitization, and solar disinfection (SODIS/SOPAS). Their work emphasizes practical, low-cost solutions for global water safety, particularly in off-grid and low-income communities. The lab bridges materials science, environmental engineering, and renewable energy to address critical challenges in water purification and pathogen inactivation.
Professor Eun-Ju Ji's research lab focuses on comparative political economy and democratic governance in East Asia, with a particular emphasis on income inequality, electoral politics, and cross-strait relations. The lab investigates how democratic institutions, party competition, and economic globalization shape social policy and political trust in Taiwan and South Korea. It also explores the interplay between state capacity, civil society, and external pressures—especially in the context of economic integration and national identity politics.
Professor Minju Lee's research focuses on the dynamics of discrete subgroups in semisimple Lie groups, particularly Zariski dense Anosov subgroups, and their ergodic and geometric properties. Her work centers on the interplay between homogeneous dynamics, invariant measures, and the geometry of locally symmetric spaces, with a strong emphasis on higher-rank generalizations of classical results such as the Hopf–Tsuji–Sullivan dichotomy and Ratner-type theorems. She investigates matrix coefficient decay, Burger–Roblin measures, and orbit counting in symmetric spaces, often in the context of convex cocompact manifolds and generalized Cartan decompositions.
Professor Seungwook Kim's research lab specializes in the mechanical and environmental degradation behavior of advanced structural materials used in nuclear power plants, with a focus on stress corrosion cracking, residual stress characterization, and microstructural evolution under irradiation and primary water conditions. The lab employs advanced experimental techniques such as instrumented indentation, finite element analysis, and high-precision 3D surface metrology to evaluate material performance and integrity. Key research directions include crack growth mechanisms in Alloy 690, the influence of plastic deformation and microstructural inhomogeneity on corrosion resistance, and the development of non-destructive evaluation methods for in-service components.
Professor Haeyoung Sung's research lab specializes in the interdisciplinary study of religious experience, mysticism, and comparative religion, with a particular focus on the phenomenology of religious transformation and the role of personal spiritual experiences in shaping religious traditions. The lab explores how mystical experiences—especially those marked by 'givenness,' 'mutuality,' and 'integration'—serve as foundational moments in the emergence of new religious movements, such as Cheondaejong (Donghak). It also investigates the intersection of religion with modernity, including the impact of global crises like the COVID-19 pandemic on religious identity and social responsibility, as well as the philosophical and psychological dimensions of religious practice. The lab further examines the conceptual and cultural dynamics of religious phenomena, such as supernatural experiences (e.g., 'Old Hag') and the comparative analysis of psychoanalysis and tantric traditions, emphasizing experiential authenticity over cultural reductionism.
Professor Hwajong Yoo's research lab specializes in arithmetic geometry and number theory, with a focus on the interplay between modular forms, Galois representations, and arithmetic duality. The lab investigates Eisenstein ideals, Hecke rings, and the structure of modular Jacobians at square-free and non-squarefree levels, particularly in relation to torsion subgroups and rational cuspidal groups. A central theme is the development of arithmetic analogues of topological invariants—such as linking numbers and path integrals—using tools like power residue symbols and duality theorems.
Professor Seoyeon Jeong's research lab specializes in clinical and translational oral health research, with a focus on improving patient outcomes in maxillofacial surgery, implantology, and orofacial pain management. The lab investigates complications such as nerve injury, medication-related osteonecrosis of the jaw (MRONJ), and root migration after dental procedures, using advanced imaging and clinical data analysis. A key innovative direction involves the application of virtual reality and mindfulness-based interventions to treat anxiety-related disorders, particularly panic disorder, through immersive, multimodal therapeutic experiences. The lab also emphasizes preventive strategies in dental practice, especially for high-risk patients undergoing invasive procedures.
Professor Young-Sik Kim's research lab specializes in biomedical diagnostics and advanced antenna design, with a focus on rare medical conditions such as granular cell tumors and cystic lymphangiomas, as well as the development of reconfigurable and multiband antennas for wireless communication systems. The lab integrates clinical pathology with biomedical engineering, emphasizing diagnostic imaging, immunohistochemical analysis, and the application of electromagnetic technologies in healthcare and telecommunications. Research directions include the identification and characterization of rare soft tissue tumors, multimodal imaging of breast malignancies, and the design of compact, efficient antennas for mobile and broadband applications.
Professor Hyeon-Joon Jo's research lab specializes in biomedical and clinical applications of advanced materials and interventional techniques, with a focus on improving diagnostic accuracy and therapeutic outcomes in neurovascular and maxillofacial disorders. The lab investigates functional coatings for nanomaterials—particularly zinc oxide nanoparticles—for cosmetic and dermatological applications, while also exploring minimally invasive surgical and endovascular interventions for cerebrovascular diseases such as ischemic stroke and intracranial aneurysms. A key emphasis is placed on quantitative perfusion imaging using CTP and RAPID software to evaluate hemodynamic changes and clinical outcomes following extracranial-to-intracranial bypass surgery. The lab also examines neurosensory preservation in oral and maxillofacial surgery, particularly in relation to conservative tumor treatments.
Professor Jo Sung-joon's research lab specializes in translational biomedical research with a focus on metabolic disorders, cancer imaging, and regenerative medicine. The lab investigates bioactive compounds like capsanthin and pine needle extracts for their anti-obesity and immunomodulatory effects, while also exploring advanced molecular imaging techniques such as 18F-FDG PET/CT to predict sarcoma aggressiveness and guide surgical planning. Additionally, the lab applies machine learning to clinical data to improve early detection of subclinical rejection in kidney transplant recipients, demonstrating a strong integration of clinical medicine, molecular biology, and data science. The research spans from in vitro and in vivo models to clinical applications, emphasizing precision medicine and therapeutic innovation.
Professor Jeong Min Oh's research lab focuses on the intersection of healthcare, mobility, and emerging digital technologies, with a strong emphasis on clinical applications of Korean medicine and physiological monitoring. The lab investigates health-related quality of life, sarcopenia, and dizziness through integrative medicine approaches, while also exploring the role of autonomic nervous system responses in physiological stress. Additionally, the lab examines human-centered mobility systems, particularly speech emotion recognition in noisy driving environments and the potential of Metaverse technologies in automotive design and user experience. These diverse research directions reflect a commitment to improving patient outcomes through innovative, technology-driven healthcare solutions.
Professor Min-Ah Roh's research lab specializes in microbial pathogenesis and host-microbe interactions, with a focus on extracellular vesicles (EVs) derived from bacteria such as *Helicobacter pylori* and skin-associated microbes in atopic dermatitis. The lab investigates the role of bacterial EVs in disease progression, including gastric malignancy and allergic inflammation, using advanced sequencing technologies and host-pathogen interaction models. A key research direction involves understanding how microbial communities and their secreted vesicles contribute to chronic inflammatory diseases and systemic immune responses.