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 Yoo-sun Noh's research lab focuses on the molecular and epigenetic regulation of key developmental processes in plants, particularly flowering time control and senescence. The lab investigates how chromatin-modifying enzymes, transcription factors, and signaling pathways integrate environmental and endogenous cues to regulate gene expression during plant development. Key research directions include the epigenetic silencing of floral repressors like FLC, the role of histone modifiers in stress and immune responses, and the subcellular dynamics of vacuolar compartments during senescence. The lab employs a multidisciplinary approach combining genetics, cell biology, and genomics to dissect regulatory networks in *Arabidopsis thaliana*.
Professor Kang Il Kim's research lab specializes in regenerative medicine and orthopedic surgery, with a primary focus on mesenchymal stem cell therapy for osteoarthritis and cartilage repair. The lab conducts clinical trials to evaluate the efficacy and safety of intra-articular injections of autologous adipose-derived mesenchymal stem cells (AD-MSCs) in patients with knee osteoarthritis, particularly in those with Kellgren-Lawrence grade 3 disease. The lab also investigates surgical interventions such as high tibial osteotomy and acetabular osteotomy, with an emphasis on cartilage regeneration and the treatment of concomitant intra-articular pathology. Their work combines clinical research with advanced imaging and outcome assessments to improve long-term joint function and patient quality of life.
Professor Yoon Hee Choi's research lab focuses on molecular mechanisms underlying chronic diseases, particularly polycystic kidney disease (PKD) and cancer epidemiology. The lab investigates ciliary signaling pathways, especially the role of adenylyl cyclase and cAMP regulation in renal epithelial cells, and explores the pathophysiological basis of central sensitivity syndromes. Additionally, the lab conducts population-based studies on cancer mortality trends and health policy analysis, including cost-effectiveness of surgical interventions. These interdisciplinary efforts bridge molecular biology, clinical medicine, and public health research.
Professor Chan Joo Lee's research lab specializes in cardiovascular epidemiology and preventive cardiology, with a strong focus on hypertension management, lipid disorders, and the socioeconomic impact of heart failure in aging populations. The lab investigates clinical determinants of blood pressure control, psychosocial factors influencing treatment adherence, and the genetic underpinnings of extreme lipid phenotypes, particularly in East Asian populations. Their work bridges population-level health data with translational insights, contributing to clinical guidelines and regulatory decisions, such as the approval of Reti-CVD in Korea.
Professor Young-won Yun's research lab specializes in cardiovascular disease prevention and management, with a strong focus on lipid metabolism, coronary artery disease (CAD) risk factors, and interventional cardiology. The lab investigates the role of specific lipoproteins—such as small dense LDL (sd-LDL), Lp(a), and oxidized LDL—in the pathogenesis and progression of CAD, particularly in relation to angiographic severity and acute coronary syndromes. It also evaluates the comparative effectiveness of imaging-guided percutaneous coronary intervention (IVUS vs. OCT) and optimal lipid-lowering strategies (e.g., treat-to-target vs. high-intensity statins) in real-world clinical settings. The lab integrates clinical trials with biomarker analysis to improve risk stratification and personalize treatment in patients with established or high-risk coronary disease.
Professor Sang-kyung Cho's research lab focuses on the immunological and cellular mechanisms underlying acute and chronic kidney injury, with a particular emphasis on the roles of innate immune cells—especially macrophages and neutrophils—during ischemia-reperfusion injury and sepsis-associated acute kidney injury. The lab investigates key signaling pathways, including those involving cytokines (e.g., TNF-α, IL-1β), chemokines (e.g., MCP-1), and sphingosine-1-phosphate receptors, to identify novel therapeutic targets. A central theme is the gut-kidney axis, exploring how intestinal dysbiosis and barrier dysfunction contribute to systemic inflammation and progressive fibrosis in chronic kidney disease. The lab also evaluates preclinical efficacy of emerging compounds, aiming to bridge the gap between animal models and human clinical translation.
Professor Hye-mi Kim's research lab specializes in tropical climate dynamics, with a primary focus on the impacts of tropical Pacific Ocean warming modes—particularly East Pacific Warming (EPW) and Central Pacific Warming (CPW)—on global weather and climate variability. The lab investigates how these warming patterns influence tropical cyclone activity, atmospheric teleconnections, and vertical wind shear, with particular attention to regional impacts such as increased landfall potential along the Gulf of Mexico. Additionally, the lab contributes to improving seasonal and subseasonal climate prediction through evaluation of coupled ocean-atmosphere models and their biases in simulating key climate phenomena like the MJO. The research integrates observational analysis, climate modeling, and predictability assessment to enhance understanding of climate variability and improve forecast systems.
Professor Suk-Jae Jeong's research lab specializes in pharmaceutical sciences with a focus on drug disposition, transport mechanisms, and pharmacokinetic modeling. The lab investigates the role of drug transporters—particularly ABC transporters like BCRP—in drug efficacy and toxicity, and develops advanced analytical methods for drug quantification and particulate contamination control. Using integrated approaches combining in vitro, in vivo, and physiologically based pharmacokinetic (PBPK) modeling, the lab aims to predict and optimize drug interactions and tissue distribution, especially for centrally acting drugs delivered via non-invasive routes such as nasal administration. The research also extends to novel drug delivery systems and the development of robust bioanalytical methods for clinical and preclinical applications.
Professor Sung-Deuk Choi's research lab specializes in environmental chemistry and pollution science, focusing on the fate, transport, and impact of persistent organic pollutants (POPs) such as polychlorinated biphenyls (PCBs), organochlorine pesticides (OCPs), and polycyclic aromatic hydrocarbons (PAHs) in remote and urban environments. The lab investigates long-range atmospheric transport of pollutants to polar regions, the behavior of trace contaminants in wastewater sludge under advanced treatment processes like ultrasound, and the environmental contamination of PAHs in urban and industrial areas. Additionally, the lab contributes to climate change mitigation through studies on forest carbon sequestration and biomass accumulation in reforested ecosystems.
Professor Jaegi Jeong's research lab specializes in the development of advanced materials and device architectures for next-generation perovskite solar cells, with a strong focus on interface engineering, solution-processed optoelectronic materials, and stability enhancement. The lab explores novel hole transport layers, such as self-organized hole extraction layers and conjugated polyelectrolytes, to improve energy level alignment and device efficiency. Key research directions include in situ characterization of perovskite crystallization, ultralight and flexible solar cell design using Ag nanowire electrodes, and the use of functionalized graphene nanoplatelets to enhance environmental stability through hydrophobic protection. The lab's work bridges materials synthesis, device physics, and practical applications to advance high-performance, low-cost, and stable perovskite photovoltaics.
Professor Sun-Hee Lee's research lab focuses on chronic disease management and long-term outcomes in pediatric and adolescent populations, with a strong emphasis on metabolic and autoimmune conditions such as type 1 diabetes, rheumatoid arthritis, and cancer survivorship. The lab investigates cardiovascular risk factors, including nocturnal hypertension and subclinical atherosclerosis, as well as psychosocial determinants like stress and self-esteem in youth mental health. Additionally, the lab explores treatment adherence, fertility preservation in cancer survivors, and outcomes in critical care settings such as extracorporeal membrane oxygenation (ECMO) for cardiac arrest. The research integrates clinical, epidemiological, and longitudinal data to improve quality of life and long-term health trajectories in vulnerable populations.
Professor Myoungho Sunwoo's research lab specializes in intelligent automotive systems, focusing on advanced control strategies and perception technologies for autonomous driving. The lab develops adaptive control techniques—such as model reference and explicit adaptive control—for active suspension systems to enhance ride comfort and vehicle performance under uncertain and varying conditions. It also pioneers innovative algorithms in simultaneous localization and map update (SLAMCU), integrating Dempster–Shafer evidence theory and particle filtering to enable real-time, reliable HD map updates. The lab’s work bridges control theory, autonomous vehicle perception, and probabilistic motion planning to improve safety, adaptability, and system robustness in dynamic driving environments.
Professor Jun Ho Jang's research lab focuses on the pathophysiological roles of the complement system in inflammatory and hematological disorders, particularly in post-injury pain and paroxysmal nocturnal hemoglobinuria (PNH). The lab investigates complement-mediated mechanisms in nociception and tissue hypersensitivity, exploring C5a and C3a as key mediators of inflammation and pain. It also conducts translational clinical studies on complement-targeted therapies, such as iptacopan and romiplostim, for PNH and refractory thrombocytopenia, aiming to improve patient outcomes through precision medicine approaches. The lab integrates preclinical models with clinical data to identify biomarkers and therapeutic targets in complement-driven diseases.
Professor Dong Sung Kim's research lab specializes in microfluidic systems, nanofabrication, and lab-on-a-chip technologies, with a strong focus on developing innovative microscale devices for biomedical applications. The lab pioneers advanced micromixer designs—such as serpentine laminating and barrier-embedded micromixers—to enhance mixing efficiency in low-Reynolds-number flows, enabling rapid and reliable biochemical reactions. It also develops low-cost, disposable microfluidic biochips for point-of-care diagnostics, including blood typing and particle engineering, while exploring novel fabrication techniques like thermal nanoimprinting for flexible and transparent energy devices. The lab integrates microfluidics with materials science to create multifunctional, cost-effective, and scalable solutions for healthcare and energy applications.
Professor Sojeong Park's research lab focuses on inflammatory and fibrotic diseases, with a particular emphasis on inflammatory bowel disease (IBD), liver failure, and thyroid-associated ophthalmopathy (TAO). The lab investigates the pathophysiological mechanisms underlying these conditions, including the role of immune responses, fibrosis, and oxidative stress, while also exploring clinical aspects such as patient phenotypes, quality of life, and surgical interventions like adult living donor liver transplantation. A key focus is on identifying therapeutic targets—such as STAT6 signaling in astrocytes and antifibrotic effects of drugs like pirfenidone—that may lead to novel treatment strategies. The lab integrates clinical research with molecular and cellular mechanisms to improve patient outcomes in chronic inflammatory and fibrotic disorders.
Professor Juhoe Kim's research lab focuses on enhancing learning and decision-making in digital environments through data-driven design. The lab explores educational technology, particularly the analysis of video engagement patterns in online learning platforms like MOOCs and YouTube, to inform the development of intelligent video navigation and interaction techniques. It also investigates the design of interactive systems that support public engagement with complex information, such as government budgets, by integrating open data and news. A recurring theme is leveraging user interaction data to create more intuitive, transparent, and effective digital tools for education and civic participation.
Professor Ayoung Kim's research lab specializes in robotics and autonomous systems, with a focus on visual simultaneous localization and mapping (SLAM) in challenging environments. The lab develops advanced perception and navigation algorithms for applications ranging from autonomous underwater vehicle inspection to urban robotics, emphasizing real-time performance, robustness to sensor degradation, and long-term mapping accuracy. Key research directions include perception-driven navigation, saliency-informed SLAM, and integrated navigation for area coverage tasks in feature-poor or complex environments.
Professor Jaekim Kim's research lab specializes in advanced optoelectronics and flexible electronics, focusing on the development of high-performance, stretchable, and multifunctional photodetectors using low-dimensional nanomaterials such as quantum dots and metal-oxide semiconductors. The lab pioneers innovative phototransistor arrays with wavelength discrimination, color selectivity, and mechanical flexibility for applications in wearable biosensors, soft robotics, and next-generation imaging systems. By integrating solution-processed nanomaterials with scalable fabrication techniques, the lab advances stretchable and high-density integrated circuits for future human-centric electronic systems. Their work also extends into intelligent transportation systems, applying deep reinforcement learning to autonomous aerial mobility platforms like eVTOL drones.
Professor Hee Jae Huh's research lab specializes in clinical microbiology and molecular diagnostics, with a focus on the rapid and accurate detection of bacterial pathogens and antimicrobial resistance. The lab develops and evaluates molecular assays for respiratory pathogens, mycobacteria—including Mycobacterium avium complex and Mycobacterium abscessus—and antimicrobial resistance markers, aiming to improve diagnostic speed and clinical decision-making. Key research directions include the application of real-time PCR, line probe assays, and novel molecular platforms such as dRAST and MuDT technology for infectious disease diagnostics.
Professor Jun Ho Wang's research lab specializes in orthopedic regenerative medicine and advanced surgical techniques, focusing on cartilage and meniscal repair using innovative biomaterials and minimally invasive surgical methods. The lab develops patient-specific 3D-printed hydrogel constructs for osteochondral tissue engineering, emphasizing mechanical stability and biological functionality. It also investigates surgical innovations for knee ligament and meniscus injuries, particularly in challenging anatomical regions, using novel arthroscopic techniques and graft preservation strategies. The integration of tissue engineering with clinical orthopedic applications defines the lab’s translational research approach.