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 Eunmi Ban's research lab specializes in biomedical analytics and translational biotechnology, focusing on the development of advanced analytical methods for disease biomarker discovery and therapeutic delivery. Key research directions include the application of capillary electrophoresis and molecular diagnostics—particularly miRNA profiling—for early disease detection, especially in diabetes and neuroendocrine disorders. The lab also investigates novel drug delivery systems, such as poloxamer-based gels, to enhance the solubility and efficacy of bioactive compounds like emodin. Additionally, systems biology approaches are integrated to understand complex regulatory networks in chronic diseases.
Professor M. Jung's research lab specializes in computer systems and storage technologies, with a strong focus on optimizing Solid State Drive (SSD) architectures and I/O performance. The lab investigates low-level SSD bottlenecks such as garbage collection, resource contention, and parallelism exploitation, aiming to enhance system-level performance and quality of service. Key research directions include intelligent I/O scheduling, device-level controller design, and leveraging emerging interfaces like CXL to bridge block storage and memory semantics. The lab combines cycle-accurate simulation with real-world experimentation to challenge conventional assumptions and drive innovation in non-volatile memory systems.
Professor Myoungsoo Jung's research lab specializes in computer architecture and non-volatile main memory systems, with a strong focus on optimizing Solid State Disk (SSD) performance, scalability, and resource utilization. The lab investigates low-level SSD behaviors—such as garbage collection, I/O scheduling, and flash-level parallelism—through cycle-accurate modeling and extensive experimentation on state-of-the-art hardware. Key research directions include intelligent I/O scheduling, device-level controller design, and leveraging emerging interfaces like CXL to bridge block storage and byte-addressable memory. The lab aims to enhance system performance and quality of service by rethinking SSD internals and storage interfaces.
Professor Kyeongro Jang's research lab specializes in service quality, organizational identity, and brand equity within the context of sports and higher education institutions. The lab investigates how customer perceptions—particularly in fitness services, sports teams, and university environments—affect satisfaction, loyalty, and organizational outcomes. Key research directions include the structural dimensions of service quality, the role of physical environments in customer experience, and the transfer of brand equity from sports teams to parent organizations.
Professor Jin-gyeong Kim's research lab specializes in pharmacological and molecular mechanisms underlying oxidative stress, inflammation, and cancer progression, with a focus on natural compounds and bioactive peptides. The lab investigates the protective effects of phytochemicals such as [6]-gingerol and caffeic acid phenethyl ester (CAPE) through Nrf2/ARE and NF-κB signaling pathways, as well as the antimicrobial and anti-inflammatory properties of novel peptides like papiliocin. Additional research explores the role of opioid growth factor receptor (OGFR) in lung cancer and anesthetic effects on neurophysiological monitoring, including bispectral index (BIS) and salivary excretion during surgery. The lab integrates in vitro, ex vivo, and in vivo models to translate molecular findings into potential therapeutic applications.
Professor Kang Seob Oh's research lab focuses on the neurobiological and genetic underpinnings of psychiatric disorders, particularly anxiety-related conditions such as posttraumatic stress disorder (PTSD), social anxiety disorder (SAD), and attention deficit hyperactivity disorder (ADHD). The lab investigates the role of neurotransmitter systems—especially serotonin and oxytocin—along with genetic polymorphisms (e.g., SERTPR) and endophenotypic measures like attention performance on the Continuous Performance Test (CPT) in shaping behavioral and cognitive phenotypes. The lab also explores decision-making biases in neurodegenerative conditions such as Alzheimer’s disease, emphasizing how framing effects influence risk-taking behavior. Overall, the research integrates clinical psychiatry with behavioral neuroscience and molecular genetics to uncover mechanisms underlying emotional and cognitive dysregulation.
Professor Jeong Hye-rim's research lab focuses on vascular biology and hematology, with a particular emphasis on vascular anomalies such as infantile hemangioma and the molecular mechanisms underlying their pathogenesis and treatment response. The lab investigates signaling pathways in cancer, especially the roles of AKT isoforms in nonsmall cell lung cancer, and explores diagnostic biomarkers like procalcitonin and CRP in pediatric respiratory infections. Additionally, the lab contributes to epidemiological studies on rare hematologic disorders, including hereditary hemolytic anemia and pediatric venous thromboembolism, aiming to improve clinical outcomes through early detection and targeted therapy.
Professor Jin-Hyuk Kim's research lab focuses on environmental health and occupational health, with a strong emphasis on the impact of indoor and outdoor air pollutants—such as volatile organic compounds (VOCs), particulate matter (PM10), and formaldehyde—on respiratory and allergic diseases in children and vulnerable populations. The lab investigates the physiological and psychological effects of environmental exposures in occupational settings, particularly among airline cabin crew, and evaluates biomarkers for personal exposure to air pollutants. Research also includes clinical and epidemiological studies on asthma, atopic dermatitis, and cardiovascular drug interactions with dental procedures.
Professor Yoon Kyu Lee's research lab specializes in clinical oncology, with a focus on hematologic malignancies and solid tumors, particularly in Asian populations. The lab investigates risk factors, treatment outcomes, and prognostic biomarkers in diseases such as non-small cell lung cancer, myelodysplastic syndromes, and head and neck squamous cell carcinoma. Key research directions include optimizing chemotherapy and immunotherapy strategies, evaluating the impact of genetic and metabolic factors on treatment response, and employing advanced statistical methods like propensity score matching to reduce bias in real-world data. The lab emphasizes translational research that bridges clinical practice with molecular insights to improve patient outcomes.
Professor Sok Jin Hong's research lab specializes in biomedical materials and regenerative medicine, focusing on smart biomaterials such as thermo-responsive shape memory polyurethanes for tissue engineering applications. The lab investigates the interactions between nanomaterials and immune cells to advance nanomedicine and evaluate nanotoxicity, with an emphasis on cellular microstructure and lipid metabolism changes. Additionally, the lab explores the systemic links between oral health—particularly periodontitis—and chronic diseases like osteoporosis and cardiovascular disease, using large-scale epidemiological data. Their work also includes stem cell-based therapies for laryngeal repair and hearing loss prevention in adolescents.
Professor Dongseok Jeon's research lab specializes in neuromorphic computing and bio-inspired hardware systems, focusing on energy-efficient artificial intelligence through spiking neural networks. The lab develops low-power neuromorphic processors that enable local, in-memory computation for image classification, minimizing energy consumption by eliminating traditional data transmission overhead. In parallel, the lab explores molecular and genetic mechanisms underlying hematological disorders, particularly in pediatric leukemia and myeloproliferative neoplasms, with a focus on mutations in genes like GATA1 and TET2. The integration of advanced semiconductor design with biomedical applications defines the lab’s interdisciplinary approach.
Professor Chang-Sun Hong's research lab specializes in structural health monitoring and smart composite materials, focusing on the development of advanced sensing technologies for real-time, in-situ monitoring of strain, temperature, and impact damage in composite structures. The lab pioneers the use of fiber-optic sensors—particularly FBG/EFPI hybrid sensors—for simultaneous and accurate measurement of multiple physical parameters during manufacturing and service life. Key research directions include structural diagnostics using piezoelectric transducers and optical fiber sensors, impact detection via acoustic emission, and the integration of smart sensing systems into aerospace and aeronautical components such as subscale wings and composite laminates. The lab emphasizes innovation in sensor design, signal processing, and non-destructive evaluation techniques for next-generation smart structures.
Professor Dae-jin Song's research lab focuses on respiratory immunology and infectious diseases, with a primary emphasis on eosinophilic inflammation, airway hyperreactivity, and the pathogenesis of asthma and chronic cough. The lab investigates molecular mechanisms underlying allergic airway diseases, including the roles of specific receptors such as Siglec-F and CCR3 in eosinophil trafficking and tissue remodeling. Additionally, the lab explores zoonotic viral reservoirs in wildlife, particularly bats, to understand emerging infectious disease risks. Their work combines preclinical mouse models with molecular virology and immunological techniques to develop novel therapeutic and diagnostic strategies for chronic respiratory conditions.
Professor Chan Lee's research lab specializes in interdisciplinary studies spanning biomedical sciences, robotics, and organizational innovation. The lab investigates neuroprotective mechanisms in Alzheimer’s disease using natural compounds like sulforaphane, explores advanced actuator technologies such as Series Elastic Actuators for humanoid robotics, and examines knowledge management systems in Korean organizations to enhance organizational effectiveness. The lab also focuses on talent development in high-potential entrepreneurs and career development systems in corporate settings, particularly for administrative professionals in South Korea.
Professor Ji-Won Yu's research lab specializes in translational biomedical research with a focus on the intersection of environmental exposures, systemic diseases, and organ-specific pathologies, particularly in the kidney and nervous system. The lab investigates the long-term impacts of environmental factors—such as air pollution and blast exposure—on chronic diseases like glomerulonephritis and traumatic brain injury, while also exploring molecular mechanisms underlying renal and neurological disorders. A key direction involves developing advanced surgical technologies, including vision-based instrument tracking for robotic minimally invasive surgery, to improve clinical safety and precision. The lab also conducts clinical and molecular studies on biomarkers and protein interactions, such as TTYH2 and β-COP, to uncover novel therapeutic targets in cancer and kidney disease.
Professor Hyuk Sun Choi's research lab specializes in advancing minimally invasive endoscopic technologies for the diagnosis and treatment of gastrointestinal diseases. The lab focuses on developing innovative endoscopic devices and imaging systems, such as optical-resolution photoacoustic tomography and thermosensitive injectable materials for endoscopic submucosal dissection. Key research directions include improving therapeutic endoscopy through novel endoscopic instruments, smart biomaterials for submucosal injection, and molecular biology approaches to understand and enhance endoscopic interventions.
Professor Jin Wook Kim's research lab specializes in neurosurgical oncology and radiosurgery, focusing on the management and long-term outcomes of intracranial tumors such as craniopharyngioma, meningioma, and vestibular schwannoma. The lab investigates prognostic factors, visual and hearing preservation, and tumor control following stereotactic radiosurgery, with strong emphasis on histopathological classification and individualized treatment strategies. Their work integrates clinical outcomes with advanced imaging and hospital information systems to optimize patient care and treatment efficacy.
Professor Gunsang Jeon's research lab specializes in strongly correlated electron systems, with a focus on quantum phases of matter in low-dimensional and low-temperature regimes. The lab investigates fractional quantum Hall states, composite fermions, and quasiparticle statistics using advanced theoretical and numerical methods such as dynamical mean-field theory, numerical renormalization group, and correlated basis function approaches. Key research directions include the interplay between electron-electron and electron-phonon interactions, the microscopic origin of fractional statistics, and the development of accurate many-body techniques for strongly correlated systems.
Professor Sukyeong Kim's research lab focuses on translational biomedical research with a strong emphasis on metabolic and cardiovascular diseases in the context of diabetes and endocrine disorders. The lab investigates the pathophysiological links between insulin resistance, fatty liver disease, and subclinical atherosclerosis, particularly using carotid intima-media thickness (C-IMT) as a surrogate marker. It also explores innovative therapeutic strategies, such as using genetically engineered mesenchymal stem cells for brain tumor therapy, and examines the clinical implications of subclinical thyroid dysfunction on vascular health. The research integrates clinical epidemiology, metabolic phenotyping, and advanced imaging techniques to identify early markers and interventions for cardiovascular risk in diabetic and endocrine populations.
Professor Soojin Lee's research lab focuses on applied health and food science, with a strong emphasis on human factors, occupational health, and the nutritional quality of functional foods. The lab investigates the impact of lifestyle factors—such as shift work and leisure involvement—on health outcomes including vitamin D levels, sleep quality, and mental well-being. It also explores the physicochemical and bioactive properties of traditional Korean foods, particularly through processing techniques like steaming (e.g., blacked jujube), to enhance their health benefits and usability. Additionally, the lab contributes to industrial diagnostics, such as fault detection in power transformers using gas analysis methods.