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 Seung-Hyung Kim's research lab focuses on the intersection of information technology, behavioral decision-making, and organizational performance, with a strong emphasis on real-world applications in healthcare, e-commerce, and cybersecurity. The lab investigates how digital technologies—such as electronic health records, knowledge management systems, and online platforms—affect user behavior, risk exposure, and operational outcomes. Key research directions include the psychological drivers of online behavior (e.g., gambling, trust in digital systems), the impact of IT use on performance, and the learning dynamics in cybersecurity countermeasure development. The lab employs longitudinal, field-based data and advanced statistical methods to derive actionable insights for management and policy.
Professor Hye-Bin Kwon's research lab focuses on cardiovascular interventions and heart failure management, with a particular emphasis on optimizing outcomes in acute myocardial infarction, heart failure with mid-range ejection fraction (HFmrEF), and arrhythmia management. The lab investigates pharmacological strategies—such as the role of intravenous morphine in myocardial injury and the efficacy of antiarrhythmic drugs after cardioversion—while also exploring biomarkers like uric acid in vasospastic angina. A key research direction involves cardiac resynchronization therapy (CRT) in patients with cardiomyopathy, especially in relation to reverse remodeling and long-term prognosis. The lab integrates clinical trials, advanced imaging (e.g., cardiac MRI), and registry-based analyses to translate findings into improved patient care.
Professor Yong Jun Choi's research lab focuses on clinical and translational studies in metabolic and infectious diseases, with a strong emphasis on epidemiology, disease management, and public health outcomes in Asian populations. Key research directions include diabetes and osteoporosis management, antimicrobial resistance in fungal pathogens, and foodborne hazards such as biogenic amines in fermented seafood. The lab integrates clinical data, microbiological analysis, and population-based surveys to improve disease prevention and health-related quality of life.
Professor Changwook Park's research lab focuses on molecular mechanisms underlying liver cancer progression, with a particular emphasis on the roles of key regulatory proteins such as HMGB2, BNIP3, and NNMT in cancer cell proliferation, autophagy, and stress response. The lab investigates how these molecules influence tumor metabolism, apoptosis, and survival under hypoxic and nutrient-deprived conditions, contributing to a deeper understanding of hepatocellular carcinoma (HCC) pathogenesis. Additionally, the lab explores therapeutic applications in dermatological conditions, including atopic dermatitis and viral warts, highlighting translational research bridging molecular oncology and clinical dermatology. Their work integrates molecular biology, cell signaling, and clinical data to identify novel therapeutic targets and biomarkers in cancer and inflammatory skin diseases.
Professor Hyun Sun Jeon's research lab specializes in anterior segment ophthalmology, with a primary focus on dry eye disease (DED) and cataract development in pediatric and systemic disease populations. The lab investigates objective diagnostic tools, including deep learning-based imaging systems for corneal staining and biometric devices for refractive surgery planning. Key research directions include the pathophysiology of meibomian gland dysfunction, novel therapeutic interventions such as diquafosol and cyclophosphamide, and the long-term ocular outcomes in patients with atopic dermatitis and autoimmune conditions.
Professor Mi-Yeon Yu's research lab specializes in nephrology and geriatric medicine, with a focus on acute kidney injury (AKI) in elderly and critically ill patients. The lab investigates clinical predictors of AKI, including frailty, laboratory markers like RDW, and hemodynamic factors such as ECMO pump speed. It also explores molecular mechanisms of renal injury, particularly the role of STAT3 signaling in ischemia-reperfusion injury, and evaluates therapeutic strategies such as albumin replacement and oral sodium polystyrene sulfonate for managing AKI and hyperkalemia in chronic kidney disease. The lab integrates clinical research with translational insights to improve outcomes in vulnerable patient populations.
Professor Yoo Jung Kim's research lab focuses on interdisciplinary studies at the intersection of biomedical sciences, health informatics, and social communication. The lab investigates molecular mechanisms underlying neurodevelopmental disorders such as Fragile X syndrome and ADHD, utilizing systems biology and machine learning to identify therapeutic targets and adverse drug reactions. It also explores the role of ethnic media in community building and public communication, particularly within diaspora communities in urban settings. Additionally, the lab examines policy frameworks for critical infrastructure, such as spectrum management, using comparative and network-based analytical methods.
Professor Nam O. Kim's research lab specializes in clinical anesthesiology and critical care, focusing on optimizing anesthetic techniques, airway management, and perioperative outcomes in surgical patients. The lab investigates novel anesthetic agents, such as dexmedetomidine and remifentanil, for their efficacy and safety in endoscopic and general anesthesia, with an emphasis on reducing postoperative complications like emergence agitation and coughing. Additionally, the lab explores advanced technologies—such as electromagnetic-guided ultrasound systems—for improving the precision and safety of vascular access procedures, including radial artery cannulation. Their work also extends to managing high-risk patients, particularly those with chronic obstructive pulmonary disease (COPD), by evaluating pulmonary-protective strategies during one-lung ventilation.
Professor Jin-Soo Ko's research lab specializes in developing advanced neuromodulation and neuroprosthetic technologies, focusing on minimally invasive, soft, and implantable neural interfaces for long-term brain-computer interaction. The lab pioneers innovative approaches such as focused ultrasound-mediated blood-brain barrier opening for targeted drug delivery and neurodegenerative disease modulation, while also advancing fully implantable, wireless, and power-integrated neural recording and stimulation systems. Their work emphasizes biocompatible, conformal electronics and 3D/4D printing of functional neural devices that seamlessly integrate with the brain’s anatomy to enable stable, chronic monitoring and control of neural activity. The lab's research bridges neuroscience, biomedical engineering, and materials science to create next-generation neurotechnologies for treating neurological disorders and enhancing neural function.
Professor Hee Jun Choi's research lab specializes in advancing minimally invasive surgical techniques and personalized treatment strategies in breast cancer. The lab focuses on robotic and endoscopic nipple-sparing mastectomy, aiming to improve cosmetic outcomes and reduce complications. It also investigates therapeutic resistance in hormone receptor-positive breast cancer, particularly targeting EGFR to overcome endocrine therapy resistance. Additionally, the lab develops predictive models, such as nomograms, to guide treatment decisions in patients undergoing neoadjuvant chemotherapy.
Professor Eunjong Yu's research lab specializes in structural health monitoring, seismic performance evaluation, and finite element model updating for civil infrastructure, with a focus on damage detection and performance assessment of reinforced concrete and masonry structures. The lab develops advanced experimental and analytical techniques—such as the linear shaker seismic simulation (LSSS) method and sensitivity-based model-updating algorithms—to improve the accuracy of structural response prediction and to validate numerical models using field and shaking table test data. Their work emphasizes practical applications in post-earthquake assessment, particularly for buildings damaged in major seismic events like the 1994 Northridge earthquake.
Professor DaeHyung Park's research lab specializes in advancing robotic systems that can perform complex, real-world tasks with human-like understanding and adaptability. The lab focuses on integrating large language models (LLMs) with robotics to enhance task planning, perception, and human-robot interaction in dynamic and partially observable environments. A key research direction involves developing multimodal anomaly detection systems that leverage sensory signals—such as vision, touch, and audio—combined with progress-aware modeling to enable safe, robust, and common-sense execution of assistive and manipulation tasks. The lab also pioneers reactive task-and-motion planning frameworks that dynamically adapt to human interventions, ensuring seamless and efficient robot operation in collaborative settings.
Professor Daehyung Park's research lab specializes in developing intelligent robotic systems that can perform complex, real-world tasks with robustness and common sense, particularly in human-centered environments. The lab focuses on integrating large language models (LLMs) with robotics for improved task understanding, planning, and human-robot interaction. Key research directions include multimodal anomaly detection for safe manipulation, task-and-motion planning under human intervention, and leveraging non-exteroceptive sensory modalities to infer semantic world knowledge in partially observable settings. The lab emphasizes practical, reliable robotic assistance for activities of daily living, especially for individuals with disabilities.
Professor Byunghan Kim's research lab specializes in model theory, particularly the study of simple and stable theories in mathematical logic. The lab focuses on foundational aspects of forking independence, stability properties, and the role of canonical bases in simple theories. Key research directions include the equivalence of forking and dividing, symmetry and transitivity of forking, elimination of hyperimaginaries, and the relationship between stability and forking in simple structures. The lab also investigates the model-theoretic properties of specific mathematical structures such as pseudofinite fields, algebraically closed fields with generic automorphisms, and random graphs.
Professor Jae-Hwan Park's research lab specializes in clinical biomechanics and rehabilitation engineering, focusing on gait analysis, joint coordination, and mobility disorders in musculoskeletal and neurological conditions such as knee osteoarthritis, stroke, and spinal cord injury. The lab employs advanced motion analysis techniques, including hip-knee cyclograms and inertial sensor systems, to quantify gait variability and inter-joint coordination. It also investigates therapeutic interventions, such as stellate ganglion blocks for brachial plexus injury and exoskeleton-assisted walking, to improve functional outcomes. Additionally, the lab explores biophysical properties of medical materials, such as fluid thickeners for dysphagia, using viscometry and rheological testing.
Professor Noeul Kang's research lab focuses on respiratory medicine, with a strong emphasis on the microbiological and immunological mechanisms underlying chronic lung diseases. The lab investigates the role of microbial communities—particularly in nontuberculous mycobacterial and Aspergillus-related pulmonary diseases—using advanced molecular techniques such as 16S rRNA sequencing. They also explore health-related quality of life, treatment outcomes, and the application of artificial intelligence in diagnosing and managing asthma and non-small cell lung cancer, especially in patients with comorbid conditions like COPD. The lab integrates clinical research with cutting-edge technologies to improve patient-centered outcomes and personalized treatment strategies.
Professor Kyung Duk Kim's research lab specializes in computational materials science and advanced materials design, focusing on high-throughput modeling and machine learning to accelerate the discovery of novel functional materials. The lab investigates structural stability, oxidation kinetics, and catalytic behavior in materials such as Heusler compounds, copper catalysts, and fire-resistant steels, with an emphasis on applications in energy sustainability and extreme environments. By integrating density functional theory, CALPHAD modeling, and in situ characterization techniques, the lab aims to bridge the gap between theoretical prediction and real-world material performance. Their work enables the rational design of high-strength, stable materials for clean energy and industrial applications.
Professor Up Lim's research lab specializes in urban resilience, sustainable regional development, and innovation dynamics in metropolitan areas. The lab investigates how cities adapt to climate change through sociopolitical, ecological, and engineering resilience frameworks, while also exploring the role of social enterprises and innovation ecosystems in fostering sustainable local development. A key focus is on spatial patterns of innovation, knowledge spillovers, and the interplay between local and regional economic performance in high-technology industries.
Professor Deok-Joo Lee's research lab specializes in energy economics and decision-making under uncertainty, with a focus on renewable energy investment, carbon market integration, and smart energy systems. The lab develops advanced real options models to evaluate the economic viability of sustainable energy technologies amid volatile energy prices and regulatory risks. It also explores innovative mechanisms for peer-to-peer energy trading in micro-grid networks and designs efficient policy evaluation frameworks for residential solar PV adoption. The lab's work bridges energy economics, operations research, and environmental policy to support sustainable energy transitions.
Professor Seungcheol Yu's research lab specializes in the intersection of digital media, human-computer interaction, and applied technology for social impact. The lab explores immersive technologies such as VR/AR for cultural heritage preservation and digital fundraising, while also developing mobile health solutions using smartphones and low-cost accessories. A key focus is on understanding psychological and cognitive mechanisms underlying media effectiveness in advertising, health communication, and educational applications. The lab emphasizes practical, user-centered innovation with strong societal relevance.