首尔大学、KAIST、延世大学等韩国QS前10名大学的研究室信息。
Professor Kyoungchul Kong's research lab specializes in intelligent robotic systems for healthcare and biomedical applications, with a focus on human-robot interaction, wearable assistive devices, and minimally invasive medical robotics. The lab develops advanced actuators, such as compact series elastic and cable-driven systems, for exoskeletons and rehabilitation robots, emphasizing back drivability, low output impedance, and human safety. It also pioneers innovative capsule endoscopic technologies, including micro-biopsy modules and real-time visual feedback systems, enabling autonomous tissue sampling in the gastrointestinal tract. The lab integrates mechatronics, control theory, and mobile sensing to create portable, intelligent systems for health monitoring and clinical intervention.
Professor Dong Ju Moon's research lab specializes in catalysis and sustainable energy conversion, focusing on the development of advanced catalysts for clean energy production and environmental remediation. Key research directions include hydrogen production via steam reforming of renewable feedstocks like glycerol, perovskite-based catalyst synthesis for efficient catalytic reactions, and pyrolysis processes for the valorization of fluorinated hydrocarbons into high-value chemicals. The lab employs a combination of experimental techniques and kinetic modeling to design and optimize catalysts for industrial applications.
Professor Byoung Joon Kim's research lab specializes in neurological disorders, with a focus on neurodegenerative diseases such as multiple system atrophy and Parkinson’s disease, as well as autoimmune conditions like neuromyelitis optica spectrum disorder (NMOSD). The lab investigates autonomic dysfunction and its clinical correlates in parkinsonism, utilizing tools like the COMPASS-31 questionnaire and objective autonomic testing. It also explores the role of vitamin D in disease activity and disability progression in NMOSD, highlighting the intersection of immunology and neurology. The lab emphasizes translational research, aiming to improve diagnostic accuracy and patient outcomes through biomarker discovery and clinical phenotyping.
Professor Jung Tae Park's research lab specializes in the design and synthesis of advanced functional nanomaterials for energy and environmental applications. The lab focuses on developing hybrid nanostructures—particularly titanium dioxide, silica, and metal-organic frameworks—through surface engineering techniques such as atom transfer radical polymerization (ATRP) and sol-gel processes. Key research directions include the creation of hierarchical porous oxides for high-efficiency dye-sensitized solar cells, anti-fogging and anti-reflection coatings for optoelectronic devices, and photoactive antibacterial materials derived from MOFs. The lab emphasizes materials with enhanced surface area, controlled morphology, and improved catalytic or charge transport properties for sustainable energy and biomedical solutions.
Professor Kwang Pum Lee's research lab specializes in nutritional ecology and insect physiology, focusing on how macronutrient balance—particularly protein and carbohydrate—shapes fitness, development, and survival in insect herbivores. The lab employs geometric framework models to dissect the interactive effects of diet, temperature, and food quality on performance, feeding behavior, and metabolic regulation across diverse insect species. A central theme is understanding the evolutionary and physiological trade-offs between growth, reproduction, and starvation resistance under varying nutritional environments. The lab also investigates diet breadth evolution by comparing generalist and specialist herbivores in their nutritional regulation and food choice strategies.
Professor Sangyoun Lee's research lab specializes in human-computer interaction, focusing on vision-based gesture recognition, tactile feedback systems, and biometric security. The lab develops innovative solutions that integrate computer vision, deep learning, and haptic technologies to create intuitive and secure human-machine interfaces. Key research directions include real-time 3D hand tracking, wireless vital sign monitoring using off-the-shelf WiFi devices, and anti-spoofing techniques for face recognition using light field cameras and defocus effects. The lab also explores advanced point cloud processing with multidimensional feature learning for 3D scene understanding.
Professor Kwang Seob Jeong's research lab specializes in colloidal quantum dots and nanocrystal-based optoelectronic materials, with a focus on manipulating electronic and optical properties through quantum confinement, ligand engineering, and defect passivation. The lab explores steady-state intraband transitions in mid-infrared regions, particularly in non-toxic and mercury-free systems like Ag₂Se and CdChalcogenide quantum dots, enabling applications in infrared photodetectors and solar cells. A key direction involves tuning carrier density and electronic transitions—from intraband to localized surface plasmon resonances—under ambient conditions, advancing practical optoelectronic devices with enhanced stability and performance.
Professor Dae-Hee Lee's research lab specializes in orthopedic biomechanics and knee joint health, with a primary focus on meniscal injuries, osteoarthritis progression, and the functional implications of meniscal extrusion. The lab investigates the structural and biomechanical factors influencing meniscal repair outcomes, particularly in the context of radial tear components and osteoarthritis severity. Clinical and radiological outcomes following arthroscopic procedures such as meniscal allograft transplantation (MAT) are also a key research direction, with emphasis on long-term joint space width and patient-reported outcomes. Additionally, the lab explores sensorimotor deficits in ACL-injured knees, particularly proprioceptive impairments affecting joint position and movement sense.
Professor Jae-Hoon Ko's research lab focuses on infectious disease immunology, particularly host immune responses to emerging viral pathogens such as SARS-CoV-2 and human adenovirus (HAdV). The lab investigates T cell and antibody responses in vaccinated and infected individuals, with an emphasis on variant-specific immunity and immune memory. Additionally, the lab explores advanced biomedical imaging and artificial intelligence applications in medical diagnostics, including 3D-aware GANs for image reconstruction and single-image 3D synthesis.
Professor Soo-Kyung Park's research lab focuses on gastrointestinal oncology and molecular gastroenterology, with a strong emphasis on early detection and biomarker discovery in colorectal and gastric cancers. The lab investigates epigenetic alterations such as DNA methylation in stool samples for non-invasive cancer screening, explores the role of microRNAs as prognostic indicators in young gastric cancer patients, and examines the impact of systemic diseases—like COVID-19—on the gut microbiome. The lab also contributes to clinical endoscopy quality improvement through the evaluation of colonoscopy performance metrics.
Professor Sanguine Byun's research lab focuses on molecular mechanisms underlying cancer progression, skin aging, and immune regulation, with a particular emphasis on identifying natural compounds and cellular pathways as potential therapeutic targets. The lab investigates the chemopreventive and protective effects of dietary flavonoids—such as luteolin, quercetin, and apigenin—against UV-induced skin damage and carcinogenesis, while also exploring the role of autophagy and deubiquitinating enzymes like USP8 in cancer cell survival and immune homeostasis. Their work bridges molecular pharmacology, cell signaling, and translational medicine, aiming to develop targeted interventions for cancer and age-related skin disorders.
Professor Hyondong Oh's research lab specializes in autonomous unmanned systems, with a focus on unmanned aerial vehicles (UAVs) for complex surveillance, search, and tracking missions. The lab develops advanced control strategies, including coordinated standoff tracking, path shaping, and model predictive control, to enable efficient and accurate monitoring of moving targets under real-world constraints such as road networks and environmental turbulence. Research also emphasizes intelligent sensing and decision-making under uncertainty, particularly in detecting and localizing sources of chemical, biological, or radiological threats using Bayesian inference and sensor fusion.
Professor Darjan Karabašević's research lab specializes in multi-criteria decision-making (MCDM) applications across strategic management, human resource selection, corporate social responsibility, and sustainable development. The lab focuses on developing robust, hybrid MCDM frameworks—such as SWARA-ARAS, CoCoSo, and entropy-based methods—under uncertainty to support complex decision-making in business and public policy. Research directions include personnel selection, equipment evaluation in logistics, CSR performance ranking, and assessment of national progress toward the UN Sustainable Development Goals (SDGs).
Professor Sukhoon Pyo's research lab specializes in sustainable and high-performance concrete technologies, focusing on the development of eco-friendly construction materials through the utilization of industrial by-products such as steelmaking slag, electric arc furnace (EAF) oxidizing slag, and supplementary cementitious materials (SCMs). The lab investigates the rheological behavior, mechanical performance, and environmental impacts of ultra-high-performance concrete (UHPC) and pervious concrete, with an emphasis on reducing cement content and CO₂ emissions. Key research directions include optimizing mix designs for structural durability and sustainability, enhancing workability and filling capability, and evaluating pore structure and acoustic properties in porous concrete systems.
Professor Bora Keum's research lab specializes in hepatology and critical care medicine, with a primary focus on the pathophysiology and management of acute and chronic liver diseases. The lab investigates hemodynamic and electrolyte disturbances in cirrhotic patients, particularly the mechanisms and clinical implications of terlipressin-induced hyponatremia. Their work emphasizes personalized treatment strategies, especially in vulnerable populations such as young, low-body-mass-index patients with preserved liver function.
Professor Yoo Jin Hong's research lab specializes in advanced medical imaging technologies, focusing on the application of dual-energy CT and cardiac MRI to improve the diagnosis and risk stratification of cardiovascular diseases. The lab investigates functional and structural tissue characterization in conditions such as pulmonary thromboembolism and chemotherapy-induced cardiotoxicity, with an emphasis on early detection and non-invasive monitoring. Key research directions include quantitative tissue mapping using T1-mapping and volumetric analysis for differentiating cardiac masses like tumors and thrombi.
Professor Kyungmin Huh's research lab focuses on infectious diseases, particularly respiratory infections and emerging viral threats in the Asia-Pacific region. The lab investigates the impact of public health interventions such as non-pharmaceutical measures on respiratory disease burden, evaluates vaccine effectiveness—especially for hemorrhagic fever with renal syndrome—and examines the epidemiology and clinical outcomes of antimicrobial-resistant pathogens like CA-MRSA. The research integrates population-based epidemiological studies with public health policy implications, emphasizing real-world effectiveness of vaccines and antiviral treatments.
Professor Won Sik Ham's research lab specializes in urological oncology, with a primary focus on genitourinary cancers such as testicular, prostate, and renal cell carcinomas. The lab investigates molecular biomarkers and clinical outcomes in early-stage and locally advanced cancers to improve risk stratification and treatment decisions. Key research directions include identifying genetic and molecular predictors of aggressiveness in clear cell renal cell carcinoma (ccRCC) and evaluating novel therapeutic agents like red ginseng extract for erectile dysfunction. The lab integrates clinical data, tissue-based molecular profiling, and prospective cohort studies to advance precision oncology in urological diseases.
Professor Sang Jun Song's research lab specializes in knee arthroplasty and osteotomies, with a focus on improving surgical outcomes through advanced implant design, navigation technology, and patient-specific considerations. The lab investigates long-term clinical results, prosthesis selection (such as cruciate-retaining vs. posterior-stabilized TKA), and the management of knee-related symptoms like joint noise. A key emphasis is placed on optimizing alignment, minimizing complications, and enhancing functional recovery in diverse patient populations, particularly Asian patients.
Professor Xuejing Liu's research lab specializes in the design and development of advanced functional materials for sustainable energy and environmental applications. The lab focuses on transition metal-catalyzed organic transformations, electrocatalysis for nitrogen and carbon dioxide conversion, and metal-organic frameworks for biosensing. Key research directions include the rational design of nanomaterials with tailored surface and electronic properties to enhance catalytic activity and selectivity.