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 Sang-Kyoung Kahng's research lab specializes in population health disparities, with a primary focus on the intersection of social determinants—such as socioeconomic status, education, and social relationships—and mental and physical health outcomes across the lifespan. The lab conducts longitudinal and structural equation modeling analyses using large-scale national and international datasets to examine how factors like income, gender, aging, and chronic conditions influence mental health (particularly depression), self-esteem, and healthcare utilization. A central theme is the life-course perspective, emphasizing how social and health trajectories evolve differently across age groups and demographic subgroups.
Professor Sae-jun Lee's research lab focuses on gastrointestinal and liver diseases, with a primary emphasis on hepatic encephalopathy, biliary tract cancer, and hepatic fibrosis. The lab investigates novel therapeutic strategies using pharmacological agents such as rifaximin and cordycepin, as well as molecular mechanisms involving matrix metalloproteinases (MMPs), oxidative stress, and NF-κB signaling in inflammatory and fibrotic conditions. Clinical and translational studies are central to the lab’s work, including randomized trials and endoscopic interventions for biliary stone disease. The research integrates molecular biology, cell culture models, and clinical data to explore disease mechanisms and treatment efficacy in Asian populations, particularly Koreans.
Professor Hak Chang's research lab specializes in microsurgical techniques and vascular augmentation strategies to improve tissue flap survival in reconstructive surgery. The lab investigates innovative methods such as arterial and venous supercharging, pharmacologic agents like tadalafil, and anatomical innovations using animal models to enhance perfusion and viability of flaps. A key focus is on optimizing surgical outcomes through hemodynamic and genomic insights, particularly in challenging cases like acral melanoma and flap failure. The lab integrates clinical applications with preclinical experimentation, emphasizing translational research in plastic and reconstructive surgery.
Professor Myung Hwa Kim's research lab specializes in perioperative medicine, with a focus on optimizing surgical outcomes through advanced anesthetic techniques and multimodal pain management. The lab investigates the impact of neuromuscular blockade depth, regional anesthesia, and adjuvant medications—such as lidocaine, magnesium, and dexmedetomidine—on postoperative recovery, stress response, and long-term outcomes in surgical patients. Key research directions include enhancing quality of recovery, reducing chronic pain, and improving physiological stability during and after surgery, particularly in colorectal and breast cancer procedures.
Professor Hye-yoon Lee's research lab focuses on translational cancer research, integrating molecular oncology, medical imaging, and surgical innovation. The lab investigates the role of microRNAs and tumor microenvironment components—such as type I collagen—in driving breast cancer progression and aggressiveness. It also explores radiogenomics using machine learning to predict molecular subtypes and prognosis from low-dose perfusion CT, and evaluates surgical safety through neuromonitoring in nerve-sparing procedures. The lab bridges basic science with clinical applications, particularly in improving outcomes for breast cancer and head and neck surgery.
Professor Si-Ho Kim's research lab focuses on infectious diseases, antimicrobial resistance, and clinical outcomes in hospitalized patients, with a particular emphasis on bloodstream infections, antibiotic stewardship, and vaccine safety. The lab investigates the epidemiology and pathogenesis of serious bacterial infections, including vancomycin-resistant Enterococcus and Staphylococcus aureus bacteremia, while evaluating the impact of antimicrobial use and host factors on patient mortality. Research also extends to vaccine-associated adverse events and the role of corticosteroids in severe infectious complications such as CAPA (COVID-19-associated pulmonary aspergillosis). The lab integrates clinical microbiology with epidemiological and statistical approaches to improve patient outcomes through evidence-based infection management strategies.
Professor Sungmo Jung's research lab specializes in thermodynamic and kinetic studies of iron and steelmaking processes, with a focus on slag-metal interactions, oxide behavior in high-temperature systems, and the recycling of steelmaking by-products. Key research directions include the thermodynamics of titanium and manganese oxides in slags, gasification behavior of metallurgical cokes, and the reduction of BOF slags for resource recovery. The lab employs advanced experimental techniques such as mass spectrometry, image analysis, and equilibrium measurements to understand reaction mechanisms and improve process efficiency in steelmaking and smelting reduction processes.
Professor Kim Sung-yun's research lab specializes in deep metric learning and representation learning, focusing on improving the semantic understanding of embeddings through advanced loss functions and structured supervision. The lab explores methods that bridge the gap between pair-based and proxy-based metric learning, enabling faster convergence and robustness to noisy data. A key research direction involves leveraging continuous and structured labels—such as image captions, scene graphs, and pose descriptions—to learn more nuanced similarity metrics. The lab also investigates knowledge transfer in embedding spaces, particularly through novel loss functions that preserve relational knowledge across domains.
Professor Jong-Sin Oh's research lab specializes in cardiovascular imaging and functional assessment, focusing on the early detection and management of coronary artery disease and heart failure. The lab investigates novel imaging techniques such as speckle-tracking echocardiography, RH-PAT, and coronary calcium scoring to evaluate endothelial function, myocardial viability, and infarct size. A key research direction involves evaluating the cardioprotective potential of metabolic modulators like exenatide and vitamin D3 in acute and chronic cardiovascular conditions. The lab integrates advanced imaging with clinical outcomes to improve risk stratification and therapeutic strategies in patients with stable angina, acute myocardial infarction, and heart failure.
Professor Hoi-soo Yoon's research lab specializes in pediatric hematology and oncology, with a strong focus on rare and complex hematologic disorders such as hemophagocytic lymphohistiocytosis (HLH), congenital and acquired coagulopathies, and pediatric hematopoietic stem cell transplantation (HSCT). The lab conducts nationwide retrospective studies to understand the clinical, genetic, and virologic factors influencing disease outcomes in children, particularly in the context of viral infections (e.g., EBV, CMV) and immune dysregulation. The research also extends to vascular tumors like infantile hemangioendothelioma, exploring multimodal treatment strategies in critically ill infants. The lab emphasizes translational research, integrating clinical data with molecular insights to improve diagnosis, risk stratification, and therapeutic outcomes in pediatric blood disorders.
Professor Jun Jae Shin's research lab specializes in spinal surgery and biomechanics, with a primary focus on cervical spine disorders, including degenerative cervical disc disease, ossification of the posterior longitudinal ligament (OPLL), and compressive myelopathy. The lab investigates clinical and radiological outcomes of spinal procedures such as anterior cervical discectomy and fusion (ACDF), cervical disc arthroplasty (CDA), and halo vest immobilization, emphasizing long-term functional recovery, adjacent segment disease, and quantitative MRI assessment of intramedullary signal changes. The lab also explores surgical techniques to optimize fusion success, maintain spinal alignment, and reduce complications through advanced fixation and grafting strategies.
Professor Woongki Baek's research lab focuses on system-level optimization for energy efficiency, scalable parallel computing, and persistent memory systems. The lab explores transactional memory designs that eliminate scalability and livelock bottlenecks, develops efficient logging and memory management techniques for non-volatile memory, and investigates dynamic resource partitioning in cloud and datacenter environments. A central theme is enabling high performance and energy efficiency through intelligent system software that supports application-level approximation and hardware resource control. The lab also emphasizes practical integration of these techniques into widely used programming models like OpenMP to promote real-world adoption.
Professor Inhyung Lee's research lab focuses on translational neuroscience and veterinary anesthesiology, with key research directions in hippocampal-perirhinal cortex interactions in memory processing and the development of safe, effective epidural anesthesia techniques in large animals. The lab investigates neural circuit mechanisms underlying bimodal memory tasks using reversible inactivation and behavioral paradigms in rodents, while also advancing clinical applications in cattle through optimized epidural drug delivery and pressure monitoring. Additionally, the lab contributes to food science by developing safe, starter-based fermentation processes for traditional Korean soybean paste (doenjang).
Professor Bara Kim's research lab specializes in stochastic modeling and applied probability, with a focus on queueing theory, stochastic processes, and financial engineering. The lab investigates complex stochastic systems such as retrial queues, autoregressive arrival processes, and stochastic volatility models, emphasizing tail behavior, asymptotic analysis, and explicit analytical solutions. Key research directions include the asymptotic properties of queueing systems, the derivation of exact solutions for exotic options under stochastic volatility, and the convergence of finite-capacity queueing models to their infinite-capacity counterparts.
Professor Oh Ji Yeon's research lab specializes in clinical metabolomics and lipidomics, focusing on identifying novel biomarkers for respiratory diseases such as asthma, COPD, tuberculosis, and nontuberculous mycobacterial infections. The lab employs advanced mass spectrometry-based metabolomic and lipidomic technologies to uncover metabolic signatures associated with disease diagnosis, prognosis, and treatment response. A key research direction involves translating multi-omics data into clinically actionable insights through integrative bioinformatics and machine learning approaches. The lab also emphasizes precision medicine by exploring inflammatory and metabolic pathways in chronic lung diseases.
Professor Suk-won Song's research lab specializes in cardiovascular regenerative medicine and surgical outcomes, with a focus on enhancing stem cell therapy for heart repair and optimizing surgical graft selection in elderly patients. The lab investigates molecular mechanisms underlying cell survival and paracrine signaling in mesenchymal stem cells under hypoxic conditions, aiming to improve therapeutic efficacy in myocardial infarction. Additionally, the lab explores hemodynamic and structural outcomes following aortic dissection repair and evaluates antithrombotic management in cardiac surgery patients.
Professor Yun Jin Lee's research lab focuses on neurological disorders, particularly epilepsy and demyelinating diseases in pediatric populations, with an emphasis on surgical interventions and disease mechanisms. The lab also investigates brain tumor biology, especially the role of transcription factors like Sox2 in tumor stem cells, and explores patient-centered outcomes in chronic conditions such as pressure injuries and aging-related health satisfaction. A key theme across the research is improving clinical outcomes through early intervention, patient education, and comprehensive care strategies.
Professor Young-Hee Lee's research lab focuses on advancing medical education for the digital age, emphasizing 21st-century competencies and innovative curricular models in undergraduate medical training. The lab also conducts clinical and translational research in thyroid radiology, particularly in ultrasound-guided diagnostics, radiofrequency ablation, and the management of thyroid nodules. A key focus is developing evidence-based, expert-consensus guidelines to standardize and improve patient care in thyroid disease. Additionally, the lab contributes to genetic research, identifying susceptibility loci for pediatric acute lymphoblastic leukemia.
Professor Sok-Geun Choi's research lab focuses on neuroprotective mechanisms and innovative biomedical applications, particularly in the context of neurological disorders and neurodegenerative diseases. The lab investigates bioactive compounds like astaxanthin for their anti-inflammatory and antioxidant effects in neural cells, explores pharmacological interventions such as nimodipine in cerebral ischemia models, and develops advanced imaging and surgical techniques for neurological conditions. Additionally, the lab contributes to environmental and biomedical technology integration, including UAV-based vegetation monitoring and minimally invasive neurosurgical methods.
Professor Beomsoo Kim's research lab specializes in public administration, political economy, and digital governance, with a strong focus on electoral systems, public policy evaluation, and the application of emerging technologies like blockchain in the public sector. The lab investigates how institutional design—particularly in local government and elections—affects policy outcomes, citizen trust, and administrative efficiency. It also explores the behavioral and organizational impacts of security policies and electronic service innovations in government. Through empirical and experimental methods, including field experiments and econometric modeling, the lab contributes to evidence-based governance and democratic reform.