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 Van Thinh Nguyen's research lab specializes in computational fluid dynamics (CFD) and environmental modeling, focusing on fluid flow, pollutant dispersion, and water resource management under climate and land-use change. The lab employs advanced numerical methods such as RANS and LES simulations using open-source CFD tools like OpenFOAM to study complex flow behaviors in urban street canyons, open channels, and river basins. It also integrates hydrological models like SWAT and WEAP to assess the impacts of climate change and land-use changes on streamflow, sediment, and nutrient loads. Additionally, the lab explores fractional calculus applications in modeling anomalous diffusion processes in environmental systems.
Professor Boyoung Nam's research lab specializes in mental health and family violence, with a strong focus on intergenerational transmission of violence, suicidal ideation, and the psychological well-being of vulnerable populations such as North Korean refugee women and adolescents. The lab investigates risk and protective factors related to intimate partner violence, child abuse, and suicide, with particular attention to trauma exposure, social stigma, and peer relationships. Using longitudinal and nationally representative survey data, the lab applies advanced statistical methods to understand behavioral patterns and inform public health interventions.
Professor Jung Yoon Bae's research lab focuses on molecular and cellular mechanisms underlying cancer progression, with a particular emphasis on tumor microenvironment interactions, telomerase function in tumorigenesis, and the development of advanced cryopreservation techniques for regenerative medicine. The lab integrates high-throughput functional genomics, deep learning-based prediction models (e.g., DeepSpCas9), and translational studies to identify key regulators of cancer invasion and survival. Current research also explores novel cryoprotectants and biomaterials to improve cell and tissue preservation, especially in cartilage and stem cell applications. The lab bridges basic molecular biology with clinical applications, aiming to develop novel biomarkers and therapeutic strategies for cancer and regenerative medicine.
Professor Jae-min Cho's research lab specializes in human-computer interaction, information visualization, and interactive data analysis, with a strong focus on designing intuitive, scalable, and user-centered visualization systems for complex data. The lab explores novel interaction techniques and visual encodings—particularly for touch-based and collaborative environments—aimed at improving data exploration for non-expert users. Recent work includes interactive visualization tools like LiveGantt and TouchPivot, as well as foundational research on comparative visualization layouts and scalable multiclass data representation. The lab also investigates the integration of emerging AI technologies, such as text-to-image generation models, into creative and analytical workflows.
Professor Tae-Sup Lim's research lab specializes in hepatology and gastroenterology, with a strong focus on liver disease management, particularly in chronic hepatitis B (CHB) and hepatocellular carcinoma (HCC). The lab investigates diagnostic accuracy using tumor markers, non-invasive assessment of liver fibrosis and cirrhosis through elastography and ultrasonography, and long-term treatment outcomes, including renal safety of antiviral therapy. They also explore the links between muscle strength, metabolic dysfunction-associated steatotic liver disease (MASLD), and cardiovascular risk, emphasizing real-world clinical applications and prognostic biomarkers.
Professor Joo-Hwan Choi's research lab focuses on molecular mechanisms underlying inflammatory and fibrotic diseases, cancer biology, and metabolic disorders. Key research directions include the role of signaling molecules such as TGF-β, MEIS2, and neuropeptides in cancer progression and tissue remodeling, as well as the pathogenesis of asthma and psoriasis through inflammatory mediators like leukotrienes and growth factors. The lab also investigates biomarkers such as thymidylate synthase and genetic variants like CETP Taq1B in predicting disease outcomes and treatment response in gastrointestinal cancers and coronary artery disease. These studies integrate molecular pathology with clinical outcomes to identify therapeutic targets and improve patient prognosis.
Professor Dongyeon Kim's research lab specializes in advanced energy conversion and storage materials, with a primary focus on protonic ceramic electrochemical cells (PCECs) for low-temperature energy applications. The lab investigates novel materials and processing techniques—such as microwave-assisted sintering and bimetal-doped perovskite oxides—to enhance electrochemical performance, proton conductivity, and electrode kinetics. Additionally, the lab explores sustainable construction materials, particularly the reactivity and performance of blast furnace slag powder in cementitious systems, and examines emerging digital consumer technologies like smart speakers in the context of voice-based commerce and user engagement.
Professor Mi Ae Jeong's research lab focuses on translational biomedical research with a strong emphasis on neuroprotection, regenerative medicine, and clinical anesthesia. The lab investigates dietary interventions such as every-other-day fasting for spinal cord injury recovery, explores innovative 3D bioprinting techniques for patient-specific tissue engineering, and evaluates advanced anesthetic techniques and equipment to improve patient outcomes. Additionally, the lab contributes to infectious disease epidemiology through surveillance and characterization of diseases like scrub typhus. These diverse yet interconnected research directions highlight a commitment to improving clinical outcomes through innovative, technology-driven solutions in neuroscience, regenerative medicine, and anesthesiology.
Professor Hyun-joon Kim's research lab focuses on public administration, e-government development, and the strategic use of information technology in local government. The lab explores IT capacity building, intergovernmental collaboration in digital governance, and citizen engagement in public service delivery. It also investigates organizational mechanisms such as contracting out and performance monitoring in public management, as well as the socio-institutional dimensions of public service quality and citizen willingness-to-pay for public amenities.
Professor Jung-Mi Lee's research lab specializes in cognitive neuroscience and human factors, focusing on the neural and behavioral mechanisms underlying attention, reward processing, and perceptual decision-making. The lab investigates how reward and attention interact to shape perception and behavior, using neuroimaging (fMRI), behavioral experiments, and immersive technologies such as virtual and augmented reality. Key research directions include attentional control, multisensory integration, and the development of novel haptic and spatial interaction techniques for virtual environments.
Professor Sungyong Choi's research lab focuses on operations management, risk modeling, and decision-making under uncertainty, with a strong emphasis on multi-product newsvendor models under risk aversion. The lab explores the impact of risk preferences, demand dependence, and utility functions on optimal ordering policies, developing computationally efficient approximations that bridge risk-averse and risk-neutral solutions. Additionally, the lab investigates human and organizational factors in project and startup success, including team competence, learning orientation, and innovation in entrepreneurial settings. The work spans theoretical modeling, empirical validation, and applications in healthcare and microfluidics.
Professor Eun-sun Jin's research lab focuses on cardiovascular and metabolic health, with a strong emphasis on atrial fibrillation, dyslipidemia management, and the long-term safety and efficacy of lipid-lowering therapies such as statins. The lab conducts large-scale observational studies using real-world electronic health record data to evaluate clinical outcomes, including stroke risk, major adverse events, and new-onset diabetes mellitus in patients on different statins. Additionally, the lab investigates interventional cardiology techniques, such as cryoballoon ablation for arrhythmia, and explores regenerative approaches for intervertebral disc degeneration using mesenchymal stem cells. The research integrates clinical epidemiology, health policy, and translational medicine to improve patient outcomes in chronic cardiovascular and metabolic diseases in the South Korean population and beyond.
Professor Jo-Won Jeong's research lab specializes in pediatric and congenital cardiology, with a focus on understanding and managing complex cardiovascular conditions in infants and children. The lab investigates hemodynamic and structural heart diseases such as congenital heart disease (CHD), patent ductus arteriosus (PDA), and Eisenmenger syndrome, emphasizing their impact on pulmonary vascular resistance and long-term outcomes. A key research direction involves advancing interventional cardiology techniques, including transcatheter closure of atrial septal defects using intracardiac echocardiography (ICE), and evaluating noninvasive imaging modalities for monitoring Fontan-associated liver disease. The lab also explores the early detection and management of pediatric hypertension, particularly in the context of rising childhood obesity rates and its cardiovascular implications.
Professor Dong Oh Kang's research lab specializes in cardiovascular medicine with a focus on the intersection of metabolic health, neuro-cardiovascular interactions, and advanced diagnostic imaging. The lab investigates the prognostic implications of sarcopenia, body composition, and systemic inflammation in patients with coronary artery disease, acute myocardial infarction, and heart failure. Key research directions include the role of brain emotional processing (e.g., amygdalar activity) in plaque instability, the impact of lifestyle factors such as alcohol consumption on cardiovascular outcomes, and the use of non-invasive tools like bioelectrical impedance analysis and cardiopulmonary coupling for early detection of sleep-disordered breathing and fluid overload. The lab emphasizes translational research using multimodal imaging and biomarkers to improve risk stratification and personalized management in cardiovascular disease.
Professor Hyung Jun Han's research lab specializes in advanced minimally invasive surgical techniques, with a primary focus on single-port laparoscopic surgery for gastrointestinal and hepatobiliary conditions. The lab investigates clinical outcomes, learning curves, and procedural innovations in single-port cholecystectomy and distal pancreatectomy, emphasizing patient safety, surgical efficiency, and feasibility in complex cases. Research also extends to rare procedures such as transanal removal of rectal foreign bodies using single-incision laparoscopic techniques.
Professor Sumin Kim's research lab specializes in advanced wireless communication systems, with a focus on cognitive radio, hybrid automatic repeat request (HARQ) protocols, and full-duplex relaying in multi-antenna networks. The lab investigates dynamic spectrum access, interference management, and efficient resource allocation to enhance spectral efficiency and system throughput in next-generation wireless networks. Key research directions include rate adaptation in time-correlated fading channels, buffer-aided relaying with beamforming, and low-complexity entropy approximation for mutual information computation in practical modulation schemes.
Professor Il-Yong Jeon's research lab specializes in computational imaging, inverse problems, and machine learning for biomedical and optical imaging applications. The lab focuses on developing advanced algorithms for image reconstruction, particularly through iterative neural networks, compressed sensing, and dictionary learning, with strong emphasis on convergence guarantees and real-time performance. Key applications include magnetic resonance imaging (pMRI), diffusion-weighted imaging in sports-related brain injury, and 3D optical tracking using novel sensor and neural network architectures. The lab bridges theoretical algorithm design with practical medical and engineering implementations.
Professor Dongha Kim's research lab specializes in the design and engineering of advanced functional materials for energy conversion and storage applications. The lab focuses on understanding and controlling interfacial phenomena, particularly in oxide materials, to enhance catalytic activity, stability, and ion transport in electrochemical systems. Key research directions include the development of stable, high-performance electrocatalysts for CO2 reduction and oxygen evolution/reduction reactions, as well as the design of nanostructured anodes for lithium-ion batteries using tailored interfaces and protective matrices. The lab employs advanced in situ and operando characterization techniques to probe dynamic surface and interfacial processes at the atomic level.
Professor Hong Seung-No's research lab specializes in otorhinolaryngology and sleep medicine, focusing on the diagnosis, pathophysiology, and surgical management of upper airway disorders. Key research directions include obstructive sleep apnea (OSA), particularly the identification of anatomical obstruction sites and the development of targeted surgical interventions such as expansion sphincter pharyngoplasty. The lab also investigates inflammatory and fibroinflammatory conditions of the upper airway, including eosinophilic angiocentric fibrosis and allergic rhinitis, with an emphasis on clinical phenotyping by age and sex. Additionally, the lab contributes to understanding the systemic implications of OSA, such as elevated coagulability and cardiovascular risk.
Professor Oh-hyun Lee's research lab specializes in interventional cardiology, with a primary focus on radial artery access techniques for percutaneous coronary interventions (PCI), particularly the distal radial approach (DRA). The lab investigates procedural feasibility, spasm prevention strategies, and outcomes in acute coronary syndromes such as ST-elevation myocardial infarction (STEMI). Additional research extends to left atrial appendage occlusion and patent foramen ovale (PFO) closure, emphasizing neurological outcomes and optimal patient selection in stroke prevention. The lab integrates clinical outcomes with procedural innovation and medication optimization to improve vascular access safety and efficacy.