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 Jong-min Na's research lab specializes in criminology, criminal justice, and public policy, with a strong focus on youth delinquency, desistance from crime, and the long-term impacts of social and educational interventions. The lab investigates how factors such as self-control, social bonds, school engagement, and co-production in public services shape individual behavior and public safety outcomes. Drawing on longitudinal data and experimental designs, the lab explores the interplay between individual development, institutional responses (e.g., school policing, crisis management), and systemic factors in shaping crime and justice outcomes.
Professor Dong-Woon Noh's research lab specializes in environmental economics and climate policy analysis, with a primary focus on measuring and evaluating greenhouse gas (GHG) emission abatement costs, energy efficiency, and the effectiveness of market-based environmental instruments. The lab conducts empirical studies using firm-level and industry-level data to assess the performance of emissions reduction policies, including emissions trading schemes, Clean Development Mechanism (CDM) projects, and post-Paris Agreement cooperative mechanisms such as Article 6.2 and 6.4. Key research directions include the estimation of marginal abatement costs, greenhouse gas emission efficiency (GEE), and productivity growth under environmental constraints using advanced econometric and productivity analysis techniques such as stochastic frontier analysis and the Malmquist-Luenberger index.
Professor Kang-pyo Lee's research lab focuses on the molecular mechanisms underlying chronic diseases, with a primary emphasis on cancer, cardiovascular disorders, and neurodegenerative diseases such as Alzheimer’s disease. The lab investigates the protective roles of natural compounds—particularly bioactive phytochemicals like monoterpenes, thymol, piperine, and extracts from black chokeberry—in modulating oxidative stress, inflammation, and cellular signaling pathways. Key research directions include the prevention and therapeutic potential of physical activity and natural products in sarcopenia, cachexia, atherosclerosis, glioma metastasis, and neurodegeneration.
Professor Kyu-Seok Kang's research lab specializes in forest genetics and tree breeding, with a strong focus on reproductive biology, genetic diversity, and quantitative genetics in conifer species such as *Pinus densiflora*, *P. thunbergii*, and *Quercus serrata*. The lab investigates fertility variation, clonal differences in strobilus production, and the impact of selection strategies on genetic gain and gene diversity in seed orchards. Using statistical and population genetic approaches, including status number and variance components analysis, the lab aims to optimize tree breeding programs for sustainable forest management. Their work bridges ecological data with breeding applications to enhance both productivity and genetic resilience in forest trees.
Professor HunSeok Oh's research lab specializes in human resource development (HRD), with a strong focus on competency-based organizational development, professional identity formation, and the cultivation of interdisciplinary talent. The lab explores how individual capabilities, career decision-making, and learning experiences shape professional growth, particularly in high-stakes fields such as insurance and automotive sales. It also investigates the dynamics of interdisciplinary innovation and the transformation of HRD paradigms in response to evolving workplace demands and generational shifts.
Professor Yonghwan Kim's research lab specializes in critical care medicine and clinical toxicology, focusing on early prediction of patient outcomes in severe medical emergencies such as cardiac arrest, organophosphate poisoning, and paraquat or glyphosate surfactant intoxication. The lab employs clinical scoring systems (e.g., SOFA, APACHE II, SAPS II), biomarkers (e.g., neuron-specific enolase, lactate), and advanced imaging (e.g., optic nerve sheath diameter) to improve risk stratification and guide intensive care decisions. A key research direction involves integrating physiological parameters and laboratory markers with neurological prognostication tools to enhance outcomes in post-resuscitation and poisoned patients. The lab’s work bridges emergency medicine, critical care, and toxicology with a strong emphasis on evidence-based prediction models.
Professor Jeong Eunseok's research lab specializes in minimally invasive gynecologic surgery, with a focus on laparoscopic and robotic-assisted techniques for gynecologic malignancies and benign gynecologic conditions. The lab investigates surgical outcomes, feasibility, and learning curves in procedures such as laparoscopic staging for ovarian cancer, sentinel lymph node mapping, and laparoscopic myomectomy for large uterine fibroids. Additionally, the lab explores the interplay between reproductive physiology and immune function, particularly in the context of menstrual cycle-related immune modulation and endometriosis. The research integrates clinical outcomes with advanced surgical techniques to improve patient care and surgical precision.
Professor Bo-Young Park's research lab specializes in medical litigation and patient safety, with a focus on aesthetic and plastic surgery. The lab investigates informed consent, malpractice claims, and surgical complications such as infections, aiming to identify legal trends and improve clinical practices. Research also extends to lifestyle factors affecting cognitive health and cancer screening utilization in the Korean population. The lab combines legal precedent analysis with public health data to inform patient-centered care and reduce medical disputes.
Professor Junki Kim's research lab specializes in advanced nanomaterials and optoelectronic devices, with a focus on heterostructured semiconductor nanocrystals, quantum computing qubits, and two-dimensional transition metal dichalcogenides. The lab investigates the fundamental principles governing charge carrier dynamics, morphology control, and optical properties at the nanoscale to enable next-generation applications in quantum technologies, photovoltaics, and thermoelectric materials. Key research directions include defect engineering in III-V/II-VI nanocrystals, Mie scattering in plasmonic nanostructures, and the development of low-dimensional materials for sustainable energy and information technologies.
Professor Soo-Cheon Park's research lab specializes in cerebrovascular interventions and neurovascular diseases, with a focus on endovascular treatments for intracranial aneurysms, stroke, and intracranial atherosclerosis. The lab investigates stent-assisted coiling, thrombectomy techniques using devices like the Solitaire stent, and the long-term safety and efficacy of various stents (e.g., self-expandable and balloon-expandable) in preventing restenosis and improving clinical outcomes. Additionally, the lab explores neuroimaging biomarkers, such as quantitative susceptibility mapping (QSM) and gray matter volume changes, to understand iron accumulation and neurodegeneration in aging and early Alzheimer’s disease.
Professor Sungmin Son's research lab specializes in advanced energy systems and micro-electromechanical technologies, with a strong focus on supercritical CO2 (S-CO2) power cycles for next-generation nuclear and clean energy applications. The lab investigates innovative reactor designs—particularly micro modular reactors (MMRs) and direct-cycle systems—emphasizing system efficiency, passive safety, and performance under dynamic operational conditions such as primary frequency control. Additionally, the lab explores advanced manufacturing techniques for high-yield, precision microfabrication of electronic components, including vibration-assisted dicing for multi-layer ceramic capacitors, and integrates computational modeling with machine learning for system optimization.
Professor Dukhyun Seong's research lab specializes in diagnostic and interventional radiology, with a focus on peripheral nerve disorders, musculoskeletal imaging, and image-guided interventions. The lab investigates rare neurological conditions such as intraneural ganglion cysts, dystonic muscle disorders, and vasculitic myositis using advanced imaging techniques like PET/CT and MRI. Key research directions include improving the accuracy of nerve localization during interventions, understanding the spread of injectates in peripheral nerves, and evaluating treatment outcomes in complex peripheral nerve pathologies. The lab also explores the role of neuroimaging in early diagnosis and management of systemic diseases presenting with neuromuscular symptoms.
Professor Gehoon Chung's research lab specializes in dental and sensory neuroscience, focusing on the molecular and cellular mechanisms underlying tooth pain and peripheral nociception. The lab investigates ion channels, particularly temperature-sensitive TRP channels and voltage-gated calcium channels, in dental pain transmission and modulation. A key research direction involves developing novel, painless drug delivery systems—such as dissolving microneedles for local anesthesia—using biocompatible materials. The lab also explores sex differences in pain perception, with a focus on estrogen’s modulatory effects on nociceptive receptors like TRPV1 and P2X3.
Professor Eunjin Lee's research lab focuses on the molecular mechanisms underlying retinal degenerative diseases, particularly retinitis pigmentosa (RP) and achromatopsia (ACHM), with a central emphasis on the role of the unfolded protein response (UPR) and endoplasmic reticulum (ER) stress in photoreceptor homeostasis. The lab investigates key regulators such as activating transcription factor 6 (ATF6) and their impact on protein quality control, neuronal survival, and glial responses in retinal degeneration. Using genetically engineered animal models, including P23H-KI and S334ter-line3 rats, the lab explores therapeutic strategies targeting UPR, extracellular matrix remodeling, and neuroprotection. Notably, the lab has uncovered novel links between ATF6 dysfunction and non-ocular phenotypes, such as progressive hearing loss, expanding the understanding of ATF6's systemic roles.
Professor Hyun Jang Jeong's research lab specializes in orthopedic surgery and shoulder arthroplasty, with a strong focus on rotator cuff repair techniques, implant biomechanics, and postoperative complications. The lab investigates clinical outcomes, structural integrity, and long-term functional recovery following arthroscopic rotator cuff repair, while also exploring novel techniques such as transosseous anchorless repair to minimize complications. A key area of interest is the identification and prediction of rare but serious postoperative conditions like pseudoparalysis and osteonecrosis of the humeral head, using large-scale clinical data and biomechanical modeling. The lab integrates clinical research with advanced imaging and surgical outcome analysis to improve patient-centered care in shoulder surgery.
Professor In Park's research lab specializes in shoulder and shoulder joint surgery, with a primary focus on rotator cuff repair, anterior shoulder instability, and bony Bankart lesions. The lab investigates the impact of surgical timing, rehabilitation protocols, and anatomical factors—such as glenoid bone loss and Hill-Sachs lesions—on clinical outcomes and recurrence rates. Using randomized controlled trials and advanced imaging techniques, the lab aims to optimize surgical decision-making and improve long-term functional recovery.
Professor Andreas Heinrich's research lab specializes in computer vision and machine learning applications for medical image analysis, particularly in forensic odontology and biomedical diagnostics. The lab focuses on developing automated systems for human identification using panoramic dental radiographs (orthopantomograms), integrating advanced feature detection and deep learning for age estimation and image matching. Additionally, the lab explores biophysical and immunological mechanisms in infectious diseases and investigates superconducting thin films for electronic applications.
Professor Won Jun Seo's research lab specializes in advanced surgical oncology and biomaterials science, with a strong focus on improving outcomes in gastric cancer treatment and developing functional polyurethane foams. The lab investigates minimally invasive surgical techniques—such as laparoscopic and robotic gastrectomy—for locally advanced and early-stage gastric cancer, emphasizing long-term survival, lymph node retrieval, and surgical safety. Additionally, the lab explores innovative biomaterials, particularly rigid polyurethane foams, for tailored mechanical and thermal properties through controlled formulation and reactivity engineering. These dual research directions reflect a commitment to advancing both clinical surgical strategies and material science applications in medicine.
Professor Joohyung Kim's research lab specializes in the development of advanced nanomaterials for next-generation energy storage and conversion technologies. The lab focuses on designing high-performance anode and cathode materials for sodium-ion batteries, lithium-sulfur batteries, and rechargeable aqueous zinc-ion batteries, with an emphasis on nanostructured composites based on transition metal chalcogenides, oxides, and heteroatom-doped materials. Key research directions include enhancing electrochemical stability, improving ion diffusion kinetics, and enabling high-capacity, long-cycle-life batteries through innovative synthesis strategies such as hydrothermal synthesis and carbothermal annealing. The lab also explores advanced electrocatalysts for fuel cells, particularly 3D nanostructured platinum films with enhanced durability and activity.
Professor Sang-hee Kwon's research lab specializes in digital media behavior, focusing on user interaction, identity formation, and communication dynamics in online environments. The lab investigates how individuals engage with user-generated content platforms such as blogs, online communities, and comment journalism, emphasizing interactivity, self-construal, and audience perceptions. Key research directions include the cognitive and emotional dimensions of parasocial interaction in television, the role of motivation and satisfaction in social media use, and the structural and functional characteristics of online communication genres. The lab employs mixed-methods approaches, combining surveys and content analysis to explore the evolving nature of digital communication and user experience.