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 Hong-Seok Yang's research lab specializes in the formal verification of software systems, particularly focusing on pointer programs and memory safety through advanced static analysis techniques such as separation logic and shape analysis. The lab investigates scalable and precise methods for reasoning about complex data structures and memory aliasing, with applications in detecting memory leaks and safety violations in large-scale software. Additionally, the lab explores acoustic environments in urban and residential settings, examining noise propagation and sound distribution in multi-storey buildings and outdoor spaces. These interdisciplinary efforts combine formal methods with real-world environmental acoustics to improve software reliability and urban livability.
Professor Kyungmin Lim's research lab focuses on developing alternative models for skin safety and barrier function assessment, particularly in response to the EU's ban on animal testing for cosmetics. The lab investigates the mechanisms of skin barrier disruption and repair using ex vivo skin models, including porcine and reconstructed human epidermis, to evaluate cosmetic ingredients such as hydroxyacids and probiotic lysates. Key research directions include understanding the role of skin proteins, oxidative stress, and cellular signaling pathways (e.g., ERK/AP-1) in photoaging and irritation. The lab also explores the impact of environmental toxicants like mercury on erythrocyte function and thrombosis, linking systemic effects to skin and cardiovascular health.
Professor Kwhanmien Kim's research lab specializes in thoracic surgery and oncology, with a strong focus on improving outcomes in lung cancer and esophageal surgery. The lab investigates surgical techniques—particularly video-assisted thoracic surgery (VATS) and endoscopic therapies—aimed at minimizing complications and enhancing recovery. Key research directions include the pathological prognostic factors in early-stage lung adenocarcinoma, the application of photodynamic therapy in lung cancer, and innovative postoperative management strategies such as endoscopic vacuum therapy and high-frequency chest wall oscillation. The lab integrates clinical outcomes with molecular and pathological analysis to advance personalized surgical care.
Professor Hajeong Lee's research lab specializes in nephrology and clinical kidney disease outcomes, with a strong focus on predictive modeling for postoperative acute kidney injury, sarcopenia assessment through novel biomarker equations, and long-term prognosis in chronic kidney disease populations. The lab investigates the impact of metabolic and pharmacological factors—such as SGLT2 inhibitors and serum uric acid—on patient and graft survival in kidney transplant and dialysis populations. Their work integrates clinical epidemiology, biomarker discovery, and outcomes research to improve risk stratification and personalized management in renal diseases.
Professor Sang Yun Lee's research lab specializes in quantum materials and nanoscale devices, with a focus on color centers in wide-bandgap semiconductors—particularly silicon-vacancy centers in silicon carbide—for quantum information and sensing applications. The lab explores spin-optical interfaces, quantum coherence, and charge state control in solid-state systems to enable scalable quantum networks. Additionally, the group investigates advanced oxide dielectrics and metal-insulator-metal capacitors for next-generation nanoelectronics, while also contributing to quantum metrology and biophotonics through quantitative phase imaging of biological cells. Their interdisciplinary work bridges quantum physics, materials science, and biomedical engineering.
Professor Yong Seuk Lee's research lab specializes in orthopedic biomechanics and joint health, with a primary focus on knee joint disorders, including meniscal injuries, anterior cruciate ligament (ACL) reconstruction, and periprosthetic joint infection (PJI). The lab investigates diagnostic accuracy of synovial fluid biomarkers, meniscal repair techniques, and surgical outcomes such as high tibial osteotomy and meniscal allograft transplantation. Their work emphasizes improving surgical decision-making through biomechanical analysis and clinical outcomes evaluation across various knee pathologies.
Professor Sun Wook Kim's research lab specializes in thyroid cancer diagnostics and management, with a focus on molecular imaging, molecular pathology, and personalized treatment strategies. The lab investigates the role of FDG-PET in detecting incidental thyroid findings, the clinical significance of BRAF mutations in thyroid nodules, and the impact of obesity on tumor aggressiveness in papillary thyroid cancer. Additionally, the lab explores endocrine reference intervals in relation to iodine nutrition and evaluates the long-term risks and benefits of radioactive iodine therapy, particularly in low- and intermediate-risk patients. These studies collectively aim to improve early detection, risk stratification, and individualized treatment in thyroid cancer.
Professor Ki-Ho Park's research lab specializes in the intersection of nanomaterials and biological systems, focusing on the development and application of carbon-based nanomaterials—such as single-walled carbon nanotubes and fullerenes—as novel modulators of ion channels. The lab also investigates the molecular mechanisms of melatonin in osteogenic differentiation and explores the diagnostic utility of optical coherence tomography (OCT) parameters in glaucoma, particularly in high-risk populations like those with high myopia. A key theme across the research is the translation of nanoscale material properties into clinically relevant biological and diagnostic outcomes.
Professor Wonjin Lee's research lab focuses on environmental and occupational health, particularly the epidemiological investigation of pesticide exposure and its association with cancer and suicide mortality. The lab conducts large-scale prospective cohort studies, such as the Agricultural Health Study, to examine the long-term health impacts of agricultural chemicals like chlorpyrifos, alachlor, and paraquat. Research also extends to public health policy evaluation, including the impact of pesticide bans on suicide rates. The lab integrates statistical modeling and epidemiological methods to assess exposure-response relationships and inform regulatory decisions.
Professor JangHern Lee's research lab specializes in neuropharmacology and integrative neuroscience, focusing on the molecular and cellular mechanisms underlying pain modulation and inflammatory responses. The lab investigates the role of endogenous systems such as the sigma-1 receptor, nitric oxide signaling, and spinal cord neurotransmission in pain sensitization and analgesia. Using animal models of inflammatory and neuropathic pain, the lab explores the therapeutic potential of traditional remedies like bee venom and electroacupuncture, particularly when targeted to specific acupoints. A central theme is the site-specific and receptor-mediated modulation of pain pathways in the spinal cord and brainstem.
Professor Young Ju Kwon's research lab focuses on translational biomedical research with a strong emphasis on cancer biology, fibrosis, and protein-based therapeutics. The lab investigates molecular mechanisms underlying aggressive cancers such as triple-negative breast cancer and epithelial ovarian cancer, particularly under hypoxic conditions, and explores novel therapeutic targets like transcription factors (e.g., ELF3) and signaling pathways. It also develops innovative nanotherapeutic strategies, including hyaluronic acid-bilirubin nanoparticles for targeting activated hepatic stellate cells in liver fibrosis, and investigates protein stability and modification in therapeutic albumin formulations. The lab integrates molecular biology, chemical design, and nanomedicine to address unmet clinical needs in oncology and fibrotic diseases.
Professor Eun Jung Lee's research lab specializes in advanced materials and biomedical technologies, focusing on the development of functional nanomaterials for optical and electronic applications, as well as therapeutic interventions in metabolic and neurological diseases. Key research directions include electrically tunable graphene-based photonic devices for fiber-optic systems, piezoelectric nanocomposites for energy harvesting, and AI-driven medical imaging for thyroid cancer diagnosis. The lab also investigates natural compounds like chrysin and flavonoids for their renoprotective and anti-fibrotic effects, and explores non-invasive ultrasound therapies such as MR-guided focused ultrasound for neurological disorders.
Professor DongSoohan Han's research lab specializes in the intersection of nanomagnetism, spintronics, and advanced materials physics, with a focus on manipulating magnetic domain walls and skyrmions for next-generation data storage and computing. The lab explores spin wave-mediated control of magnetic textures, interfacial Dzyaloshinskii-Moriya interactions, and collective vortex dynamics in nanostructured magnetic arrays. Additionally, the lab contributes to computer systems research by developing learned-index-based algorithms for high-performance bioinformatics and network architecture design. These diverse yet interconnected efforts reflect a strong emphasis on both fundamental magnetic phenomena and their practical applications in information technology.
Professor Kyu-Beom Kim's research lab specializes in coastal geochemistry and hydrogeology, focusing on submarine groundwater discharge (SGD) and its role in coastal nutrient cycling. The lab employs natural radium and radon isotopes as tracers to quantify groundwater fluxes and nutrient inputs in dynamic coastal environments, particularly on volcanic islands like Jeju, Korea. Key research directions include understanding the sources and impacts of SGD on coastal ecosystems, including its contribution to harmful algal blooms, and developing innovative field techniques for low-level radionuclide detection in natural waters. The lab also investigates the interplay between tidal dynamics, rainfall, and groundwater discharge, providing critical insights for coastal water resource and environmental management.
Professor Yu Taek Seo's research lab specializes in the thermodynamics, kinetics, and structural characterization of clathrate hydrates, with a focus on mixed-gas hydrates involving CO₂, CH₄, N₂, and other hydrocarbons. The lab employs advanced analytical techniques such as in situ NMR spectroscopy, X-ray diffraction, and high-pressure phase equilibrium measurements to investigate hydrate formation, guest molecule distribution, and the potential for carbon capture and natural gas storage. Key research directions include the development of hydrate-based technologies for CO₂ separation from flue gas, methane recovery, and hydrate inhibition using chemical additives like MEG and PVCap.
Professor Hyeong-Seok Kim's research lab focuses on the molecular and physiological mechanisms underlying cardiovascular and metabolic diseases, with a central emphasis on the renin-angiotensin system, hypertension, and vascular homeostasis. The lab investigates genetic and molecular determinants of blood pressure regulation, including angiotensinogen gene expression, endothelial dysfunction, and inflammatory responses in disease contexts such as pre-eclampsia and cancer. Utilizing translational mouse models and high-throughput molecular phenotyping, the lab explores systemic responses to genetic variation and pathological stressors. Additionally, the lab extends its research into health communication and public relations, developing culturally relevant tools to assess stakeholder relationships in corporate and public health settings.
Professor So-Young Son's research lab specializes in innovation management, data analytics, and policy evaluation, with a strong focus on applying advanced statistical and machine learning methods to real-world challenges in business, public safety, and national development. The lab investigates the drivers of firm performance through open innovation and organizational capabilities, while also developing predictive models for traffic accident severity and national innovation performance using structural equation modeling and data mining techniques. A key research direction involves evaluating the effectiveness of government policies—particularly those supporting women entrepreneurs—through empirical modeling and causal analysis. The lab bridges quantitative methods with practical policy and managerial applications to enhance decision-making in both public and private sectors.
Professor Byung Hun Min's research lab specializes in gastrointestinal oncology and molecular pathology, with a focus on early-onset and early-stage gastrointestinal cancers, including early gastric cancer, colorectal cancer, and esophageal squamous cell carcinoma. The lab investigates the molecular and epigenetic mechanisms underlying carcinogenesis, particularly the role of CpG island methylator phenotype (CIMP) and genetic alterations in tumor progression. It also emphasizes the development of non-invasive diagnostic techniques, such as endoscopic ultrasonography-guided fine needle biopsy (EUS-FNB), and the creation of predictive models for lymph node metastasis to improve clinical decision-making in endoscopic resection. The lab integrates genomics, transcriptomics, and clinical data to enhance precision diagnosis and surveillance strategies for gastrointestinal malignancies.
Professor Sung-Nam Park's research lab specializes in ultrafast spectroscopy and photophysics, focusing on the dynamic behavior of hydrogen bond networks in aqueous ionic solutions and the design of advanced photosensitizers for photodynamic therapy. The lab employs advanced techniques such as 2D IR vibrational echo spectroscopy and polarization-selective pump-probe experiments to probe the structural and dynamical properties of water at the molecular level, particularly under extreme conditions like high salt concentrations. A key research direction involves engineering chromophores and fluorophores—such as modified BODIPYs and thionaphthalimides—with tailored photophysical properties for biomedical imaging and therapeutic applications. The lab also integrates machine learning with optical spectroscopy to accelerate the virtual screening and development of functional emitters.
Professor Yang Gyun Kim's research lab focuses on viral pathogenesis, structural virology, and innate immune evasion, with a central emphasis on understanding the molecular mechanisms of viral proteins that interact with non-canonical nucleic acid structures such as Z-DNA and pseudoknots. The lab investigates how viral proteins like E3L from poxviruses exploit Z-DNA binding and dsRNA recognition to counteract host antiviral responses, particularly interferon signaling, and how these interactions contribute to viral pathogenicity. Additionally, the lab explores the structural and functional basis of ribosomal frameshifting in viral replication and develops advanced biomaterials for microbial microencapsulation with enhanced cytoprotection. Their work bridges structural biology, host-pathogen interactions, and synthetic biology to uncover fundamental principles of viral immune escape and to develop novel therapeutic and biotechnological applications.