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 Dong Hee Lim's research lab specializes in ophthalmic and vision science, focusing on the intersection of artificial intelligence, biomedical imaging, and population health. The lab investigates the early detection and risk prediction of ocular and systemic diseases—particularly cardiovascular disease and myopia—using multimodal data, including fundus photographs, clinical records, and genetic factors. A key research direction involves leveraging AI and statistical modeling, such as Bayesian network meta-analysis and Cox regression, to evaluate ophthalmic interventions and long-term health outcomes. The lab also explores the links between vision impairment, cognitive decline, and neurodegenerative diseases using large-scale national health databases.
Professor Chan Beom Choi's research lab specializes in autoimmune diseases, with a focus on identifying genetic susceptibility factors and understanding the clinical and immunological features of conditions such as rheumatoid arthritis, systemic lupus erythematosus, and vasculitides. The lab conducts large-scale genetic studies, including genome-wide association studies (GWAS) and replication analyses, to uncover disease-associated loci in the Korean population. It also investigates the impact of biologic therapies—particularly TNF inhibitors—on the risk of comorbid infections like tuberculosis, integrating clinical epidemiology with molecular genetics.
Professor Ki Won Song's research lab focuses on the biological effects of non-thermal atmospheric pressure plasma (NTAPP) and electromagnetic fields (EMF), particularly their impact on cancer cells, stem cells, and cellular signaling pathways. The lab investigates the selective induction of apoptosis in p53-mutated cancer cells using NTAPP, explores the role of novel genes in cell cycle regulation, and examines the influence of radiofrequency and gradient EMFs on cell proliferation and genotoxicity. A key emphasis is on developing safe and effective plasma-based therapies and understanding the underlying mechanisms of EMF exposure on human cells, especially stem and cancer cells.
Professor Wonsuk Park's research lab specializes in the application of artificial intelligence and advanced imaging technologies in dentistry, with a focus on improving diagnostic accuracy for complex oral conditions. The lab conducts clinical-oriented research using deep learning algorithms to detect and classify dental implants, temporomandibular disorders, and soft tissue pathologies from panoramic and periapical radiographs. They also explore telemedicine solutions using mobile phone cameras and portable imaging devices to support emergency dental care and remote diagnosis. Their work bridges clinical dentistry with digital innovation, emphasizing real-world applicability in diverse clinical settings.
Professor Jaejin Lee's research lab specializes in advanced computing architectures, nanomaterials for electronic and photonic applications, and innovative signal processing techniques. The lab focuses on optimizing heterogeneous computing systems through OpenCL runtime frameworks and hardware-software co-design, while also exploring functional nanomaterials such as hexaferrites and chiral nanoporous films for next-generation antennas and optical devices. Additionally, the lab develops intelligent data integrity solutions using error control coding in image watermarking and secure authentication. These interdisciplinary efforts bridge computer architecture, materials science, and signal processing to enable high-performance, energy-efficient, and secure computing systems.
Professor Jae Young Shin's research lab focuses on translational biomedical research with an emphasis on aging, frailty, and chronic disease management. The lab investigates the immunomodulatory effects of natural compounds—such as ginseng polysaccharides—on innate immunity and cancer surveillance, while also exploring novel dermatological therapies for conditions like vitiligo. Additionally, the lab examines lifestyle and physiological factors, including smoking, sleep disorders (e.g., OSA), and physical fitness, in relation to age-related health outcomes. Recent work also extends into the evaluation of artificial intelligence applications in healthcare, particularly large language models in medical contexts.
Professor Sang Duk Hong's research lab specializes in otorhinolaryngology and head and neck surgery, with a strong focus on functional and quality-of-life outcomes in endoscopic and microscopic ear, nose, and skull base surgery. The lab investigates the impact of surgical techniques—particularly endoscopic versus microscopic approaches—on sinonasal health-related quality of life, olfactory function, and postoperative complications such as hyposmia and hearing loss. Key research directions include optimizing surgical approaches to preserve mucosal integrity, monitoring sedation depth during procedures like DISE, and understanding predictors of patient satisfaction and recovery. The lab also explores systemic effects of surgical interventions, such as cortisol modulation via topical agents, highlighting a translational approach to improving postoperative outcomes.
Professor Ji-young Kim's research lab focuses on sustainable biotechnology and environmental health, with key research directions in natural product-based biocontrol agents for plant pathogens, bioactive essential oils with antioxidant and anti-inflammatory properties, and the development of low-cost electrocatalysts for green hydrogen production. The lab integrates biological, chemical, and educational approaches, addressing challenges in agriculture, human health, and renewable energy. Recent work emphasizes the application of cyanobacterial extracts in disease suppression, plant-derived essential oils in dermatological and anti-inflammatory applications, and advanced electrocatalysts for water electrolysis.
Professor Sangil Min's research lab specializes in clinical pharmacology and translational medicine with a focus on optimizing immunosuppressive therapy in kidney transplantation. The lab investigates pharmacogenomics, particularly CYP3A5 polymorphisms, to personalize tacrolimus dosing and improve graft outcomes. It also explores medication adherence, intrapatient variability of drug levels, and vascularization strategies in tissue engineering to enhance long-term allograft survival and function. Additionally, the lab contributes to improving vascular access for hemodialysis and advancing deceased organ donation systems in Korea.
Professor Jihun Jeong's research lab specializes in advanced energy harvesting technologies, with a primary focus on triboelectric nanogenerators (TENGs) and hybrid energy conversion systems. The lab explores innovative mechanisms such as ion-enhanced field emission, flutter-driven TENGs, and water-based TENGs to overcome limitations in output power and environmental adaptability. Key research directions include structural design optimization for multifunctional energy harvesting, surface engineering for superhydrophobicity and charge control, and the integration of TENGs with renewable energy sources like wind and water flow.
Professor Jae-Hyun Ahn's research lab focuses on digital innovation, e-commerce, and technology-enabled business models, with a strong emphasis on consumer behavior, trust in online platforms, and the strategic development of emerging technologies such as the Internet of Things (IoT). The lab investigates how digital environments shape decision-making, attention allocation, and trust formation, particularly in contexts involving social commerce, online marketplaces, and health technology. It also explores risk management and scenario planning in new service development, especially within telecommunications and healthcare applications. The research integrates empirical methods such as eye-tracking, field experiments, and survey-based analysis to build theoretical frameworks and practical strategies for digital business success.
Professor Byeongcheol Kim's research lab specializes in bioelectrochemical systems and advanced composite materials, with a focus on microbial fuel cells (MFCs) for sustainable energy conversion and structural optimization of variable-stiffness composites. The lab investigates extracellular electron transfer mechanisms, voltage reversal mitigation strategies, and system-level performance enhancement in MFCs using innovative approaches such as assistance current and tailored fibre paths. Additionally, the lab explores advanced manufacturing techniques like continuous tow shearing to improve the mechanical efficiency and defect control in carbon fibre-reinforced composites. Their work bridges environmental biotechnology and materials engineering to develop efficient, scalable solutions for energy recovery and lightweight structural systems.
Professor Jin Kim's research lab specializes in advanced minimally invasive surgical techniques for colorectal cancer, with a strong focus on robotic and laparoscopic rectal surgery. The lab investigates both short-term surgical outcomes and long-term oncologic results, aiming to optimize patient recovery and survival. Recent work also explores the integration of artificial intelligence, such as ChatGPT, in clinical decision-making for colorectal cancer management. The lab emphasizes surgical innovation, including techniques to preserve vascular anatomy and improve outcomes in complex rectal resections.
Professor Kuem-Sun Han's research lab focuses on psychosocial and behavioral health factors influencing stress, well-being, and health-promoting behaviors among university and nursing students. The lab investigates the interplay between self-efficacy, health-promoting behaviors, emotional regulation, and stress symptoms, with an emphasis on non-pharmacological interventions such as meditation and yoga. Research directions include stress-related disorders, psychological resilience, and the role of mind-body practices in mental and physical health promotion.
Professor Seung-Tae Bae's research lab focuses on developmental biology and cancer biology, with a central emphasis on transcriptional regulation and signaling pathways in organ development and glioblastoma (GBM) pathogenesis. The lab investigates key transcription factors such as Tcf21 and signaling molecules like PDGF receptors and neurofibromin 1 (Nf1) in epicardial lineage commitment and epithelial-to-mesenchymal transition during heart development. In cancer research, the lab explores molecular mechanisms of therapeutic resistance in GBM, particularly the roles of DAB2IP and neuroligin 3 in regulating cancer stem cell properties and autophagy. The lab employs advanced genetic tools, including inducible Cre mouse models, to dissect cell lineage dynamics and signaling networks in vivo.
Professor Kim, Tae-Seong's research lab specializes in intelligent health technologies, focusing on wearable sensors, medical imaging, and AI-driven diagnostics for personalized and proactive healthcare. The lab develops advanced signal processing and machine learning techniques for human activity recognition in smart homes, particularly for elderly and disabled individuals, using depth imaging and sensor data. Another key focus is on computational modeling of biomedical systems, including transcranial stimulation and cancer-targeted drug design, leveraging finite element modeling and structural bioinformatics. The lab integrates AI, especially deep learning, for rapid and accurate blood cell classification and therapeutic target discovery.
Professor Hwancheol Son's research lab specializes in urological and sexual health, with a strong focus on the epidemiology, risk factors, and psychological impacts of male and female sexual dysfunctions in the Korean population. The lab investigates conditions such as premature ejaculation, erectile dysfunction, benign prostatic hyperplasia, and female sexual dysfunction, often utilizing large-scale population-based surveys and validated clinical tools. A key direction involves understanding the interplay between metabolic syndrome, lifestyle factors, and urological disorders, as well as evaluating patient-centered interventions like self-catheterization education programs.
Professor Seong-Joon Kim's research lab specializes in neuro-ophthalmology and autoimmune inflammatory optic neuropathies, with a focus on understanding the clinical features, diagnostic criteria, and long-term outcomes of conditions such as ethambutol-induced optic neuropathy, chronic relapsing inflammatory optic neuropathy (CRION), and myelin oligodendrocyte glycoprotein antibody-associated disease (MOGAD). The lab investigates the role of autoantibodies, particularly MOG-IgG, in disease progression and treatment response, and explores prognostic factors in spinal and cervical spine surgery-related visual and functional outcomes. The research also includes rare conditions like chorioretinal involvement in chronic granulomatous disease (CGD), emphasizing early detection and long-term monitoring.
Professor Jae-young Jang's research lab specializes in advanced endoscopic technologies and gastrointestinal disease management, with a focus on improving the early detection and treatment of gastric neoplasms. The lab investigates innovative endoscopic techniques such as narrow-band imaging, magnifying endoscopy, and endoscopic submucosal dissection (ESD) to enhance diagnostic accuracy and therapeutic outcomes. Research also extends to cytoprotective mechanisms in H. pylori-induced gastritis and the development of novel hemostatic strategies for peptic ulcer bleeding.
Professor Jeong Hye Hwang's research lab focuses on integrative health, particularly the use and implications of complementary and alternative medicine (CAM) across diverse patient populations. The lab investigates CAM use among pregnant women, cancer patients, infertile individuals, and ethnic minorities, emphasizing patient-doctor communication, cultural competence, and the safety of CAM use in clinical settings. Research also includes rare infectious diseases like pulmonary nocardiosis, highlighting diagnostic challenges in immunocompromised patients. The lab advocates for improved healthcare provider awareness and evidence-based integration of CAM into conventional care.