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 Hye-Soon Kim's research lab specializes in clinical and translational health informatics, focusing on the application of data mining and expert systems in healthcare. Her work spans chronic disease management—particularly type 2 diabetes mellitus—comorbidity analysis using association rule mining, and the development of decision-support tools for clinical diagnosis. The lab also investigates psychological and physiological responses in patient populations, such as anxiety and depression in middle-aged women and preoperative patients, integrating quantitative assessment with evidence-based clinical reasoning.
Professor Kyung In Woo's research lab specializes in ophthalmic oncology and orbital disorders, with a focus on rare and complex conditions such as lacrimal gland carcinoma, solitary fibrous tumors of the lacrimal sac, and retinoblastoma. The lab investigates the clinical outcomes, quality of life impacts, and long-term management strategies for patients with epiphora, orbital tumors, and paraneoplastic syndromes. Research also emphasizes innovative surgical techniques—like the rotating suture method—and multimodal, globe-sparing treatments to improve patient outcomes and reduce complications.
Professor Yonghyun Lee's research lab specializes in the development of biocompatible, stimuli-responsive nanomaterials for targeted disease therapy, with a strong focus on leveraging endogenous biomolecules—particularly bilirubin—for therapeutic applications. The lab pioneers innovative drug delivery systems that respond to tumor microenvironment stimuli such as reactive oxygen species (ROS) or external triggers like light, enabling precise, on-demand drug release. Key research directions include cancer therapy through ROS-responsive nanoparticles, treatment of inflammatory and fibrotic diseases using antioxidant nanocarriers, and enhancing cancer immunotherapy by co-targeting immunosuppressive cells and inducing immunogenic cell death. The lab emphasizes translational potential by designing materials with intrinsic therapeutic activity, biocompatibility, and scalable manufacturing.
Professor Eunhee Lee's research lab focuses on healthcare systems and nursing workforce dynamics, with a strong emphasis on patient safety, nurse retention, and the economic burden of chronic conditions such as osteoporotic fractures. The lab investigates factors influencing nurse turnover—particularly among newly graduated nurses—exploring the roles of resilience, burnout, and staffing levels. It also examines the impact of healthcare resource allocation, including nursing staff ratios, on patient outcomes such as falls and hospital-acquired pressure ulcers. The research integrates health economics, nursing science, and policy analysis to inform sustainable healthcare management.
Professor Yong Gi Min's research lab specializes in endocrine and metabolic diseases, with a focus on thyroid cancer, obesity, diabetes, and metabolic syndrome. The lab investigates the clinical and molecular associations between obesity and thyroid cancer, particularly papillary thyroid microcarcinoma, while also exploring genetic factors such as PPARgamma2 Pro12Ala polymorphism in Korean populations. Additional research examines the impact of gestational diabetes on perinatal outcomes and the role of inflammatory markers like white blood cell counts in metabolic syndrome. The lab integrates clinical epidemiology with molecular genetics to improve early detection and risk stratification in endocrine disorders.
Professor Ki-jeong Kim's research lab specializes in the synthesis, characterization, and functionalization of graphene and other two-dimensional nanomaterials, with a focus on modifying their electronic and surface properties through ion irradiation and electron beam treatment. The lab investigates the interplay between material structure and functionality, particularly in applications related to nanoelectronics and surface engineering. Additionally, the lab explores the biological and physiological impacts of environmental and lifestyle factors—such as maternal infection, physical activity, and mobile phone use—on neurodevelopment and cognitive function, using rodent models and advanced imaging techniques. The integration of materials science with biomedical applications defines the lab’s interdisciplinary approach.
Professor Baek-cheol Jang's research lab specializes in intelligent systems and wireless networking, focusing on reinforcement learning, natural language processing, and energy-efficient communication protocols. The lab explores advanced machine learning techniques such as Q-learning and CNNs with word embeddings for text classification and big data analysis, while also addressing practical challenges in wireless sensor networks and indoor positioning systems. Key research directions include optimizing MAC layer protocols for energy efficiency and developing accurate analytical models for wireless network performance under real-world conditions.
Professor Seung-Tak Ryu's research lab specializes in low-power mixed-signal integrated circuit design and energy harvesting systems, with a strong focus on ultra-low-voltage power management, high-speed analog-to-digital conversion (ADC), and advanced energy storage materials. The lab develops innovative architectures for self-starting power converters and energy-efficient ADCs tailored for Internet of Things (IoT) and wearable applications, while also exploring novel 3D nanostructured materials for flexible and high-performance supercapacitors. Their work bridges the gap between microelectronics and nanomaterials, targeting energy autonomy and miniaturization in portable and implantable devices.
Professor Hyun-Tai Chung's research lab specializes in stereotactic radiosurgery, with a primary focus on the clinical and physical aspects of Gamma Knife radiosurgery. The lab investigates image-guided treatment accuracy, image co-registration techniques, and dose verification using advanced phantoms and dosimetry methods. Key research directions include improving the precision and reliability of frameless radiosurgery systems, optimizing treatment planning algorithms, and ensuring accurate dose delivery for intracranial lesions.
Professor Juhwan Kim's research lab focuses on molecular mechanisms underlying cancer progression and neurodegenerative diseases, with a particular emphasis on signal transduction pathways in lymphoma, lung cancer metastasis, and spinocerebellar ataxia. The lab investigates therapeutic resistance in hematologic malignancies, including the role of PI3K and B-cell receptor signaling pathways, and explores viral oncoproteins such as EBV LMP1 in lymphomagenesis. Key research directions include identifying resistance mechanisms, modulating glial and immune responses, and uncovering transcriptional regulators like Egr-1 and NF-κB in disease pathogenesis. The lab integrates molecular biology, genomics, and translational approaches to develop novel therapeutic strategies.
Professor Da Young Lee's research lab specializes in metabolic health and disease prevention, with a focus on identifying biomarkers and natural compounds that influence insulin resistance, diabetes, and related complications such as pancreatic cancer and cardiovascular disease. The lab investigates the predictive value of metabolic indices like the TyG index and ABSI, explores the anticancer and antidiabetic properties of medicinal mushrooms and natural phytochemicals—such as *Cordyceps militaris* and α-mangostin—and evaluates the impact of antidiabetic medications on long-term outcomes. Their work bridges clinical epidemiology, molecular mechanisms, and nutraceutical therapeutics to advance precision prevention strategies in metabolic and oncological diseases.
Professor Sang-Yong Jeong's research lab specializes in the design, analysis, and optimization of advanced electric machines, particularly permanent magnet synchronous motors and linear synchronous motors, with a strong focus on improving efficiency, reducing torque ripple, and mitigating electromagnetic and thermal challenges in high-performance applications. The lab integrates advanced simulation techniques such as finite element method (FEM) and neural networks to accelerate electromagnetic analysis and develop accurate efficiency maps for electric vehicle drivetrains. Key research directions include torque ripple suppression in sensorless brushless DC motors, end-effect mitigation in linear motors, and the impact of cooling systems on shaft voltage and parasitic capacitance in high-speed, high-voltage traction motors. The lab also investigates innovative structural modifications—such as skewed magnets and modified armature geometries—to enhance dynamic performance and reliability.
Professor Sung-Wook Yang's research lab specializes in the development of novel nanomaterial-based biosensors, particularly focusing on DNA-silver nanoclusters (DNA/AgNCs) for sensitive and selective detection of microRNAs. The lab investigates the fundamental principles governing the formation and fluorescence properties of AgNCs, especially in relation to DNA secondary structures, to enable rapid, label-free miRNA diagnostics. Additionally, the lab explores molecular mechanisms in plant miRNA biogenesis and stress response pathways, including roles of key proteins in Arabidopsis and U-box E3 ligases in barley, linking nanotechnology with plant molecular biology. Their interdisciplinary work bridges nanomaterials science, plant molecular biology, and biomedical diagnostics.
Professor Sang Hak Lee's research lab specializes in orthopedic surgery and regenerative musculoskeletal medicine, with a primary focus on anterior cruciate ligament (ACL) reconstruction, meniscal repair, and osteoarthritis management. The lab investigates innovative surgical techniques such as remnant-preserving ACL reconstruction and open-wedge high tibial osteotomy (HTO) to enhance joint longevity and promote cartilage regeneration. Clinical and imaging-based studies, including MRI evaluation, are central to assessing graft remodeling, meniscal healing, and long-term outcomes in patients with knee injuries and degenerative changes. The lab emphasizes early intervention to prevent secondary joint damage and optimize patient recovery.
Professor Hyun-Sik Kang's research lab focuses on metabolic and musculoskeletal health in aging and pediatric populations, with a strong emphasis on insulin resistance, sarcopenia, osteoporosis, and cardiovascular risk factors. The lab investigates the interplay between lifestyle factors, genetic markers (such as ACTN3 polymorphism), and metabolic syndrome in Korean adults and adolescents. Key research directions include identifying early biomarkers for metabolic and musculoskeletal disorders, evaluating the impact of physical activity and muscle strength on mortality, and exploring the role of insulin resistance in childhood obesity and metabolic syndrome. The lab employs clinical, genetic, and epidemiological approaches using large-scale population data and advanced imaging techniques like dual-energy X-ray absorptiometry (DXA).
Professor Taek Soo Kim's research lab specializes in clinical microbiology and infectious disease diagnostics, with a focus on rapid and accurate detection of pathogens, antimicrobial susceptibility testing, and molecular epidemiology of antibiotic-resistant bacteria. The lab develops innovative diagnostic technologies such as direct antimicrobial susceptibility testing (dRAST) and evaluates emerging methods like MALDI-TOF MS for clinical microorganism identification. Their work also includes investigating viral shedding patterns in respiratory and gastrointestinal samples, contributing critical insights into transmission dynamics of pathogens like SARS-CoV-2.
Professor Ki-Duck Kim's research lab specializes in biological control of postharvest fungal pathogens in agricultural crops, with a primary focus on cereal grains such as rice. The lab investigates plant growth-promoting and antagonistic bacteria—particularly *Bacillus megaterium*, *Pseudomonas protegens*, and *Microbacterium testaceum*—to develop sustainable biocontrol strategies against mycotoxin-producing fungi like *Aspergillus flavus* and *Penicillium* spp. Research spans in vitro and in vivo evaluation of bacterial volatiles, antifungal mechanisms, and environmental factors (temperature and humidity) influencing fungal growth and biocontrol efficacy. The lab also explores alternatives to chemical fungicides, especially for solanaceous crops infected by *Phytophthora* oomycetes, emphasizing environmental safety and agricultural sustainability.
Professor Jongho Park's research lab focuses on cerebrovascular diseases, particularly ischemic stroke, with an emphasis on identifying vascular risk factors, atherosclerotic stenosis, and metabolic influences such as metabolic syndrome and lipid profiles. The lab investigates the role of biomarkers like the apoB/apoAI ratio and explores the impact of medications such as metformin on stroke and cancer outcomes. Additionally, the lab engages in molecular oncology research, particularly in esophageal squamous cell carcinoma, targeting genes like PTK7 for prognostic and therapeutic applications. Their work integrates clinical neurology, vascular imaging, and molecular biology to advance preventive and precision medicine strategies in stroke and cancer.
Professor Seung Woo Seo's research lab specializes in high-speed optical networking, advanced interconnection networks, and intelligent systems for automated transportation. The lab focuses on developing next-generation optical switching technologies, including all-optical packet switching and time-division multiplexing, to enable ultra-high-speed data transmission. It also explores intelligent algorithms for parking slot recognition and therapeutic antibody discovery using deep learning and active learning. The lab bridges cutting-edge networking architectures with AI-driven solutions for real-world applications in communications and biomedicine.
Professor Young-Ki Shin's research lab specializes in bioanalytical chemistry and drug metabolism, with a strong focus on mass spectrometry-based methods for metabolite identification, pharmacokinetic profiling, and the development of quantitative bioanalytical assays. The lab investigates drug metabolism and stability, particularly for novel therapeutics such as antibody-drug conjugates (ADCs) and cytotoxic payloads like monomethyl auristatin F (MMAF), using advanced LC-MS/MS and LC-TOF-MS/MS techniques. Key research directions include metabolic site prediction using computational tools (e.g., MetaSite, StarDrop), characterization of natural product constituents, and the development of high-throughput screening methods for drug stability and bioavailability. The lab also contributes to preclinical drug development by establishing robust analytical methods for in vitro and in vivo studies.