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 Hyung-Seok Seo's research lab specializes in perioperative critical care and clinical anesthesiology, focusing on optimizing surgical outcomes through advanced hemodynamic monitoring, airway management, and fluid therapy. The lab investigates physiological challenges in complex surgical settings—such as intracranial surgery, robot-assisted laparoscopy, and liver donation—emphasizing patient safety, hemodynamic stability, and prevention of postoperative complications. Key research directions include the use of dynamic hemodynamic indices (e.g., arterial elastance), prediction of difficult airway, and the role of agents like mannitol in minimizing blood loss and organ injury. The lab integrates clinical decision-making with evidence-based protocols to improve outcomes in high-risk surgical populations.
Professor Jinmyung Seok's research lab specializes in nonlinear partial differential equations, with a focus on elliptic and fractional Schrödinger-type equations. The lab investigates the existence, symmetry, regularity, and asymptotic behavior of solutions to nonlinear Choquard, Chern-Simons-Schrödinger, and generalized nonlinear Schrödinger equations. A central theme is the analysis of ground states and mountain pass solutions under optimal or almost optimal nonlinearities, particularly in the context of fractional Laplacians and singularly perturbed problems.
Professor Young-chul Ghim's research lab specializes in experimental fusion energy science, focusing on turbulent plasma dynamics and diagnostics in magnetic confinement fusion devices such as the Mega Amp Spherical Tokamak (MAST). The lab develops advanced diagnostic techniques—particularly beam emission spectroscopy (BES) and Bayesian inference methods—to measure and model ion and electron temperature and density profiles, turbulence correlation, and transport phenomena. Key research directions include understanding critical balance in turbulence, the role of magnetic shear and equilibrium parameters in regulating turbulent transport, and the development of high-resolution imaging diagnostics for improved spatial and temporal resolution. The lab integrates experimental data with sophisticated forward modeling and statistical inference (e.g., Markov chain Monte Carlo) to extract reliable plasma profiles and turbulence characteristics.
Professor Sung-Min Cho's research lab specializes in interdisciplinary technologies at the intersection of human-computer interaction, biomedical engineering, and advanced materials. The lab focuses on developing immersive virtual reality systems for neurological rehabilitation—particularly virtual prism adaptation therapy (VPAT) to treat hemispatial neglect after stroke—while also advancing next-generation optoelectronic devices such as inverted polymer solar cells and white polymer light-emitting diodes. By integrating real-world physical interactions (e.g., pottery wheel simulation) with virtual environments, the lab pioneers intuitive, tangible user interfaces that bridge the physical and digital worlds. The lab’s work emphasizes practical applications in healthcare, energy efficiency, and human-centered technology design.
Professor Kyung-won Shim's research lab focuses on metabolic health, particularly the interplay between lifestyle factors, lipid metabolism, and obesity-related disorders. The lab investigates the impact of dietary components, probiotics, and functional foods—such as barley sprout extract—on blood lipid profiles and insulin resistance. A key research direction involves developing clinical tools to assess metabolic and body composition changes, including innovative models for estimating biological age based on body shape. The lab emphasizes translational research that bridges clinical parameters with preventive strategies for metabolic syndrome and cardiovascular disease.
Professor Yun-Sun Chung's research lab specializes in medical physics and radiation oncology, focusing on improving image-guided radiation therapy (IGRT) and treatment planning through advanced imaging systems and quality assurance. The lab investigates image quality characterization of novel imaging technologies such as HyperSight and Halcyon CBCT, as well as dosimetric and biological modeling for safer, more effective radiotherapy. Research also extends to radiobiological modeling, particularly thyroid iodine kinetics in populations with unique dietary profiles, and refractory materials in metallurgical processes, reflecting a multidisciplinary approach to radiation safety and treatment optimization.
Professor Kun Yung Kim's research lab specializes in interventional radiology and minimally invasive therapies, focusing on the development and evaluation of endovascular and endoluminal stents for treating malignant strictures and fistulas. The lab investigates drug-eluting and biodegradable stents to reduce restenosis and granulation tissue formation, with applications in the esophagus, urethra, and peripheral vasculature. Additionally, the lab explores innovative ablation techniques, such as cryoablation for lung nodules, and embolization strategies for degenerative joint diseases, emphasizing patient-centered palliative care and improved clinical outcomes.
Professor Daekyum Kim's research lab specializes in intelligent robotics and wearable assistive technologies, focusing on the development of soft and wearable robotic systems that enhance human mobility and dexterity. The lab integrates machine learning, sensor fusion, and biomechanical modeling to address challenges in control, sensing, and user intent recognition for applications ranging from hand rehabilitation to lower-limb exosuits. Key research directions include learning-based force estimation, real-time intention detection using vision and EMG signals, and robust 3D scanning for autonomous robotic platforms.
Professor Jee Yeon Lee's research lab focuses on psychological and behavioral health, particularly examining intergenerational violence, caregiving stress among older female caregivers (e.g., grandmothers), and the psychosocial factors influencing youth and family well-being. The lab investigates mediating mechanisms such as attitudes toward violence, anger regulation, and social support in shaping outcomes like dating violence and parenting stress. It also explores the impact of school libraries on academic achievement and the role of social determinants in educational and mental health disparities. The lab employs mixed-methods and structural equation modeling to analyze longitudinal and cross-sectional data from diverse family and educational contexts in South Korea.
Professor Young Hye Ko's research lab specializes in hematological malignancies, with a primary focus on the molecular pathology, clinical characteristics, and treatment outcomes of various lymphomas, including plasmablastic lymphoma, marginal zone B-cell lymphoma, NK/T-cell lymphoma, and angioimmunoblastic T-cell lymphoma. The lab integrates clinical oncology with molecular and imaging techniques, utilizing proteomics, immunohistochemistry, and advanced radiological modalities such as multidetector CT and MRI to improve diagnosis, risk stratification, and therapeutic strategies. Their work also explores the role of stress proteins like Hsp27 in vascular pathology, linking molecular mechanisms to disease progression in atherosclerosis.
Professor Lee Seong-min's research spans human resource management in East Asian contexts, corporate social responsibility (CSR) in global and national institutional frameworks, and privacy-preserving technologies in digital systems. His work explores the evolution of HR practices in Korea and East Asia under globalization and financial crises, analyzes institutional pressures shaping CSR models across Japan, Korea, China, and Taiwan, and develops technical platforms like πBox to address privacy challenges in app ecosystems. His research bridges socio-institutional dynamics with technological innovation, emphasizing the interplay between policy, culture, and digital governance.
Professor Joon-Il Lee's research lab specializes in high-energy nuclear physics, focusing on the study of strong interactions and collective phenomena in heavy-ion and proton-proton collisions using data from the ALICE experiment at CERN's Large Hadron Collider. The lab investigates quantum chromodynamics (QCD) effects such as the chiral magnetic effect, anisotropic flow, and short-range correlations in quark-gluon plasma, employing advanced femtoscopy and multi-particle correlation techniques. Their work also extends to precision measurements of vector meson production and internal control mechanisms in financial reporting, reflecting a multidisciplinary approach to complex systems and data analysis.
Professor Dongwook Kim's research lab specializes in the atomic-scale design and characterization of advanced 2D and heterostructured materials, with a focus on defect engineering, dopant clustering, and interfacial phenomena in graphene and transition metal oxides. The lab combines advanced electron microscopy, machine learning potentials, and spectroscopic techniques to explore topological quantum materials, resistive switching mechanisms, and novel 2D polymorphs in Zintl phases. Their work bridges fundamental materials physics with applications in nanoelectronics, spintronics, and next-generation energy devices.
Professor Hyoung Seok Kim's research focuses on civil law, with a particular emphasis on private law institutions such as guardianship, succession law, and liability for environmental damage. His work bridges domestic legal reform with comparative law, especially drawing on German and French civil law traditions to analyze and propose improvements in Korean legal frameworks. He also examines specialized areas like suretyship and payment mechanisms, particularly in international commercial transactions.
Professor Jae-Wook Park's research lab specializes in interventional electrophysiology, with a primary focus on optimizing catheter ablation strategies for atrial fibrillation. The lab investigates hemodynamic factors—such as left atrial pressure and stiffness—that influence ablation outcomes, as well as long-term renal and rhythm outcomes following ablation. They also explore advanced ablation technologies, including cryoballoon and high-power short-duration radiofrequency ablation, to improve procedural efficacy and safety. Their work integrates clinical outcomes with physiological and hemodynamic monitoring to refine patient selection and treatment protocols.
Professor Beom-Sik Tae's research lab specializes in urological epidemiology and health outcomes, with a focus on the long-term impact of genitourinary diseases and treatments on patient health. The lab investigates the epidemiology of urolithiasis, prostate cancer therapies such as androgen deprivation therapy, and their associations with cognitive dysfunction and quality of life. It also explores the clinical outcomes of urological interventions, including stent-related symptoms and the effects of medications like mirabegron. The lab leverages large national health databases to conduct population-based cohort studies, emphasizing real-world evidence in urology and preventive medicine.
Professor Hyow-Jung Lee's research lab focuses on urban and regional development, with a strong emphasis on demographic transitions, housing markets, and the socioeconomic dynamics shaping metropolitan areas. The lab investigates intergenerational differences in residential patterns, gentrification, and neighborhood change, particularly among young adults and low-income populations. It also explores financial inclusion through regulatory mechanisms like the Community Reinvestment Act and the role of technology in urban infrastructure, including blockchain applications in IoT and content delivery networks. The lab combines large-scale microdata, geospatial analysis, and institutional economics to address pressing urban policy challenges.
Professor Youngil Kwon's research lab specializes in high-energy nuclear physics, focusing on quantum chromodynamics (QCD) phenomena in heavy-ion and proton-nucleus collisions. Key research directions include femtoscopy to probe the space-time dynamics of particle emission sources, charmed hadron production in hadronic collisions, and isolated photon production in p–Pb and pp systems. The lab also develops advanced silicon sensor technologies for particle detectors, such as the Si Mini-Pad sensor for the PHENIX experiment, supporting precision measurements in heavy-ion physics.
Professor Suneung Kwon's research lab focuses on translational biomedical research with a strong emphasis on metabolic health, hematopoietic stem cell biology, and clinical immunogenomics. The lab investigates insulin resistance and metabolic syndrome using large-scale population studies, explores in vitro generation of red blood cells from human-induced pluripotent stem cells (hiPSCs) for addressing blood supply challenges, and applies clinical exome sequencing to improve diagnosis of inborn errors of immunity. Additionally, the lab contributes to clinical microbiology through rapid diagnostics, such as MALDI-TOF MS for MRSA typing and transfusion reaction surveillance.
Professor Nam Hyo-kyung's research lab focuses on pediatric endocrinology and metabolic disorders, with a strong emphasis on the long-term health implications of fetal and early-life programming. The lab investigates the interplay between growth, obesity, vitamin D metabolism, and autoimmune diseases such as type 1 diabetes in children. Key research directions include the pathogenesis of early-onset metabolic syndrome, the role of genetic polymorphisms in vitamin D metabolism, and the diagnosis and management of pediatric diabetes and precocious puberty.