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 Bong-Jae Lee's research lab specializes in otorhinolaryngology and head and neck surgery, with a focus on clinical and translational research in sinonasal disorders, airway management, and pediatric head and neck tumors. The lab investigates anatomical variations and surgical outcomes in septoplasty, evaluates airway intubation techniques using imaging landmarks, and explores treatment strategies for rare pediatric malignancies such as sarcomas and neuroectodermal tumors. Additionally, the lab contributes to understanding the neuroendocrine regulation of reproductive hormones through molecular studies on transcription factors like TTF1 in circadian rhythms. These diverse research directions reflect a strong integration of clinical practice, diagnostic innovation, and molecular biology in ENT and neuroendocrine systems.
Professor Sanggun Sim's research lab focuses on molecular biomarkers and clinical gastroenterology, with a primary emphasis on identifying non-invasive serological markers—particularly serum exosomal microRNAs—for early detection of hepatocellular carcinoma (HCC) in patients with chronic liver disease. The lab investigates the pathogenesis and risk factors of gastrointestinal malignancies, including colorectal adenoma in relation to metabolic syndrome, and explores the mechanisms of drug-induced liver injury, such as that caused by herbal medicines like *Polygonum multiflorum*. The research integrates molecular diagnostics with clinical endoscopy and pathology to improve early diagnosis and treatment strategies for esophageal and liver cancers.
Professor Jeonghwan Youk's research lab focuses on understanding the molecular mechanisms underlying cancer evolution, viral pathogenesis, and somatic genome dynamics in human diseases. The lab employs advanced genomics, single-cell sequencing, and patient-derived 3D organoid models to study tumor heterogeneity, therapy resistance in lung cancer, SARS-CoV-2 infection in human lung cells, and retrotransposition-driven mutagenesis in aging and cancer. A central theme is the integration of multi-omics data to trace clonal evolution and identify genetic drivers of disease progression and treatment failure.
Professor Jiyun Lee's research lab specializes in global navigation satellite system (GNSS) integrity and ionospheric error mitigation, with a focus on enhancing the safety and reliability of aviation navigation systems. The lab investigates ionospheric spatial decorrelation, scintillation, and gradient anomalies that threaten GNSS performance, particularly in precision approach and landing systems such as the Local Area Augmentation System (LAAS) and Ground-Based Augmentation System (GBAS). Research also extends to adaptive signal processing techniques, including software-defined radio and beamforming for interference mitigation, to improve GNSS resilience in challenging radio frequency environments. The lab emphasizes robust data quality assessment and integrity monitoring to ensure high-confidence positioning under adverse ionospheric and interference conditions.
Professor Hakjin Kim's research lab specializes in advancing precision agriculture through innovative sensing and data-driven technologies. The lab focuses on developing automated, real-time monitoring systems for crop growth and soil/nutrient conditions using UAV-based imaging, ion-selective electrodes (ISEs), and multisensor fusion. Key research directions include remote sensing of biophysical crop properties, intelligent signal processing for nutrient sensing, and high-precision positioning for agricultural robotics. The integration of machine learning, spectral analysis, and embedded sensing solutions enables efficient, sustainable agricultural management.
Professor Byung-Jae Kang's research lab specializes in regenerative medicine and tissue engineering, with a primary focus on mesenchymal stem cells (MSCs) derived from various sources such as adipose tissue, bone marrow, umbilical cord, and Wharton’s jelly for bone and cartilage regeneration. The lab develops advanced biomaterials—including hydrogels, nanofibers, and microencapsulation systems—to enhance cell delivery, osteogenic differentiation, and long-term tissue repair. Key research directions include controlled growth factor delivery (e.g., BMP-2), in vivo evaluation of stem cell therapies in animal models, and the engineering of microenvironments that mimic native extracellular matrices to improve therapeutic outcomes. The lab integrates in vitro, in vivo, and translational approaches to advance regenerative strategies for orthopedic and musculoskeletal disorders.
Professor Cheol Hwan Kim's research lab specializes in translational pathology and molecular oncology, focusing on the development and application of advanced diagnostic technologies for cancer. The lab investigates biomarker discovery and molecular mechanisms underlying cancer progression, particularly in breast cancer and rare tumors such as juxtaglomerular cell tumors. Key research directions include the integration of microfluidic systems for high-throughput immunohistochemical analysis, epigenetic regulation in tumorigenesis, and repurposing existing drugs like metformin for anticancer therapy. The lab also explores rare parasitic infections with pathological implications, demonstrating a broad yet focused approach to disease diagnosis and mechanism elucidation.
Professor Dongwoo Lee's research lab specializes in advanced materials and microsystems, with a focus on functional materials for extreme environments and intelligent micro-robotics. The lab explores novel synthesis techniques for ultra-high-temperature ceramics and metamaterials that enable unprecedented control over wave propagation. It also develops innovative design methodologies for low-power integrated circuits and scalable, meso-scale robotic systems with adaptive locomotion capabilities. The research bridges fundamental material science with practical applications in energy, electronics, and robotics.
Professor Doojoon Jang's research lab specializes in the design, fabrication, and application of atomically thin two-dimensional nanomaterials—particularly nanoporous graphene—for advanced membrane-based separations and energy conversion. The lab focuses on overcoming fundamental challenges such as defect-induced leakage and mass transport limitations through multiscale modeling, innovative transfer techniques, and precise pore engineering. Key research directions include scalable synthesis of large-area graphene membranes, defect sealing strategies, and the development of high-performance nanofiltration and thermoelectric devices. The lab integrates experimental fabrication with theoretical modeling to enable next-generation applications in water purification, molecular sieving, and wearable energy harvesting.
Professor Jae Young Choi's research lab specializes in technology and innovation management, with a focus on technology convergence, research collaboration dynamics, and smart city development. The lab investigates the economic and industrial impacts of emerging technologies, particularly through input-output analysis and patent-based innovation metrics. It also explores engineering challenges in electronic systems, such as power distribution network optimization and decoupling capacitor placement using advanced algorithms. The lab integrates interdisciplinary approaches from management science, engineering, and policy studies to address real-world technological and economic challenges.
Professor Hyun-Ui Ahn's research lab specializes in clinical and developmental psychology, with a primary focus on trauma-related psychosocial adjustment, emotion regulation, and resilience in individuals exposed to adverse life experiences. The lab investigates cognitive and emotional processes underlying post-traumatic stress, complex trauma, and grief, particularly in adolescents and young adults, with an emphasis on culturally adapted assessment tools and clinical interventions. Research directions include the development and validation of Korean psychological scales (e.g., CERQ, BDI-II), the impact of childhood interpersonal trauma on identity and self-efficacy, and the clinical implications of complex PTSD beyond standard diagnostic criteria.
Professor Jae Young Choi's research lab specializes in technology and innovation management, with a focus on technology convergence, research collaboration dynamics, and smart city development. The lab investigates the economic and industrial impacts of emerging technologies, particularly through input-output analysis and patent-based innovation metrics. It also explores engineering challenges in electronic systems, such as power distribution network optimization and decoupling capacitor placement using advanced algorithms. The lab integrates interdisciplinary approaches from management science, engineering, and policy studies to address real-world technological and economic challenges.
Professor Minsu Ha's research lab focuses on science education, particularly on students' and teachers' understanding of evolution, cognitive factors influencing science learning, and the development of diagnostic and assessment tools. The lab investigates evolutionary acceptance, misconceptions in natural selection, and the role of intuitive cognition—such as feeling of certainty—in shaping scientific reasoning. It also explores the application of machine learning in scoring student explanations and the long-term impact of professional development on science teachers’ content knowledge and pedagogical content knowledge. The lab emphasizes evidence-based teaching strategies and the use of advanced statistical and computational methods to improve science education outcomes across diverse educational contexts.
Professor Jong-You Kim's research lab specializes in deep learning-based image quality assessment, with a strong focus on developing convolutional neural network (CNN)-driven models for both full-reference and no-reference image quality evaluation. The lab emphasizes human visual system-inspired approaches, integrating psychological vision science with data-driven deep learning to create perceptually aligned quality metrics. Key research directions include end-to-end learning of image quality from subjective data, overcoming data scarcity in no-reference IQA, and designing novel loss functions and network architectures that account for human perception and error patterns in visual tasks.
Professor Yong-Tae Kim's research lab specializes in sustainable materials and catalysis, focusing on the development of advanced nanomaterials for energy and environmental applications. Key research directions include single-atom catalysis for selective methane conversion, bacterial cellulose nanofibers for high-performance and safe battery materials, and functionalized hydroxyapatite catalysts for green chemical transformations. The lab integrates materials synthesis, metabolic engineering, and advanced characterization to address challenges in energy efficiency, sustainability, and catalytic selectivity.
Professor Hyung-Sin Kim's research lab focuses on networking protocols and architectures for resource-constrained environments, particularly in the context of the Internet of Things (IoT). The lab investigates routing protocols like RPL and emerging standards such as Thread, with an emphasis on performance, congestion control, load balancing, and scalability in low-power and lossy networks (LLNs). Their work spans both theoretical analysis and practical evaluation through real-world pilot studies, especially in smart environments like supermarkets and industrial monitoring systems. The lab also explores the integration of IPv6-based networking solutions in large-scale IoT deployments.
Professor Jeong Eun-cheol's research lab specializes in cerebrovascular diseases, with a primary focus on the diagnosis, treatment, and outcomes of complex intracranial aneurysms—particularly blood blister-like aneurysms and dissecting aneurysms of the vertebrobasilar and internal carotid arteries. The lab emphasizes endovascular interventional techniques such as stent-assisted coil embolization and stent-within-a-stent procedures, especially in challenging acute and chronic cases. Additional research interests include the neuroimaging and structural differences in the brain (e.g., corpus callosum), as well as the impact of systemic conditions like diabetes and sarcopenia on cerebrovascular and sensory health.
Professor Kyoung-Ho Ha's research lab specializes in the development of advanced flexible and stretchable electronic systems for biomedical and human-machine interface applications. The lab focuses on designing novel nanomaterial-based sensors and actuators with high sensitivity, biocompatibility, and mechanical robustness, particularly for wearable and implantable health monitoring. Key research directions include capacitive pressure sensors with hybrid response mechanisms, ultrathin graphene-based e-tattoos for unobtrusive physiological sensing, and haptic feedback systems that mimic natural touch. The lab also explores thermal characterization techniques for optoelectronic devices, demonstrating a multidisciplinary approach bridging materials science, electronics, and biomedicine.
Professor Ho-Young Lee's research lab specializes in orthopedic surgery and reconstructive microsurgery, with a strong focus on innovative fixation techniques for long bone fractures and soft-tissue reconstruction. The lab investigates biomechanically efficient and minimally invasive surgical solutions, such as interlocking intramedullary nailing for forearm fractures, and explores novel flap designs—like the distally based lateral supramalleolar adipofascial flap—for complex soft-tissue defects. Additionally, the lab contributes to linguistic phonetics through empirical studies on Korean prosody, particularly the perception and categorization of pitch accent patterns in natural speech. These interdisciplinary efforts reflect a commitment to both clinical innovation and evidence-based language science.
Professor Yong Wook Park's research lab focuses on musculoskeletal and autoimmune diseases, particularly rheumatoid arthritis, with an emphasis on immune cell biology and joint inflammation. The lab investigates the role of regulatory T cells, especially CD8+ T cells expressing NK-like receptors such as CX(3)CR1, in modulating immune responses within the synovial microenvironment. It also explores novel surgical interventions for musculoskeletal disorders, such as innovative ligament reconstruction techniques for chronic ankle instability. Additionally, the lab contributes to medical imaging research, including ultrasound and radiologic characterization of soft tissue tumors.