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 Sang Woo Park's research lab specializes in plastic and reconstructive surgery, with a strong focus on microsurgical techniques and tissue engineering. The lab investigates innovative methods to enhance flap survival and tissue regeneration, particularly in challenging clinical scenarios such as diabetic foot ulcers and complex craniofacial reconstruction. Key research directions include angiogenesis modulation using pharmacological agents like deferoxamine, the development of advanced graft materials for aesthetic and functional reconstruction, and the application of biological and metabolic engineering to improve outcomes in soft tissue repair. The lab also explores molecular mechanisms underlying scar formation and the role of growth factors in wound healing and tissue regeneration.
Professor Hyeongu Lee's research lab specializes in microbial biotechnology and oncology, focusing on the isolation and characterization of plant-growth-promoting bacteria from agricultural soils, particularly *Burkholderia* and *Pseudomonas* species, for sustainable crop protection and enhancement. The lab also investigates the clinical impact of the COVID-19 pandemic on colorectal cancer care and evaluates prognostic biomarkers such as the ALBI score in stage III colon cancer patients. Additionally, the lab contributes to mycological discovery by identifying and describing novel fungal species from Korean field soils. These interdisciplinary efforts bridge environmental microbiology, agricultural biotechnology, and clinical oncology.
Professor Sineon Hwang's research lab specializes in dermatological therapeutics and molecular mechanisms underlying skin pigmentation disorders, with a focus on autophagy in melanocyte biology, targeted therapy for head and neck squamous cell carcinoma, and innovative laser treatments for pigmentary and photoaging skin conditions. The lab integrates clinical dermatology with molecular oncology and advanced energy-based devices, such as fractional lasers and radiofrequency systems, to develop precision treatments for challenging skin diseases. Research spans from genomic profiling in cancer to non-invasive interventions for conditions like Riehl’s melanosis and phytophotodermatitis.
Professor Jaeyun Ho's research lab specializes in innovation systems, with a focus on the intersection of technology, standardization, and social innovation. The lab investigates the role of standards and roadmapping in shaping technological development, particularly in complex systems such as augmented reality applications, smart systems, and photovoltaics. It also explores socio-technical dynamics in innovation, including customer satisfaction in emerging AR technologies and the systemic frameworks that support sustainable innovation. The lab emphasizes empirical and systems-based approaches to address real-world challenges in technology policy and industrial innovation.
Professor Ih-Young Seo's research lab specializes in mathematical analysis of partial differential equations, with a primary focus on unique continuation properties, spectral theory, and nonlinear dispersive equations. The lab investigates the qualitative behavior of solutions to Schrödinger-type equations, particularly in the context of fractional Laplacians and singular or rough potentials. Key themes include Carleman estimates, weighted resolvent bounds, and analyticity propagation in nonlinear settings such as the defocusing nonlinear Schrödinger equation. The group develops abstract and functional-analytic methods to unify and extend results across diverse potential classes, including Morrey and weak Lebesgue spaces.
Professor Sang-Jin Lee's research lab spans interdisciplinary domains, focusing on the neurocognitive mechanisms underlying psychiatric disorders—particularly obsessive-compulsive disorder—through neuroimaging and cognitive neuroscience. The lab also investigates zoonotic disease transmission, especially Salmonella in zoo and pet animal populations, emphasizing public health implications. Additionally, it explores the bioactive properties of plant-derived compounds, such as onion extracts, in relation to lipid oxidation and antioxidant activity during simulated digestion. A unique, emerging line of inquiry examines cultural phenomena such as vintage vinyl record collecting as a socio-cultural and psychological practice in urban, postmodern contexts.
Professor Sung Ik Baeck's research lab focuses on the intersection of information systems, digital behavior, and technology policy, with a strong emphasis on user behavior in online environments, privacy concerns in big data ecosystems, and the socio-technical challenges of emerging technologies such as cloud computing and online content services. The lab investigates how individuals interact within digital communities, how psychological and structural factors influence information sharing and privacy decisions, and how government policies shape the adoption and diffusion of innovative IT services. Research also explores the economic and market implications of service failures and the barriers to commercializing online content in free-previous ecosystems.
Professor Ju-Il Park's research lab specializes in interventional radiology and image-guided therapy, with a strong focus on advancing minimally invasive treatments for liver diseases and uterine fibroids. The lab develops innovative medical imaging and computational techniques—such as physics-informed deep learning models (e.g., PhysRFANet)—to enhance real-time thermal ablation monitoring and treatment personalization. Research also extends to optimizing embolization strategies for hepatocellular carcinoma and improving stent management in post-surgical pancreatic fistula. The lab integrates clinical radiology with artificial intelligence and smart control systems to improve therapeutic outcomes and energy efficiency in medical interventions.
Professor Jae-hoon Jung's research lab focuses on interdisciplinary health and engineering sciences, with a strong emphasis on clinical medicine, biomedical engineering, and environmental health. The lab investigates clinical outcomes in hepatology, particularly drug-induced liver injury, and evaluates medical research quality through rigorous methodology. It also explores the impact of physical environments on human well-being, such as museum fatigue and visitor satisfaction, and contributes to surgical innovation, including minimally invasive techniques in urological complications. Additionally, the lab examines alternative fuels and combustion technologies for sustainable energy solutions.
Professor Dahyeon Son's research lab specializes in tourism experience, emotional labor in service industries, and the cultural impact of media on regional development. The lab explores post-modern tourist experiences, particularly through the lens of TV dramas and films, while also investigating emotional dynamics in hospitality and the strategic use of emotion ('en') in business and branding. A key focus is on how affective responses and emotional labor shape consumer behavior, destination image, and sustainable tourism development.
Professor Bora Nam's research lab focuses on the molecular and cellular mechanisms underlying spinal structural damage in axial spondyloarthritis, particularly ankylosing spondylitis (AS). The lab investigates key signaling pathways—such as PDGFB, TGFβ1, and TNF-induced DKK1—involved in enthesophyte formation and abnormal bone formation. Using in vitro and in vivo models, along with clinical cohort studies, the lab explores the roles of growth factors and inflammatory mediators in radiographic progression and disease activity. The ultimate goal is to identify novel therapeutic targets to halt or prevent spinal ankylosis in AS.
Professor Jung-gyo Lee's research lab specializes in tax law and public finance, with a focus on the intersection of corporate restructuring, financial innovation, and tax policy. The lab investigates the tax implications of modern financial instruments such as trusts and securitization, as well as the design and equity impacts of environmental taxes like carbon taxes. It also examines the legal and economic foundations of income taxation, particularly in relation to income recognition, tax avoidance, and the harmonization of tax and insolvency laws.
Professor Jiyoung Han's research lab focuses on the intersection of media, political polarization, and social identity, with a particular emphasis on how partisan conflict framing, emotional responses like anger, and identity salience shape public opinion and misinformation dissemination. The lab investigates the psychological mechanisms—such as motivated reasoning, self-categorization, and identity affirmation—that drive polarization in digital and news media environments, especially during high-stakes events like public health crises. Using experimental and computational methods, the lab explores echo chambers, ideological crossovers, and the role of elite cues in amplifying or mitigating polarization across diverse populations.
Professor Jooha Kim's research lab specializes in bio-inspired fluid dynamics and flow control, focusing on understanding and mimicking natural morphological adaptations in animals to enhance aerodynamic and hydrodynamic performance. The lab investigates complex flow phenomena such as stall delay, vortex dynamics, and boundary layer control using experimental techniques like wind-tunnel testing, particle image velocimetry (PIV), and surface oil-flow visualization. Key research directions include the functional roles of biological structures—such as the alula in birds, tubercles on humpback whale flippers, and ridges on leatherback sea turtles—in improving flight and swimming efficiency, as well as developing adaptive passive flow control devices for engineering applications. The lab also explores rotor interactions in multi-rotor UAVs and unconventional aerodynamic effects like the inverse Magnus effect.
Professor Seungmook Lee's research lab specializes in genomic and molecular mechanisms underlying cancer development and environmental health impacts. The lab focuses on identifying novel biomarkers and therapeutic targets in pediatric and adult cancers, particularly gliomas and gastrointestinal stromal tumors (GISTs), using next-generation sequencing and advanced bioinformatics. It also investigates the molecular basis of disease progression, including malignant transformation in IDH1-mutated gliomas and the role of oncometabolites. Additionally, the lab develops innovative computational and mass spectrometry-based methods for protein biomarker discovery and gene expression analysis.
Professor Min-Ji Kim's research lab focuses on translational biomedical research and health technology innovation, spanning inflammatory disease mechanisms, mental health interventions using virtual reality, medical imaging applications in oncology, and health policy surrounding surgical safety and digital health. The lab investigates molecular pathways such as NLRP3 inflammasome activation in inflammatory diseases, evaluates novel digital therapeutics like VR-based therapy for depression, explores advanced imaging techniques in breast cancer management, and examines ethical and legal frameworks for surgical video monitoring and mobile-based philanthropy platforms. The research integrates clinical medicine, biomedical engineering, and health informatics to address pressing healthcare challenges with technological and policy-driven solutions.
Professor A-ram Park's research lab focuses on interdisciplinary innovation at the intersection of biomedical engineering, digital health technologies, and human-centered computing. The lab explores priming strategies to enhance mesenchymal stem cell therapy for neurodegenerative diseases like Alzheimer’s, while also advancing intelligent health services through IoT, chatbots, and AI-driven systems. A key theme is the development of sustainable, user-responsive digital health solutions that integrate artificial intelligence with real-world healthcare applications. The lab also investigates the cultural and cognitive dimensions of digital media, including the evolution of books in the age of ubiquitous computing.
Professor Hyoung-Don Kook's research lab specializes in cardiovascular medicine and interventional cardiology, with a focus on optimizing treatment strategies for complex coronary artery diseases. The lab investigates biomarkers for acute coronary syndrome, evaluates the efficacy of novel pharmacological agents like nebivolol in vasospastic angina, and explores interventional approaches such as drug-coated balloons and repeat stenting in challenging lesions like left main bifurcation in-stent restenosis. The lab also examines the impact of lifestyle factors—such as long working hours—on young adults' mental and cardiovascular health, integrating clinical, imaging, and biomarker data to improve patient outcomes in real-world settings.
Professor Kyung Duk Cho's research lab specializes in environmental engineering and water treatment technologies, focusing on the removal of emerging contaminants such as endocrine-disrupting compounds (EDCs), pharmaceuticals, and personal care products (PPCPs) from water systems. The lab employs advanced materials like carbon nanotubes and TiO2-based photocatalysts, along with statistical experimental designs and machine learning techniques, to optimize treatment processes and improve water quality. Research also extends to advanced oxidation processes, chemical coagulation, and low-dose medical imaging applications, demonstrating a strong interdisciplinary approach combining environmental science, materials science, and data analytics.
Professor Sujung Yoon's research lab focuses on the neurobiological mechanisms underlying stress-related psychiatric disorders, particularly post-traumatic stress disorder (PTSD), with an emphasis on identifying neuroimaging and neurochemical biomarkers. The lab investigates the interplay between psychological trauma, oxidative stress, and neurodegeneration, integrating molecular neuroimaging, functional brain connectivity, and gut-brain axis mechanisms. A key research direction involves developing early detection and risk stratification tools for high-risk populations, such as first responders, using multimodal neuroimaging and clinical phenotyping.