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 Jeong Ik-soo's research lab specializes in biomedical engineering and anesthesiology, focusing on clinical anesthetic techniques, hemodynamic stability in critical conditions, and the development of advanced medical devices. The lab investigates innovative anesthetic strategies—such as combined spinal-epidural anesthesia and insulin-based therapies for bupivacaine toxicity—while also exploring physiological risks in airway management. Additionally, the lab contributes to nanoelectronics through the design of high-performance MOSFETs with multibridge channel structures for next-generation semiconductor applications. These diverse research directions reflect a strong integration of clinical medicine and cutting-edge technology.
Professor Jin Soo Park's research lab specializes in first-principles theoretical methods for electron-phonon and electron-defect interactions in quantum materials. The lab develops advanced ab initio frameworks to accurately describe long-range electron-phonon coupling, including dipole and quadrupole interactions, enabling quantitative predictions of transport, spin dynamics, and carrier mobility in semiconductors and correlated electron systems. A key focus is extending first-principles approaches to include relativistic spin-flip processes and high-field electron dynamics, bridging the gap between electronic structure theory and device-relevant phenomena. The lab also pioneers methods for computing electron-impurity interactions with full many-body consistency, enhancing the predictive power for doped and defective materials.
Professor Yongil Cho's research lab specializes in biomedical informatics and artificial intelligence applications in healthcare, with a focus on improving diagnostic accuracy and clinical decision-making. The lab conducts population-based cohort studies to evaluate drug safety and cardiovascular risk, particularly concerning arrhythmias associated with antibiotic use. It also develops AI-driven tools for medical image analysis, such as detecting pneumothorax in chest X-rays using neural networks, and investigates viral etiologies of pediatric gastroenteritis. Additionally, the lab contributes to the validation of AI-enhanced electrocardiography for early detection of acute myocardial infarction in emergency settings.
Professor Hoyoung Yoon's research lab specializes in digital media and communication studies, focusing on the societal impacts of online information ecosystems. The lab investigates the spread of misinformation—particularly in health and youth-related domains—on social media platforms such as YouTube and Instagram, using mixed-methods approaches combining deep learning, computer vision, text mining, and network analysis. A key research direction involves developing automated detection systems for sensitive content, such as sexualized portrayals in broadcast media or harmful health misinformation, to support policy and platform interventions. The lab also examines crisis communication failures and institutional engagement in science dissemination, especially during public health emergencies like the MERS and COVID-19 outbreaks.
Professor Kwanseo Park's research lab specializes in high-speed integrated circuit design, with a focus on advanced clock and data recovery (CDR) techniques, high-speed serial transceivers, and high-bandwidth memory (HBM) interfaces. The lab develops low-power, area-efficient, and high-performance analog and mixed-signal circuits for next-generation communication and memory systems, emphasizing innovative architectures for frequency acquisition, equalization, and jitter tolerance. Key research directions include referenceless CDR, PAM-4/NRZ transmitters, and signal integrity solutions for high-density interconnects.
Professor Ji-yeon Byun's research lab specializes in photodynamic therapy (PDT) and its immunomodulatory effects in dermatological conditions. The lab investigates the molecular mechanisms underlying cytokine modulation—particularly TGF-β1 and IL-10—following PDT using 5-aminolevulinic acid (ALA) and intense pulsed light (IPL) in skin cells such as HaCaT keratinocytes and fibroblasts. A key focus is understanding how sublethal PDT doses influence immune responses rather than inducing cell death, with applications in inflammatory skin disorders like psoriasis, acne, and lichen sclerosus. The lab also examines metal allergens in cosmetics and consumer products, particularly nickel and cobalt, to address the rising prevalence of contact dermatitis in Korea.
Professor Hyeon-Woo Lee's research lab focuses on molecular and cellular mechanisms underlying bone metabolism, with a particular emphasis on osteoblast differentiation and the epigenetic regulation of osteogenic gene expression. The lab investigates signaling pathways involving adiponectin, HDACs, and transcription factors such as Runx2, as well as the impact of environmental factors like air pollutants (PM₂.₅, NO₂) on bone and lung health. Additionally, the lab explores the role of bioactive compounds such as berberine in promoting bone formation and preventing osteoporosis. Recent work also extends into neurobiology, particularly the functional characterization of the medial habenula in brain circuits related to behavior and psychiatric disorders.
Professor Seo-Yeon Park's research lab specializes in advanced materials for optoelectronic and biomedical applications, with a strong focus on organic semiconductors, thermally activated delayed fluorescence (TADF) emitters, and sustainable biopolymer utilization. The lab develops novel polymers and small molecules for high-performance polymer solar cells and OLEDs, emphasizing solution-processable materials with enhanced efficiency and stability. Additionally, the lab explores the valorization of agricultural byproducts—such as cabbage waste—into functional bio-based materials, including water-soluble dietary fibers, through enzymatic conversion. These interdisciplinary efforts bridge materials science, renewable energy, and green chemistry.
Professor Lee Junbok's research lab specializes in construction automation, robotics, and safety technology, with a strong focus on developing innovative solutions to enhance productivity and safety in the construction industry. The lab explores BIM-based visual progress control systems, labor productivity modeling, and the application of advanced technologies such as Large Language Models (LLMs) in construction and healthcare. A key research direction involves automating hazardous construction tasks—particularly trenching and pipe laying—through robotic systems to reduce human exposure to dangerous working conditions. The lab also investigates material behavior in construction, such as bond performance of FRP rebars and particulate emissions from cooking processes, reflecting a multidisciplinary approach to engineering and environmental safety.
Professor Hye Yeon Koo's research lab focuses on preventive medicine and population health, with a strong emphasis on lifestyle-related risk factors for chronic diseases. The lab investigates the impact of alcohol consumption patterns, smoking, and behavioral interventions on the incidence of cancer and cardiovascular disease, particularly in large-scale population cohorts. Using national health insurance databases and digital health tools, the lab develops and evaluates eHealth interventions to improve disease management and prevention outcomes. Their work bridges epidemiological research with digital health innovation to promote evidence-based public health strategies.
Professor Seong Oh Park's research lab specializes in microsurgical reconstruction, with a primary focus on flap anatomy, venous hemodynamics, and innovative techniques in flap surgery for reconstructive outcomes. The lab investigates the vascular and venous architecture of flaps—particularly the deep inferior epigastric perforator (DIEP) and transverse rectus abdominis myocutaneous (TRAM) flaps—to improve surgical precision and reduce complications such as venous congestion. Research also extends to pediatric tissue expansion and nerve reconstruction, including cross-face nerve grafting, emphasizing functional and aesthetic restoration in complex reconstructive cases.
Professor Bong-yeon Jeong's research lab specializes in advanced membrane technologies and sustainable water treatment solutions, focusing on the removal and recovery of emerging contaminants and valuable resources from water and wastewater. Key research directions include the development of functional membranes for ammonia recovery, volatile fatty acid extraction, and the advanced degradation of persistent pollutants like PFAS using photo/electrochemical and photocatalytic methods. The lab emphasizes innovative materials design—such as electrically conductive membranes and multifunctional membrane contactors—aimed at achieving energy efficiency, resource recovery, and environmental remediation.
Professor Young-Chun Kim's research lab specializes in the intersection of technology management, innovation economics, and academic technology commercialization. The lab investigates key factors influencing the successful licensing and market deployment of university-originated inventions, with a focus on patent timing, relational networks, and valuation methodologies. Research directions include the impact of patent allowance timing on licensing performance, the role of collaborative networks among inventors, technology managers, and patent attorneys, and the development of data-driven models—such as random forest algorithms—for valuing early-stage technologies. The lab’s work bridges gaps between academic research, industry application, and policy by emphasizing empirical analysis of real-world technology transfer processes.
Professor Jeongju Jang's research lab specializes in information systems and technology adoption, with a strong focus on user-centered design in electronic commerce (EC). The lab investigates how media richness, information system congruence, and contextual factors influence user behavior, satisfaction, and technology utilization. Key research directions include IT acceptance, consumer interaction with product information, and the role of contextual awareness in mobile information systems, particularly in enhancing perceived value in dynamic environments such as mobile advertising.
Professor Hee-Sung Lee's research lab specializes in surgical oncology, with a primary focus on gastrointestinal malignancies, particularly colorectal liver metastasis, biliary tract cancer, and pancreatic cancer. The lab investigates minimally invasive and curative surgical techniques such as radiofrequency ablation, hepatectomy, and transduodenal ampullectomy, aiming to optimize patient outcomes through evidence-based comparisons of surgical modalities. A key research direction involves understanding the biological pathways of lymphatic metastasis in pancreatic cancer, especially in left-sided tumors, and evaluating the impact of extended lymph node dissection on survival. The lab also explores novel biomarkers, such as microbiome alterations in biliary tract disease, to improve early diagnosis and personalized treatment strategies.
Professor Ji Hong Kim's research lab focuses on ophthalmic and biomedical applications of advanced materials and artificial intelligence, with a strong emphasis on glaucoma, meibomian gland dysfunction, and systemic disease-related eye complications. The lab investigates the impact of topical medications and systemic conditions like lupus on ocular health, while also pioneering innovations in bioelectronic materials such as ion-conducting gels for medical devices. Additionally, the lab leverages AI and data analytics to uncover emerging trends in biomedical research and healthcare technologies.
Professor Woo-Yeol Baek's research lab specializes in biomedical engineering and plastic surgery, focusing on implant-based breast reconstruction, tissue engineering, and advanced biomaterials. The lab investigates the long-term outcomes of breast implants, explores innovative scaffolds like polycaprolactone and acellular dermal matrix for breast tissue restoration, and examines the role of public diplomacy and economic security in international relations. A key emphasis is placed on improving patient satisfaction and reducing complications through evidence-based surgical techniques and novel biomaterial applications.
Professor Seon Namgung's research lab specializes in nanobiosensors and nanoelectronics, focusing on the integration of carbon nanotubes and 2D materials with biological systems to create highly sensitive, selective, and biologically inspired sensing platforms. The lab pioneers the use of carbon nanotube networks and field-effect transistors to monitor biomolecular interactions at ultra-low concentrations, enabling applications in food quality monitoring, taste sensing, and neural interface engineering. A key research direction involves mimicking biological sensory systems—such as the canine olfactory system and human taste receptors—using nanomaterial-based transistors for real-time, label-free detection of biomarkers and volatile organic compounds.
Professor Yong Joo Park's research lab specializes in educational psychology and learning science, with a focus on innovative assessment methods and active learning strategies in educational settings. The lab investigates how computerized testing systems—particularly hybrid formats combining short-answer and multiple-choice questioning—can enhance student learning, critical thinking, and knowledge transfer. Research also explores the cognitive mechanisms underlying attention and memory, such as negative priming, and applies these insights to improve teaching methodologies in both K-12 and higher education, including dental and medical training. The lab emphasizes evidence-based approaches to curriculum design, especially through technology-enhanced learning and writing-to-learn interventions.
Professor Young-Pil Choi's research lab specializes in mathematical analysis of kinetic equations and their hydrodynamic limits, with a focus on active particle systems, self-organized dynamics, and kinetic-fluid interactions. The lab investigates the well-posedness, large-time behavior, and asymptotic limits of equations such as the Vlasov–Fokker–Planck, BGK, and Euler–Poisson systems, particularly in the context of alignment, diffusion, and nonlocal interactions. A central theme is the rigorous derivation of macroscopic models from microscopic particle dynamics, using tools from Wasserstein gradient flows, energy estimates, and compactness methods. The lab also develops and analyzes decentralized control laws for multi-agent systems to achieve consensus and spatial pattern formation.