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 Gwang-Min Kim's research lab specializes in interventional radiology and hepatobiliary diseases, with a strong focus on minimally invasive treatments for liver and biliary tract disorders. The lab investigates clinical outcomes and optimal management strategies for conditions such as hepatocellular carcinoma, malignant hilar biliary obstruction, and acute cholecystitis, particularly in high-risk or surgically unfit patients. Key research directions include evaluating stenting techniques, percutaneous drainage procedures, and the role of medical therapies like RAS inhibitors in non-alcoholic fatty liver disease. The lab emphasizes evidence-based treatment selection using validated staging systems and long-term survival outcomes.
Professor Seung-Yang Bang's research lab specializes in machine learning, pattern recognition, and intelligent systems with a focus on developing advanced data classification and inference techniques. The lab explores robust methods such as tolerant rough sets, support vector machine ensembles, variational Bayesian inference, and probabilistic modeling for real-world applications. Key research directions include real-time vehicle tracking, sound classification using non-negative matrix factorization, and improving natural language learning for international students through structural language analysis.
Professor Kyunghoon Kim's research lab focuses on interdisciplinary biomedical and environmental health research, with key strengths in infectious disease epidemiology, environmental allergology, and rehabilitation engineering. The lab investigates global trends in antimicrobial resistance, particularly MRMP infections, and explores the impact of climate change on pollen-related allergies in urban populations. It also conducts clinical trials on innovative rehabilitation therapies—such as mirror therapy and body weight-supported treadmill training—for stroke recovery. Additionally, the lab engages in biotechnological research, including the molecular cloning and characterization of industrial enzymes like laccases from fungi.
Professor Yohan Jo's research lab specializes in natural language processing and computational linguistics, with a focus on interpretability, argumentation mining, and clinical decision support. The lab develops neural and probabilistic models to uncover latent aspects, sentiments, and logical structures in text, particularly in user reviews, online arguments, and clinical notes. A key emphasis is on building models that are both accurate and transparent, enabling actionable insights in healthcare and social media analysis. The lab also explores temporal reasoning and knowledge integration to improve predictive performance in critical applications such as ICU mortality prediction.
Professor Eun-Gook Moon's research lab specializes in strongly correlated quantum systems, with a focus on topological quantum matter, quantum phase transitions, and emergent phenomena in low-dimensional materials. The lab investigates quantum spin liquids, nodal-ring semimetals, and systems with quadratic band touching, employing advanced theoretical methods such as renormalization group theory, large-Nf expansions, and topological field theory. Key interests include the interplay of electron correlations, spin-orbit coupling, and gauge structures in quantum materials, with applications to topological quantum computation and unconventional superconductivity.
Professor In-Ho Hwang's research lab specializes in advanced welding processes and quality monitoring, with a strong focus on the development of intelligent control systems and non-destructive evaluation techniques for high-strength and advanced high-strength steels. The lab investigates the hyponormality of Toeplitz operators in functional analysis, applying mathematical tools to understand operator theory and its applications in signal processing and system modeling. In materials processing, the lab emphasizes process optimization through current and force control in resistance spot welding, spectral monitoring in laser beam welding, and the prediction of weld quality using artificial intelligence, particularly artificial neural networks. The integration of mathematical analysis with industrial welding applications defines the lab’s interdisciplinary approach to improving manufacturing reliability and performance.
Professor Soju Choi's research lab specializes in optimizing perioperative care and enhancing safety in living liver donation, with a strong focus on advanced pain management strategies and hemodynamic monitoring. The lab investigates the efficacy and safety of various analgesic techniques—such as intrathecal morphine, epidural catheters, and local anesthetic-based analgesia—while evaluating their impact on postoperative recovery and donor outcomes. Additionally, the lab explores hemostatic safety, particularly concerning coagulation profiles and the use of central versus peripheral venous pressure monitoring during right hepatectomy. Their work aims to minimize donor morbidity and improve surgical outcomes in living donor liver transplantation.
Professor Kihun Ahn's research lab specializes in maternal-fetal medicine and perinatal health, with a strong focus on the early detection and management of pregnancy complications using advanced technologies. The lab investigates the impact of viral infections—such as varicella-zoster virus—on fetal development and congenital anomalies, while also pioneering the application of artificial intelligence in predicting preterm birth and diagnosing fetal conditions. A key research direction involves the clinical utility of ultrasound, particularly intrapartum and second-trimester imaging, to assess labor progression and placental factors linked to neonatal outcomes like respiratory distress syndrome. The lab integrates clinical data with machine learning to improve maternal and neonatal health outcomes.
Professor Boeun Lee's research lab specializes in medical image analysis and robotics, with a focus on improving clinical outcomes through advanced imaging techniques and intelligent motion planning. The lab investigates radiological biomarkers—such as temporalis muscle thickness and vascular permeability—using CT and MRI to predict survival and disease progression in cancer patients, particularly in head and neck squamous cell carcinoma and brain tumors. In parallel, the lab develops analytical and heuristic approaches for time-varying obstacle avoidance in robotic systems, aiming to enhance safety and efficiency in dynamic environments. These interdisciplinary efforts bridge medical imaging, computational modeling, and robotics to support precision medicine and autonomous systems.
Professor Jaesang Ryu's research lab specializes in the development and application of organolanthanide complexes as highly efficient and selective catalysts for C–H and C–X bond functionalization, particularly in hydroamination and cyclization reactions. The lab focuses on designing novel rare-earth-based catalysts for the regio- and diastereoselective synthesis of nitrogen-containing heterocycles such as pyrrolidines and piperidines, as well as exploring innovative ionic liquid media for sustainable organic transformations. Their work bridges molecular catalyst design with practical synthetic methodologies under mild conditions.
Professor Soon Min Lee's research lab specializes in neonatal and perinatal health, with a primary focus on high-risk infants, particularly very-low-birth-weight (VLBW) and extremely-low-birth-weight (ELBW) preterm infants. The lab investigates critical neonatal conditions such as postnatal growth failure, neonatal sepsis, congenital syphilis, hypoxic-ischemic encephalopathy, and rickets of prematurity, emphasizing epidemiology, risk factor identification, and long-term outcomes. Using large-scale national databases, the lab conducts population-based studies to inform clinical practice and public health policy in neonatal care. The research direction is strongly translational, aiming to improve survival, growth, and neurodevelopmental outcomes in vulnerable newborns.
Professor Min Hoan Moon's research lab specializes in obstetric and pelvic ultrasonography, with a focus on fetal development, reproductive health, and diagnostic imaging in infertility and gynecological disorders. The lab conducts longitudinal and cross-sectional studies to establish population-specific reference values for fetal biometric measurements—such as nasal bone length, gallbladder size, and anal sphincter diameter—during prenatal development. It also investigates sonographic markers for diagnosing conditions like adnexal torsion and ovarian germ cell tumors, emphasizing the correlation between imaging findings and histopathological outcomes. The lab’s work contributes significantly to improving early diagnosis and clinical management in reproductive medicine and prenatal care.
Professor Juhyeon Lim's research lab focuses on gastrointestinal and metabolic diseases, with a strong emphasis on gastric cancer, Helicobacter pylori infection, and their long-term health implications. The lab investigates the molecular mechanisms linking H. pylori to gastric carcinogenesis, particularly through epigenetic changes such as miRNA methylation, and explores the role of aging and obesity in gastric cancer progression. Using large-scale national health databases, the lab conducts epidemiological and clinical studies to evaluate risk factors, treatment outcomes, and long-term survival in elderly and high-risk populations.
Professor Dong-Joon Shin's research lab specializes in human-friendly robotics with a focus on safe, compliant, and high-performance robotic systems for human-robot interaction. The lab pioneers hybrid actuation strategies that combine the inherent safety and high force-to-weight ratio of pneumatic artificial muscles (PAMs) with the precision and bandwidth of electrical actuators. Key research directions include the development of novel soft and compliant robotic actuators—such as high-contraction ratio PAMs and variable-radius pulley systems—alongside advanced design methodologies for optimizing torque capacity, workspace, and dynamic performance while maintaining safety. The lab emphasizes practical, modular, and easily fabricable robotic systems through innovative mechanical design and analytical modeling.
Professor Kwiyong Kim's research lab specializes in electrochemical technologies for sustainable resource recovery and environmental remediation. The lab focuses on advanced electroseparations and electrocatalysis, particularly for critical metal recovery from complex mixtures and the valorization of pollutants like nitrate and arsenic. Key research directions include molecularly selective electrodeposition, electrochemical conversion of nitrogen and carbon pollutants into valuable chemicals, and the development of functional redox polymers and tailored electrolyte systems for efficient and selective electrochemical processes. The work emphasizes integration with renewable energy and circular economy principles to enable eco-friendly urban mining and clean water treatment.
Professor Yang-Suk Cho's research lab focuses on interdisciplinary studies at the intersection of environmental economics, sustainable technology adoption, and public health. The lab investigates consumer preferences for electric vehicles and vehicle-to-grid (V2G) systems, emphasizing technological and environmental attributes that influence market diffusion. It also explores socio-economic value assessment of assistive technologies for the elderly and disabled, and examines the health impacts of air pollution, particularly PM2.5 exposure, using large-scale cohort data. The lab integrates econometric modeling, conjoint analysis, and health risk assessment to inform policy and technological innovation.
Professor Byung-Geun Kim's research lab focuses on advancing biomedical and electrochemical technologies, with a strong emphasis on allergic diseases, respiratory health, and electrocatalyst design. The lab investigates the microbiome's role in airway diseases such as asthma and allergic rhinitis across different age groups, particularly in adult and elderly populations, using high-throughput sequencing to uncover microbial dysbiosis. In parallel, the lab explores surface engineering of electrocatalysts—particularly nickel phosphide films—to enhance hydrogen evolution reaction performance by manipulating hydrophilicity and gas bubble dynamics. These interdisciplinary efforts bridge clinical immunology, microbiome science, and materials science for improved therapeutic and energy applications.
Professor Hyeonbok Cho's research lab specializes in intelligent manufacturing systems, with a focus on enhancing shop-floor control, supply chain integration, and decision-making through advanced information modeling and semantic technologies. The lab develops innovative solutions for real-time data management, supplier discovery, and nonconformance prediction using ontologies and machine learning. Key research directions include semantic interoperability in manufacturing, agile smart manufacturing systems, and the integration of hierarchical control architectures for make-to-order environments. The lab emphasizes the use of standardized modeling techniques and semantic web technologies to improve system agility and operational performance.
Professor Min Seon Park's research lab focuses on the pathophysiological mechanisms underlying renal dysfunction, neurovascular toxicity, and metabolic health in aging and lifestyle-related diseases. Key research directions include the clinical implications of renal hyperfiltration and mean corpuscular volume as predictors of mortality, the neurotoxic and vascular effects of methamphetamine—particularly through oxidative stress, blood-brain barrier disruption, and cytoskeletal reorganization—and the role of lifestyle interventions such as exercise in mitigating drug-induced neurotoxicity. The lab integrates clinical epidemiology with cellular and molecular mechanisms to explore biomarkers and preventive strategies for chronic diseases.
Professor Jinwoo Park's research lab specializes in translational pharmacology and clinical drug evaluation, with a focus on metabolic diseases, neurodegenerative disorders, and dermatological conditions. The lab investigates the mechanisms of natural compounds and pharmaceutical agents in modulating cellular functions, particularly in diabetes, sarcopenia, and melanogenesis. Key research directions include drug interaction studies, pharmacokinetic equivalence of fixed-dose combinations, and the use of non-invasive imaging techniques like muscle ultrasonography for early diagnosis of muscle wasting. The lab also explores the role of nutritional status and body composition in neurodegenerative disease progression, especially in amyotrophic lateral sclerosis (ALS).