世界の主要大学の研究室を探索 — 研究分野と主要論文を一目で確認できます。
Professor Ye Ra Choi's research lab specializes in medical image analysis and artificial intelligence, focusing on advancing quantitative radiology through deep learning. The lab develops and validates AI algorithms for automated segmentation and detection in medical imaging, particularly in CT and X-ray, with applications in sarcopenia assessment, lung nodule characterization, and liver fibrosis staging. Their work emphasizes clinical translation, improving diagnostic accuracy, and reducing radiologist workload through AI-driven solutions.
Professor Jung-Hyun Park's research lab focuses on cerebrovascular and neurodegenerative diseases, with a strong emphasis on stroke mechanisms, peripheral neuropathy, and neuroimaging biomarkers. The lab investigates the pathophysiological links between cerebrovascular risk factors—such as atherosclerosis, osteoporosis, and small vessel disease—and neurological outcomes. Key research directions include the role of hemodynamic parameters (e.g., transcranial Doppler pulsatility index), neuroprotective agents (e.g., cilostazol), and advanced imaging techniques in assessing and managing acute ischemic stroke and diabetic neuropathy.
Professor Kim Jong-gil's research lab specializes in cryptography and cybersecurity, with a focus on developing efficient, secure, and scalable encryption schemes for modern computing environments. The lab's main research directions include identity-based and attribute-based encryption, broadcast encryption, and secure communication protocols for resource-constrained systems such as IoT and edge computing. The lab emphasizes practical security solutions that balance strong cryptographic guarantees with performance efficiency, particularly in cloud storage, cyber-physical systems, and encrypted network traffic analysis.
Professor Seung-jun Choi's research lab specializes in clinical immunology, transfusion medicine, and precision medicine, with a focus on improving diagnostic accuracy in infectious disease serology, optimizing rehabilitation strategies in aging populations, and enhancing immune responses to vaccines. The lab investigates rare blood group antibodies, including high-incidence antigens, to prevent transfusion complications, and applies machine learning to predict severe infections in vulnerable pediatric oncology patients. Additionally, the lab explores natural immunomodulators, such as Korean Red Ginseng, to boost vaccine efficacy and host immunity.
Professor Nan-Kwon Lee's research lab specializes in clinical oncology, with a focus on optimizing treatment strategies for various cancers through multimodal therapy. The lab investigates the impact of molecular markers—such as PIK3CA mutations—on treatment response and survival outcomes in HER2-positive breast cancer, as well as the role of adjuvant radiation in locoregionally advanced thyroid and lymphoid malignancies. Research also emphasizes treatment delivery integrity, including radiation therapy interruption and completion, particularly in elderly patients and those receiving curative or palliative intent therapy. The lab integrates clinical data with translational insights to improve patient outcomes in gastrointestinal, head and neck, and breast cancers.
Professor Seokbeom Kwon's research lab focuses on the dynamics of innovation, knowledge transfer, and science policy in science-driven industries. The lab investigates how interdisciplinary research, regulatory environments, and institutional frameworks influence the translation of scientific discoveries into technological applications. Key research directions include identifying knowledge-flow mediating research, measuring technological emergence, and analyzing the impact of data sharing and regulatory uncertainty on innovation outcomes.
Professor Bil Jo Choi's research lab specializes in minimally invasive surgical techniques, particularly laparoscopic repair of urological and gynecological conditions such as vesicovaginal fistulas and appendicitis during pregnancy. The lab also investigates oncological applications of trace elements like selenium in combination with chemotherapy agents, focusing on mechanisms of apoptosis and cell cycle arrest in breast cancer cells. Additionally, the lab explores critical airway management in high-risk environments, such as those involving chemical, biological, radiological, or nuclear (CBRN) incidents, evaluating advanced airway devices under protective gear. These diverse research directions reflect a strong emphasis on improving surgical outcomes, patient safety, and translational cancer therapy.
Professor Sung Hoon Kim's research lab focuses on socio-economic and organizational dynamics in globalized and transnational contexts, with a particular emphasis on international business expansion, diaspora communities, and corporate governance in response to environmental challenges. The lab explores transnational production networks, especially the overseas expansion of Korean subcontractors in industries like electronics, as well as the role of social and digital networks among Korean diasporas in countries such as Vietnam. It also investigates educational practices in science teacher training and the strategic use of oral tradition in Indigenous literary resistance. A central theme is how institutional, relational, and technological factors shape economic resilience and sustainability in global and local settings.
Professor Bora Lee's research lab specializes in perioperative medicine, with a primary focus on optimizing surgical outcomes through evidence-based anesthetic and metabolic management strategies. Key research directions include the impact of preoperative nutrition (such as carbohydrate drinks) on insulin resistance and glucose variability in diabetic and older adult patients, as well as the use of intravenous iron to improve postoperative hemoglobin levels and reduce anemia-related morbidity. The lab also investigates airway management techniques and their effects on ventilation and patient safety during anesthesia. These studies aim to enhance patient recovery, reduce complications, and improve clinical decision-making in surgical settings.
Professor Jin-hee Moon's research lab focuses on translational biomedical research targeting inflammatory and autoimmune diseases, with a central emphasis on rheumatoid arthritis (RA), lupus nephritis (LN), and cerebral ischemia. The lab investigates novel therapeutic strategies involving endogenous modulators like agmatine, nanoparticle-based drug delivery systems, and small molecule inhibitors such as PAR2 antagonists. Key research directions include regulating nitric oxide synthase and matrix metalloproteinases in vascular and immune pathology, exploring the immunomodulatory potential of mesenchymal stem cells, and developing photothermally responsive nanotherapeutics for targeted treatment. The lab integrates molecular biology, cell-based screening, and in vivo disease models to identify and validate new therapeutic targets and delivery systems.
Professor Ji-hyun Seo's research lab specializes in neuromuscular rehabilitation and neuroplasticity, focusing on improving motor function, balance, and gait in patients with neurological disorders such as stroke, amyotrophic lateral sclerosis (ALS), and repetitive mild traumatic brain injury (mTBI). The lab investigates non-invasive neuromodulation techniques like transcranial direct current stimulation (tDCS) and advanced diagnostic methods such as high-resolution manometry to optimize therapeutic interventions. A key research direction involves developing individualized exercise programs and early intervention strategies—particularly for dysphagia and postural control—aimed at enhancing functional outcomes and quality of life.
Professor Kyungsik Lee's research lab specializes in optimization, machine learning, and data science with a focus on developing advanced algorithms for real-world applications in energy systems, finance, and high-dimensional data analysis. The lab emphasizes scalable and interpretable methods, such as sparse and least-angle variants of principal component analysis, variable selection techniques with adaptive regularization, and optimization models for electric vehicle charging and credit scoring. A recurring theme is the integration of mathematical programming with statistical learning to address complex decision-making problems under uncertainty and structural constraints. The lab also explores polyhedral structures in combinatorial optimization, particularly in network and graph-based problems.
Professor Mi Hyun Song's research lab specializes in pediatric orthopedics and regenerative musculoskeletal medicine, focusing on innovative treatments for skeletal injuries and congenital conditions in growing patients. Key research directions include the biomechanical and biological evaluation of biodegradable implants—particularly Mg-Ca-Zn alloys—for use in pediatric orthopedic surgery, as well as the application of regenerative therapies such as low-intensity pulsed ultrasound (LIPUS) to enhance fracture and bone regeneration. The lab also investigates long-term skeletal outcomes, including femoral overgrowth in congenital pseudarthrosis and complications from osteoid osteoma, with a strong emphasis on minimizing surgical intervention and improving functional recovery in skeletally immature patients.
Professor Joohan Han's research lab specializes in sociological and organizational studies with a focus on social inequality, cultural capital, and institutional dynamics in contemporary Korean society. The lab investigates how social mobility, cultural boundaries, and organizational behavior are shaped by structural factors such as education, economic stratification, and institutional evaluation systems. Key research directions include the impact of university ranking systems on academic labor markets, the role of social networks in organizational imitation and innovation, and the interplay between cultural taste and social class. The lab employs mixed-methods approaches, combining quantitative analysis of national survey data with theoretical insights from organizational ecology and cultural sociology.
Professor Kim Min-hyuk's research lab specializes in interdisciplinary studies at the intersection of quantum technologies, financial econometrics, and human-computer interaction. The lab explores quantum computing applications in solving NP-hard optimization problems using Rydberg atom arrays, develops advanced optical control techniques for atomic systems, and investigates behavioral finance dynamics such as retail investor sentiment and market liquidity. Additionally, the lab pioneers interactive technologies by integrating computer vision and augmented reality for real-time gesture-based gaming and educational applications.
Professor MinHyuk Kim's research lab specializes in interdisciplinary research at the intersection of quantum technologies, financial econometrics, and human-computer interaction. The lab explores quantum computing applications in solving NP-hard optimization problems using Rydberg atom arrays, develops advanced optical control techniques for atomic systems, and investigates behavioral finance dynamics in equity markets. Additionally, the lab pioneers interactive technologies by integrating computer vision and augmented reality for real-time gesture-based gaming and educational applications.
Professor Byung Sik Lee's research lab specializes in higher education policy, student success, and the socioeconomic factors influencing educational outcomes in South Korea. The lab focuses on empirical analyses of how individual characteristics, institutional attributes, and financial aid policies affect learning outcomes, core competency development, and employment success among university students. Using large-scale national survey data and advanced multilevel statistical models such as hierarchical linear modeling (HLM), the lab investigates equity in higher education, the impact of financial aid (e.g., scholarships and student loans), and differences in outcomes across admission types and regional institutions.
Professor Dong-Joon Kim's research lab specializes in advanced materials and microsystems engineering, with a strong focus on nanomaterials for electronic and energy applications, precision microfabrication of MEMS/NEMS devices, and high-performance optoelectronic systems. The lab investigates diffusion barriers in Cu metallization for integrated circuits, thermal and structural stability of nanostructured thin films, and the development of high-power, narrow-linewidth fiber lasers for industrial and sensing applications. Additionally, the lab conducts experimental and analytical studies on geotechnical foundations for offshore renewable energy systems, particularly in the context of wind turbine support structures.
Professor Myo Kim's research lab specializes in developing innovative photocatalytic and radical-mediated C–H functionalization methods for complex heterocycles, particularly pyridines. The lab focuses on site-selective, mild, and operationally simple transformations using organic photocatalysts, enabling late-stage diversification of pharmaceutical and bioactive molecules. Key advances include the design of novel N-amidopyridinium salts for directing radical reactions and the application of sustainable, metal-free strategies for fluoroalkylation and sulfone functionalization.
Professor Dongwoo Chae's research lab specializes in advancing clinical anesthesiology and translational biomedical research through innovative applications of machine learning, gene editing, and pharmacokinetic modeling. The lab focuses on improving patient outcomes in surgical anesthesia by developing predictive models for postoperative complications, optimizing anesthetic agents for hemodynamic stability, and exploring novel therapeutic strategies such as phage therapy and gene drive systems with chemical control. A central theme across the lab’s work is the integration of computational methods—particularly machine learning—with clinical data to enhance precision in perioperative care and disease management.