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 Shin Hye Chung's research lab specializes in biomaterials and oral implantology, focusing on the development and evaluation of advanced implant materials and surface modifications to enhance osseointegration and clinical performance. Key research directions include the synthesis and characterization of doped hydroxyapatite for improved osteoconductivity, the optimization of 3D printing technologies for dental restorations, and the biomechanical and biological evaluation of implant surfaces—particularly titanium-zirconium oxide coatings and surface topographies—under functional loading. The lab integrates computational modeling, in vivo animal studies, and clinical imaging to advance precision dentistry and implant design.
Professor Yong Ju Yun's research lab specializes in surface science and heterogeneous catalysis, with a strong focus on enantioselective processes at chiral interfaces. The lab investigates the fundamental mechanisms of enantiospecific adsorption and surface reactions of chiral molecules—particularly amino acids—on naturally chiral metal surfaces such as Cu{3,1,17}(R&S). By combining advanced experimental techniques like isotopic labeling and temperature-programmed desorption with DFT-based modeling, the group uncovers the role of surface chirality, metal-support interactions, and molecular aggregation in enantioselective transformations. A key research direction involves designing and optimizing transition metal catalysts (e.g., Ru and Pt-based) for sustainable chemical processes, including ammonia decomposition and enantioselective hydrogenation.
Professor Jinwoo Han's research lab specializes in the genetic and clinical characterization of inherited retinal and neuro-ophthalmic disorders, with a focus on early diagnosis and personalized management in pediatric patients. The lab employs next-generation sequencing (NGS) and advanced ophthalmic imaging techniques to identify disease-causing variants in conditions such as inherited retinal dystrophies, congenital stationary night blindness, and Leigh syndrome. A key research direction involves correlating genotype with clinical phenotype to guide targeted therapies and improve patient outcomes. The lab also investigates the efficacy of intravitreal treatments, such as bevacizumab, in retinopathy of prematurity and epiretinal membrane-related visual disturbances.
Professor Nuri Kim's research lab specializes in social and communication psychology, focusing on attitude formation, persuasion, and intergroup relations. The lab investigates how narrative communication, social presence, and message framing influence attitudes toward stigmatized groups and social policies. Key research directions include the impact of fact-checking on misinformation sharing, the role of empathy and perspective in reducing prejudice, and the psychological mechanisms behind ballot position effects and help-seeking behaviors. The lab also champions open science practices to enhance research transparency and reproducibility in communication and social science research.
Professor Siu Lee's research lab specializes in the design and characterization of advanced nanomaterials for energy conversion and catalytic applications. The lab focuses on understanding and engineering metal-oxide interfaces at the nanoscale to control catalytic selectivity and enhance reaction efficiency, particularly in reactions such as CO₂ hydrogenation and methanol oxidation. A key research direction involves probing hot electron dynamics and plasmon-induced catalysis using advanced in situ microscopy and spectroscopic techniques. The lab also investigates functional materials for dye-sensitized solar cells and thin-film transistors, emphasizing interface engineering and charge transport mechanisms.
Professor Jeong-won Jeon's research lab focuses on translational biomedical research, particularly in neuroprotection, cancer pathology, and gastrointestinal disorders. The lab investigates the therapeutic potential of natural compounds—such as berberine and PDRN—in treating conditions like stroke, acute liver injury, and colon cancer by targeting key cellular pathways including PI3K/Akt, apoptosis, and inflammation. A significant emphasis is placed on integrating artificial intelligence with medical imaging to improve diagnostic accuracy in colonoscopy and histopathology. The lab also explores the role of probiotics and herbal extracts in managing Helicobacter pylori infection, combining molecular biology with clinical trials.
Professor Sungho Shin's research lab focuses on clinical and translational research in audiology, otology, and regenerative medicine, with a strong emphasis on gait analysis, hearing loss epidemiology, and otologic surgical outcomes. The lab investigates the validity and reliability of advanced gait assessment systems, explores molecular pathways for hair regeneration (e.g., Wnt/β-catenin activation), and evaluates treatment strategies for middle ear disorders such as cholesteatoma. Their work contributes to evidence-based clinical decision-making and public health policy through population-based hearing studies and surgical outcome analyses.
Professor Jaeseok Park's research lab specializes in advancing magnetic resonance imaging (MRI) techniques, with a focus on improving image contrast, spatial resolution, and scan efficiency. The lab develops innovative sequences—such as black-blood 3D turbo spin-echo and contrast-enhanced T1-weighted imaging—to enhance the detection of small brain metastases and coronary anatomy. Key innovations include optimizing parallel imaging methods like GRAPPA for accelerated imaging and addressing challenges in fat suppression and steady-state free precession (SSFP) for cardiac and vascular MRI. The lab’s work bridges clinical needs with technical advancements to enable high-precision, fast, and artifact-resistant MRI.
Professor In-sun Song's research lab specializes in atmospheric dynamics and gravity wave physics, focusing on the generation, propagation, and impact of internal gravity waves in the atmosphere. The lab investigates gravity wave sources from deep convection, baroclinic instability, and tropical systems, with particular emphasis on spectral and parameterized modeling of gravity wave drag. Using high-resolution numerical models and reanalysis data, the lab explores wave–mean flow interactions, including effects on the quasi-biennial oscillation and large-scale circulation. Their work bridges cloud-scale processes with global atmospheric dynamics through innovative parameterization techniques.
Professor Jae-Han Lim's research lab specializes in intelligent transportation systems, energy-efficient building technologies, and low-power wireless communication. The lab focuses on advancing vehicular ad-hoc networks (VANETs), autonomous vehicle communication, and the integration of phase change materials (PCMs) for thermal management in solar panels and building envelopes. It also explores innovative backscatter communication techniques for passive IoT devices, particularly in challenging RF environments like Wi-Fi bands. The lab’s work bridges smart mobility, sustainable energy, and next-generation wireless networking.
Professor Han Yeong Jeong's research lab specializes in cerebrovascular and metabolic diseases, with a focus on identifying biomarkers and inflammatory pathways linked to cerebral small vessel disease (cSVD), insulin resistance, and stroke outcomes. The lab investigates the role of metabolic markers such as the triglyceride-glucose (TyG) index, homocysteine, and systemic immune-inflammation index (SII) in predicting subclinical and clinical cerebrovascular pathology. They also explore the impact of premorbid nutritional status, particularly via the Geriatric Nutritional Risk Index (GNRI), on stroke prognosis. Their work bridges clinical neurology, metabolic health, and inflammatory biology using large-scale health check-up registries and prospective stroke cohorts.
Professor Chang-Kwon Kim's research lab specializes in translational oncology, focusing on the tumor immune microenvironment, T-cell exhaustion, and immunotherapy response in various solid tumors. The lab investigates mechanisms of immune evasion, particularly in non-small cell lung cancer, gastric cancer, and sarcomas, with an emphasis on biomarkers and combination therapies. Using advanced technologies such as flow cytometry, spatial immune profiling, and artificial intelligence, the lab aims to decode dynamic immune responses and improve patient outcomes through precision immunotherapy strategies. Their work also explores the impact of host factors—like gut microbiome and prior antibiotic use—on immunotherapy efficacy.
Professor Han-Ju Lee's research lab specializes in physical education, sports policy, and gender equity in sports, with a strong focus on qualitative research methodologies and the development of innovative assessment tools in physical education. The lab investigates issues such as gender disparities in sports leadership, teacher content knowledge in physical activity, and the integration of multimedia technologies for effective learning assessment. It also explores contemporary trends in sports education research and the impact of digital marketing in beauty and lifestyle services.
Professor Youngshin Won's research lab specializes in health-promoting physical activity, with a strong focus on aging populations, special needs populations (particularly individuals with intellectual disabilities), and sport leadership in youth and collegiate athletes. The lab investigates the impact of exercise participation, leadership styles, and social factors on psychological well-being, social integration, and long-term health outcomes. Research directions include physical activity promotion in older adults, the transition processes of elite athletes post-retirement, and the role of coaching leadership in team cohesion and performance.
Professor Yejin Jang's research lab focuses on the discovery and development of novel antiviral agents from natural sources, particularly marine and medicinal plants, to combat emerging and resistant viral pathogens such as influenza viruses and SARS-CoV-2. The lab investigates the mechanisms of action of bioactive compounds, including sulfated polysaccharides, alkaloids, and ionophores, with an emphasis on their broad-spectrum antiviral activity and low cytotoxicity. Key research directions include identifying host-directed antivirals and natural product-derived inhibitors targeting viral entry, replication, and host cell machinery. The lab integrates virology, microbiology, and phytochemical analysis to advance therapeutic strategies against respiratory viral infections.
Professor Jeong Hyun Kim's research lab focuses on advancing clinical diagnostics and patient-centered care in urological and neurological conditions, with a strong emphasis on improving biomarker development for prostate cancer and mental health. The lab investigates novel biomarkers—such as %[-2]proPSA and PHI—to enhance risk stratification and reduce overdiagnosis in active surveillance for prostate cancer. It also explores the pathophysiology of chronic infections like Trichomonas vaginalis in the prostate and the psychological mechanisms underlying non-suicidal self-injury in young adults, integrating clinical, molecular, and qualitative research approaches. Additionally, the lab contributes to quality of life assessments in brain tumor patients, emphasizing patient-reported outcomes and holistic care.
Professor Min Cheol Han's research lab specializes in computational radiation physics and Monte Carlo particle transport simulations, with a focus on advancing radiation dosimetry, medical physics, and nuclear data evaluation. The lab develops high-performance computational tools and geometry representations—such as the DagSolid class in Geant4—for accurate and efficient simulation of radiation interactions in complex anatomical phantoms and materials. Key research directions include optimizing Monte Carlo codes (e.g., Geant4, MCNP6, PHITS) for multi-threaded performance, evaluating next-generation nuclear data libraries, and investigating the impact of microstructural features on transport properties in porous media. The lab also contributes to the advancement of carbon-ion radiotherapy through the development and implementation of advanced computational phantoms and simulation frameworks.
Professor Jin-Woo Kim's research lab specializes in advanced manufacturing technologies, with a focus on improving machining processes for high-performance materials such as titanium alloys and carbon fiber-reinforced plastics. The lab investigates innovative surface engineering solutions, including nano-solid lubricants like graphene nanoplatelets and hBN, to enhance machinability and tool life. Additionally, the lab develops cutting-edge simulation and communication systems, such as haptic-mixed reality training platforms for medical procedures and hybrid NOMA-SM transmission schemes for next-generation wireless networks. These interdisciplinary efforts bridge materials science, mechanical engineering, and information technology to solve real-world challenges in healthcare, aerospace, and telecommunications.
Professor Dong-Wan Kang's research lab specializes in biomedical imaging and neurovascular interventions, with a focus on advanced MRI techniques for stroke diagnosis and treatment monitoring. The lab investigates the role of susceptibility-weighted imaging in assessing acute ischemic stroke and explores novel nanotherapeutics, such as ceria nanoparticles, for treating intracerebral hemorrhage. Additionally, the lab is engaged in the development of bioengineered materials, including carbon nanotube-polymer composites, for peripheral nerve regeneration and in the application of high-resolution vessel wall imaging to differentiate intracranial arterial disease etiologies. The integration of medical imaging, nanomedicine, and regenerative biomaterials defines the lab’s translational research approach.
Professor Yeon Jin Cho's research lab specializes in medical image analysis and artificial intelligence, focusing on developing deep learning models to enhance diagnostic accuracy in pediatric radiology. The lab's main research directions include the development of dual-input convolutional neural networks for fracture detection in elbow radiographs, synthetic image generation for CT imaging, and AI-assisted diagnosis of pediatric skull fractures and developmental dysplasia of the hip. The lab also investigates hemodynamic changes in cerebrovascular diseases using perfusion MRI, demonstrating a strong integration of AI with clinical radiological outcomes.