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 Seung-Won Oh's research lab focuses on metabolic and cardiovascular diseases, with a strong emphasis on the interplay between metabolic syndrome, non-alcoholic fatty liver disease (NAFLD), and cardiometabolic risk factors. The lab conducts large-scale genetic studies, including genome-wide association studies (GWAS), to identify genetic markers linked to metabolic disorders, particularly in Korean populations. Additionally, the lab investigates the safety and long-term outcomes of antidiabetic and psychotropic medications, using advanced epidemiological methods such as network meta-analysis and systematic reviews. Their work bridges clinical medicine, genetics, and public health to improve risk prediction and patient outcomes in chronic disease prevention.
Professor Hyun-Jung Kim's research lab specializes in computational and materials physics, focusing on the electronic and structural properties of advanced nanomaterials. Key research directions include the design and simulation of 2D and nanostructured materials—such as transition metal dichalcogenides, graphene-based systems, and porous silicon—exploring their topological states, magnetic instabilities, and interfacial phenomena. The lab employs first-principles density functional theory (DFT) calculations, including advanced functionals to address self-interaction errors, to uncover the origins of emergent quantum phenomena and phase transitions. Applications span energy storage materials, gene delivery systems, and spintronic devices.
Professor Jee Young Choi's research lab focuses on translational biomedical and health sciences, with a strong emphasis on understanding and improving health outcomes in chronic diseases. The lab investigates the biological mechanisms underlying metabolic disorders such as obesity and diabetes, exploring the therapeutic potential of natural compounds like green tea and Artemisia princeps extracts. Additionally, the lab examines psychosocial and behavioral factors—particularly intrinsic motivation—in mental health conditions like schizophrenia, aiming to enhance treatment adherence and functional recovery. The lab also engages in environmental health research, applying quantitative ecological models to assess the long-term impacts of human infrastructure on wildlife habitats, such as those of the water deer.
Professor Seong Keun Kwon's research lab specializes in regenerative medicine and bioengineering, with a primary focus on tissue engineering for the upper aerodigestive tract, including the trachea and vocal folds. The lab develops advanced biomaterials and scaffolds—such as electrospun nanofibers, biodegradable 3D-printed tubular scaffolds, and injectable hydrogels—engineered to mimic the mechanical and biological properties of native tissues. Key research directions include enhancing cell integration, promoting tissue regeneration, and minimizing complications like restenosis or implant migration through innovative material design and drug delivery systems.
Professor Dong-Mook Kang's research lab focuses on ion channel biology, particularly the molecular mechanisms underlying potassium channel function and its role in human diseases such as autosomal dominant nonsyndromic hearing loss (DFNA2). The lab investigates how genetic mutations in KCNQ4 channels affect channel activity and pharmacological responses, with a strong emphasis on the regulatory role of phospholipids like PIP2. Additionally, the lab explores bioelectromechanical systems, including engineered hybrid muscles using functionalized carbon nanotubes and C2C12 cells, for biomimetic actuation. A parallel line of inquiry examines host-microbe interactions in Drosophila, particularly the role of Duox-derived reactive oxygen species and TRPA1 channels in gut immunity and defecation regulation.
Professor Gwang-hyun Kim's research lab specializes in urological oncology and minimally invasive surgical techniques, with a strong focus on improving diagnostic accuracy and treatment outcomes in genitourinary cancers. The lab investigates liquid biopsy applications using cell-free and exosomal DNA from urine for non-invasive detection of urothelial bladder carcinoma, and explores prognostic factors in renal cell carcinoma, particularly the impact of histological subtypes on survival. Additionally, the lab contributes to advancing robotic and single-port surgical approaches for prostate and bladder cancer, emphasizing perioperative outcomes and complications such as post-cystectomy urinary tract infections. Their work bridges molecular diagnostics, surgical innovation, and clinical oncology to enhance personalized patient care.
Professor Hong Suk Kyun's research lab specializes in advanced minimally invasive surgical techniques, particularly focusing on pure laparoscopic donor hepatectomy for living donor liver transplantation. The lab investigates surgical innovation, patient safety, and long-term outcomes, with a strong emphasis on technical advancements such as 3D laparoscopy and indocyanine green fluorescence cholangiography. Their work contributes significantly to expanding the feasibility and standardization of laparoscopic liver donation, even in complex anatomical variants.
Professor Myeonghee Shin's research lab focuses on molecular epidemiology and thyroid endocrinology, with a strong emphasis on genetic polymorphisms—particularly in the CYP17 gene—and their association with breast cancer risk in Korean populations. The lab also investigates thyroid function and hormone reference intervals in relation to iodine nutrition, contributing critical insights into population-specific thyroid health. Additionally, the lab explores clinical predictors for laryngopharyngeal reflux (LPR), assessing the utility of symptom scores in guiding treatment response. These interdisciplinary efforts bridge molecular genetics, endocrinology, and clinical outcomes research.
Professor Seung Han Shin's research lab specializes in neonatal and perinatal medicine, with a primary focus on improving outcomes for preterm infants. Key research directions include optimizing non-invasive ventilation strategies, enhancing nutritional support in the neonatal intensive care unit (NICU), and investigating neuroprotective interventions against white matter injury. The lab also explores maternal-fetal health impacts, such as the effects of pregnancy-induced hypertension on bronchopulmonary dysplasia, and contributes to the understanding of serious bacterial infections in newborns. Their work combines clinical research with translational approaches to address critical challenges in neonatal care.
Professor Jung-Wuk Hong's research lab specializes in the design and development of advanced functional nanomaterials and hybrid composites for next-generation optoelectronic, protective, and sensing applications. The lab focuses on creating 3D-structured nanocomposites with enhanced mechanical, optical, and sensing properties through innovative nanoarchitectural engineering, such as continuous inorganic nanoshells and periodic porous frameworks. Key research directions include mechano-responsive smart windows, high-performance flexible protective coatings, and highly sensitive gas sensors for indoor air quality monitoring.
Professor Seung-Jun Yoo's research lab specializes in the development of advanced optoelectronic materials and devices, with a primary focus on organic light-emitting diodes (OLEDs) for next-generation display and lighting technologies. The lab investigates exciplex-based host systems, phosphorescent and fluorescent emitters, and exciton dynamics to achieve high internal and external quantum efficiencies in OLEDs. Key research directions include optimizing energy transfer mechanisms, controlling molecular orientation, and minimizing non-radiative decay pathways in organic semiconductors. The lab also explores the biological mechanisms of viral infection, particularly SARS-CoV-2 pathogenesis in the olfactory system, through innovative postmortem tissue sampling techniques.
Professor Neung-Hwan Oh's research lab specializes in biogeochemical cycles, with a focus on carbon and nutrient dynamics in terrestrial and aquatic ecosystems. The lab investigates the impacts of climate change, land use, and human activities—such as agriculture and urbanization—on soil and riverine carbon cycling, greenhouse gas emissions, and chemical weathering. Key research directions include soil respiration, CO2 dynamics in inland waters, and the role of vegetation and land management in regulating soil organic carbon and bicarbonate export. The lab employs field measurements, controlled experiments, and modeling to understand ecosystem responses to global environmental change.
Professor Doo Hee Han's research lab focuses on allergic diseases, particularly allergic rhinitis and their environmental and immunological determinants. The lab investigates the impact of early-life factors such as mode of delivery and breastfeeding duration on allergic disease development, while also exploring novel immunotherapies like sublingual immunotherapy and the role of environmental pollutants such as diesel exhaust particles in exacerbating allergic inflammation. Additionally, the lab examines clinical outcomes in pediatric sleep-disordered breathing and nasal reconstruction, integrating immunology, otolaryngology, and facial plastic surgery. Their work bridges basic immunological mechanisms with clinical applications in ENT and allergy.
Professor Jong Woon Park's research lab specializes in regenerative medicine and biomedical engineering, with a primary focus on peripheral nerve repair and regeneration. The lab develops advanced tissue-engineered nerve grafts using synthetic biomaterials such as electrospun poly(lactide-co-ε-caprolactone) membranes and collagen hydrogel-grafted nerve guidance conduits to overcome the limitations of autologous nerve grafts. Additionally, the lab applies cutting-edge technologies like machine learning and wearable sensors to enhance rehabilitation outcomes, including gait analysis using low-frequency IMU sensors. The integration of bioengineering, clinical applications, and smart health technologies defines the lab’s multidisciplinary approach.
Professor Jong-wook Kim's research lab focuses on translational and clinical biomedical research, with a strong emphasis on molecular mechanisms underlying cancer progression, metabolic syndrome, and urological disorders. The lab investigates key regulatory pathways such as Myc and microRNAs in tumorigenesis, explores the clinical implications of asymptomatic conditions like choledochal cysts, and examines the impact of metabolic health on prostate cancer risk. Additionally, the lab conducts preclinical and patient-centered studies on urodynamic dysfunction, bladder ischemia, and non-invasive interventions such as coenzyme Q10 supplementation and thermal support during diagnostic procedures.
Professor NoSeong Park's research lab specializes in data privacy, generative modeling, and intelligent systems for real-world applications. The lab focuses on developing advanced machine learning techniques—particularly GANs and probabilistic models—for privacy-preserving data publishing and optimal decision-making in critical domains such as wildlife protection and wireless sensor networks. Key research directions include stable and efficient GAN training, spatio-temporal behavior modeling for anti-poaching systems, and energy-efficient routing in distributed networks. The lab emphasizes both theoretical rigor and practical impact, aiming to balance data utility, system efficiency, and robustness in complex, real-world environments.
Professor Kyungmee Lee's research lab focuses on consumer behavior, particularly the psychological and social dynamics that influence decision-making in marketplace contexts. The lab investigates how stereotypes, identity goals, and institutional policies—especially in education and technology—shape consumer and student experiences. A key focus is on the unintended consequences of institutional practices, such as online proctoring and stereotype threat, on fairness, equity, and subjectivity. The lab also explores climate-related energy demand patterns using empirical data, reflecting a multidisciplinary approach to social and environmental challenges.
Professor Soo Woong Kim's research lab specializes in urological and sexual health, focusing on the physiological and pathological mechanisms underlying pelvic pain, neurogenic bladder, and erectile dysfunction. The lab investigates hormonal regulation—particularly estrogen and its receptor pathways—alongside neurogenic and metabolic influences on sexual function and urological symptoms. Using both preclinical animal models and clinical studies, the lab explores therapeutic interventions such as percutaneous tibial nerve stimulation and the role of signaling pathways like NO-cGMP in sexual arousal. Their work bridges basic science and clinical application, emphasizing personalized diagnosis and treatment in chronic pelvic and urological conditions.
Professor Hyung-Jin Yoon's research lab specializes in translational biomedical research with a focus on clinical epidemiology, kidney and metabolic health, and human-robot interaction. The lab investigates the clinical implications of biomarkers such as mean corpuscular volume (MCV) and acute kidney injury (AKI) in predicting mortality and disease progression, particularly in aging and cancer populations. It also explores the impact of dietary habits on renal function, including renal hyperfiltration, and develops innovative human-centered technologies such as wearable-based physiological monitoring and safety-aware motion planning for flying robots using physiological signals like galvanic skin response (GSR).
Professor Joo Ho Lee's research lab specializes in clinical oncology and translational cancer research, with a focus on understanding and improving treatment outcomes in various malignancies. The lab investigates drug-induced toxicities such as DRESS syndrome, explores genetic predictors of treatment-related adverse events (e.g., sorafenib-induced hand-foot syndrome in Asian HCC patients), and evaluates multimodal therapies—including radiotherapy, chemotherapy, and surgery—for brain tumors, lung cancer, and gastrointestinal cancers. The lab emphasizes personalized medicine through biomarker discovery and prognostic factor analysis in elderly and high-risk patient populations.