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 Joonhwan Lee's research lab focuses on intelligent systems and human-centered technology, with a strong emphasis on energy systems, affective computing, and personalized information systems. The lab investigates variable-speed engine generator systems integrated with supercapacitors to enhance power quality and reduce emissions in isolated power systems, while also exploring dynamic text interaction through kinetic typography to enrich emotional expression in digital communication. Additionally, the lab develops personalized and interactive news generation systems using algorithmic frameworks for real-time content adaptation, particularly in sports journalism. The research integrates human factors, machine learning, and real-time system design to create adaptive, efficient, and user-responsive technologies.
Professor Jaeseong Lee's research lab specializes in advanced genetic engineering and synthetic biology approaches to optimize Chinese hamster ovary (CHO) and human cell lines for the efficient production of therapeutic proteins. The lab focuses on targeted genome editing using CRISPR/Cas9 technology to achieve precise, stable, and high-level transgene expression at genomic safe harbors, while also exploring cellular stress responses such as apoptosis and autophagy to enhance cell line performance. Key research directions include improving homology-directed repair efficiency, developing marker-free genome editing strategies, and engineering isogenic cell lines with consistent glycosylation and productivity profiles. The lab aims to establish robust platforms for industrial biomanufacturing by integrating molecular tools with systems-level understanding of cell physiology.
Professor Ang-Mo Gu's research lab specializes in plant metabolomics, focusing on the biochemical composition and bioactive compounds in edible plants, particularly tea and cruciferous vegetables like broccoli and mustard. The lab investigates how cultivation practices, post-harvest treatments, and innovative agricultural systems—such as agrivoltaics—affect the levels of health-promoting phytonutrients, antioxidants, and secondary metabolites. Key research directions include metabolite profiling using LC-MS and GC-MS, antioxidant activity assessment, and the molecular regulation of nutrient biosynthesis, with applications in functional foods and sustainable agriculture.
Professor Hyo-Jin Kang's research lab specializes in abdominal and abdominal oncologic radiology, with a focus on advanced medical imaging techniques for the diagnosis and prognosis of liver and pancreatic diseases. The lab investigates innovative MRI and ultrasound technologies—such as compressed sensing, gadoxetate-enhanced MRI, and contrast-enhanced ultrasonography—to improve the detection and characterization of hepatocellular carcinoma and pancreatic tumors. Key research directions include optimizing imaging protocols for better diagnostic accuracy, evaluating tumor vascularity, and assessing treatment response after interventions like transarterial chemoembolization.
Professor Jeong Woo Han's research lab specializes in oncology and long-term survivorship following childhood and breast cancer, with a strong focus on minimizing treatment-related late effects and improving quality of life. The lab investigates surgical techniques that preserve critical anatomical structures—such as arm lymph nodes in breast cancer patients—while reducing complications like lymphedema. It also explores late effects in childhood cancer survivors, including bone mineral density loss and endocrine dysfunction, and evaluates innovative treatment strategies such as alternating intravenous and intra-arterial chemotherapy in retinoblastoma to enhance eye salvage and reduce metastatic risk. Additionally, the lab addresses rare but critical complications in hematopoietic stem cell transplant patients, such as Wernicke’s encephalopathy, emphasizing early detection and intervention.
Professor Sangjin Kim's research lab focuses on translational biomedical research with a strong emphasis on cellular and molecular mechanisms underlying organ injury and degeneration. The lab investigates cardiotoxicity, neurodegeneration, and oncological outcomes, particularly in the context of chemotherapy-induced damage, optic neuropathies, and hepatocellular carcinoma recurrence after liver transplantation. A central theme is the role of oxidative stress, calcium homeostasis, and apoptosis in disease progression, with a translational goal of identifying protective therapeutic targets such as stanniocalcin-1. The lab also explores immunosuppressive strategies in kidney transplantation, aiming to optimize patient outcomes with minimal complications.
Professor Dongsik Kim's research lab specializes in advanced laser-material interactions and their applications in precision manufacturing, materials processing, and wireless communications. The lab focuses on femtosecond laser processing for nanojoining of conductive nanostructures, 3D printing of refractory metals like tungsten using directed energy deposition, and liquid-assisted laser ablation for clean, efficient material removal. Additionally, the lab explores signal processing and physical layer optimization in wireless communication systems, particularly in cooperative relaying and channel estimation for SC-FDMA. These interdisciplinary efforts bridge materials science, photonics, and telecommunications with a strong emphasis on experimental validation and practical implementation.
Professor Myungsoo Kim's research lab specializes in advanced nanomaterials and 2D materials for next-generation electronic and energy applications. The lab focuses on developing atomically thin, non-volatile resistive switches using transition metal dichalcogenides (TMDs) and hexagonal boron nitride (hBN), emphasizing ultra-low power RF and mm-wave switching for 5G and beyond communications. Additional research directions include nanocomposite materials for fuel cell bipolar plates, carbon black catalysts for hydrogen production, and polymer membrane transport phenomena with elastic coupling effects.
Professor Ahn Hyo-Won's research lab specializes in advanced biomaterials and innovative orthodontic technologies, focusing on improving the durability, biocompatibility, and clinical performance of orthodontic appliances. The lab explores zwitterionic polymers, polysaccharide-based antibacterial films, and multi-layer hybrid materials to address limitations in traditional thermoplastic retainers and clear aligners. Key research directions include developing antifouling, wear-resistant, and bioactive materials for orthodontic applications, as well as evaluating surgical and orthodontic treatment outcomes using 3D imaging and morphometric analysis. The lab integrates materials science with clinical orthodontics to design next-generation dental devices with enhanced functionality and patient outcomes.
Professor Donghyun Kim's research lab specializes in intelligent systems and hardware-software co-design, focusing on domain adaptation, multimodal representation learning, and high-performance computing for vision and AI applications. The lab develops advanced methods for unsupervised and self-supervised domain adaptation, particularly in video understanding and marine engine monitoring, while integrating explainable AI for actionable insights. It also designs specialized processors and functional units for computationally intensive tasks such as SIFT feature extraction and 4D vector operations, emphasizing energy efficiency and parallelism.
Professor Suk-Jo Kang's research lab focuses on the intersection of nanomedicine, immunology, and regenerative medicine, with a central emphasis on developing advanced nanocarrier systems—particularly extra-large-pore mesoporous silica nanoparticles (XL-MSNs)—for targeted delivery of therapeutic biomolecules. The lab investigates the spatiotemporal regulation of immune responses, especially in the context of macrophage polarization and T-cell activation, using in vivo models of autoimmune diseases such as multiple sclerosis. A key research direction involves understanding and manipulating innate immune signaling pathways, including STING and NLRP3, to modulate inflammation and promote tissue repair. The lab also explores the cellular dynamics of granulopoiesis and dendritic cell differentiation in inflammatory microenvironments to uncover novel immunomodulatory strategies.
Professor Yoo-Kyung Kim's research lab specializes in medical imaging and diagnostic radiology, with a focus on advanced image reconstruction techniques, particularly in computed tomography (CT) and cardiac MRI. The lab investigates iterative and compressed sensing methods to improve image quality at ultra-low radiation doses, enabling accurate size measurements of pulmonary nodules and enhancing diagnostic confidence. Additionally, the lab explores the clinical implications of specific imaging patterns—such as late gadolinium enhancement distribution in non-ischemic cardiomyopathy and pleural plaque characteristics in asbestos-exposed populations—contributing to refined risk stratification and differential diagnosis in pulmonary and cardiovascular diseases.
Professor Yun Hyoung Baek's research lab specializes in compiler optimization and program analysis, with a focus on improving array access and region representation in high-performance computing environments. The lab develops advanced techniques to analyze and optimize complex array subscripting patterns in scientific and numerical applications, aiming to enhance both precision and efficiency in compiler optimizations. Their work addresses challenges in non-cache-coherent architectures like the Cray T3D/T3E, emphasizing scalable and programmable parallel computing systems.
Professor Ji Tae Kim's research lab specializes in advanced nanofabrication and materials engineering, focusing on the development of innovative micro- and nanoscale platforms for biomedical diagnostics, optoelectronics, and energy applications. The lab pioneers techniques in 3D nanoprinting, particularly using femtoliter-scale liquid menisci for precise, contactless fabrication of functional nanomaterials such as perovskites and conducting polymers. Key research directions include the design of self-contained microfluidic devices for point-of-care diagnostics and the creation of high-density, freeform 3D nanostructures with tailored optical and electronic properties. The lab integrates microfluidics, materials science, and additive manufacturing to enable next-generation devices with enhanced performance and miniaturization.
Professor Sang-jin Shin's research lab specializes in arthroscopic and minimally invasive surgical techniques for shoulder and knee disorders, with a strong focus on rotator cuff repair, acromioclavicular joint stabilization, and treatment of synovial pathologies. The lab investigates clinical outcomes, implant performance, and patient-reported outcomes following arthroscopic procedures, emphasizing functional recovery, revision surgery predictors, and implant-specific complications. Research also includes biomechanical evaluation of fixation devices and optimization of surgical techniques to improve long-term joint stability and patient satisfaction. The lab integrates clinical data with radiological and outcome assessments to refine surgical indications and improve patient-centered care in sports medicine and orthopedic surgery.
Professor Jee Won Chai's research lab specializes in regenerative medicine and musculoskeletal imaging, with a primary focus on the clinical translation of mesenchymal stem cell (MSC) therapies for degenerative joint diseases such as osteoarthritis and rotator cuff disease. The lab investigates the safety, efficacy, and optimal delivery strategies—particularly intra-articular and intratendinous injections—of autologous adipose-derived MSCs in human patients. Additionally, the lab develops and validates advanced MRI grading systems to improve the diagnostic accuracy and reproducibility of spinal and joint pathologies, including cervical canal stenosis and cartilage degeneration. Their work bridges clinical application with medical imaging innovation to enhance patient outcomes in orthopedic and neurological conditions.
Professor Jong-Moon Jeong's research lab specializes in next-generation wireless communication systems, with a focus on vehicular networks, UAV-based 6G networks, and intelligent networking technologies. The lab explores advanced medium access control protocols, cooperative MIMO communications, and network optimization for high-speed, reliable, and low-latency connectivity. It also investigates the integration of artificial intelligence and machine learning in emergency healthcare systems and network management to enhance performance and reliability.
Professor Geunhwan Ahn's research lab specializes in ovarian and pulmonary pathology, with a focus on the molecular and immunohistochemical characterization of rare and aggressive tumors. The lab investigates the roles of adhesion molecules, tight junction proteins, and tumor markers in ovarian serous neoplasms, granulosa cell tumors, and low-grade serous carcinomas to improve diagnostic accuracy and clinical prognosis. Additionally, the lab explores the pathological features and biological behavior of rare lung tumors such as sclerosing hemangiomas, contributing to a better understanding of their clinicopathological spectrum. Their work integrates immunohistochemistry, tissue microarray analysis, and molecular profiling to identify biomarkers with diagnostic and prognostic relevance.
Professor Sangkun Kim's research lab focuses on innovation, strategic management, and institutional dynamics in organizational and economic contexts. The lab explores how firms leverage internal and external resources—particularly slack resources and technological search strategies—to drive innovation, with an emphasis on the interplay between diversification, resource types, and R&D strategies. It also investigates individual-level creativity, social networks, and decision-making biases in entrepreneurship, as well as policy design in social protection systems such as basic income. The lab integrates theoretical frameworks like the resource-based view, institutional theory, and cognitive psychology to address real-world challenges in innovation, competitiveness, and social policy.
Professor Sung-Hoon Kim's research lab specializes in biomaterials and dental implantology, with a strong focus on the mechanical behavior, surface modification, and long-term performance of monolithic zirconia in dental restorations. The lab investigates critical factors such as particle abrasion protocols, cement thickness, and finishing techniques that influence bond strength, fracture resistance, and surface durability. Additionally, the lab extends its research into socio-educational and labor market dynamics, particularly examining the impact of youth volunteering, non-standard employment during college, and social networks on future workforce outcomes. This interdisciplinary approach bridges materials science with social science to improve both clinical dental outcomes and broader societal well-being.