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 So Young Kim's research lab focuses on population health and public health epidemiology, with a strong emphasis on the interplay between social, behavioral, and environmental factors in shaping health outcomes. The lab investigates cross-national variations in public attitudes toward climate change, the impact of lifestyle factors such as diet, smoking, and alcohol on chronic diseases, and the long-term health risks associated with sensory impairments like hearing loss. A central theme is the application of large-scale national survey data to identify modifiable risk factors and inform public health policy.
Professor Seok-Oh Ko's research lab specializes in environmental remediation and sustainable materials development, focusing on advanced processes for removing hydrophobic organic contaminants (HOCs) from water and soil. The lab investigates surfactant-enhanced remediation (SER), cyclodextrin-based solubilization, and novel nanomaterials such as yolk–shell structured Fe₃O₄@SiO₂ and Cu-decorated catalysts for Fenton-like degradation. Key research directions include understanding partitioning behavior of pollutants in complex systems, optimizing electrokinetic and solubilization techniques for low-permeability environments, and exploring biogenic Mn oxides for catalytic pollutant control. The lab integrates materials synthesis, environmental chemistry, and transport modeling to develop efficient, eco-friendly solutions for water and soil contamination.
Professor Jiyoung Yoon's research lab specializes in clinical and translational studies focusing on movement disorders, particularly cervical dystonia and Parkinson’s disease, with an emphasis on optimizing treatment strategies using botulinum toxins and dopamine agonists. The lab also investigates the genetic and molecular mechanisms underlying autoimmune skin disorders such as non-segmental vitiligo, with a focus on candidate genes like TGFBR2. Additionally, the lab explores ion channel functions in human dermal fibroblasts, linking cellular physiology to tissue homeostasis and potential regenerative mechanisms.
Professor Yunpyo Kang's research lab focuses on the intersection of cellular metabolism, lipid metabolism, and disease pathogenesis, with a particular emphasis on ferroptosis, fibrotic lung diseases, neurodegenerative disorders, and cancer metabolism. The lab employs advanced metabolomics technologies—such as GC-MS and HPLC-QTOF-MS—to dissect metabolic reprogramming in human diseases, including idiopathic pulmonary fibrosis, X-linked adrenoleukodystrophy, and asthma. By leveraging patient-derived induced pluripotent stem cells and primary cell models, the lab uncovers key metabolic nodes and signaling pathways, such as NRF2-CDO1 axis and cholesterol 25-hydroxylation, that regulate cell fate and inflammation. The ultimate goal is to identify novel therapeutic targets through a systems-level understanding of metabolic dysregulation in degenerative and malignant diseases.
Professor Dong-geun Seol's research lab specializes in toxicology and molecular pathology, focusing on the biological effects of environmental pollutants and nanomaterials. The lab employs advanced proteomic technologies to investigate protein expression changes in response to exposure to formaldehyde, phthalates, polycyclic aromatic hydrocarbons, and copper oxide nanoparticles. Research directions include oxidative stress, cytotoxicity, genotoxicity, and inflammatory responses, with translational applications in disease mechanisms and biomarker discovery. The lab also explores host-pathogen interactions, as demonstrated by proteomic profiling in viral infections such as H1N1 influenza.
Professor Hyungjin Shin's research lab specializes in hydrological and ecological modeling, with a focus on watershed management, non-point source pollution, and the impacts of land use on water quality. The lab integrates remote sensing, field monitoring, and process-based models such as RHESSys to assess water cycle dynamics, carbon and nutrient cycling, and ecosystem productivity in forested and agricultural watersheds. Additional research extends to environmental health, including rare pediatric tumors and clinical applications in sepsis management, reflecting a multidisciplinary approach to environmental and health systems. The lab emphasizes data-driven modeling and validation using in-situ measurements and satellite observations.
Professor Jinho Ahn's research lab specializes in advanced materials development for semiconductor devices and energy applications, with a strong focus on atomic layer deposition (ALD)-based thin films, resistive switching materials, and high-energy-density battery materials. The lab investigates innovative dielectric materials—such as N₂O-nitrided oxides and rare-earth oxides—aimed at enhancing device reliability and performance in MOSFETs and memory devices. It also explores plasmonic-photocatalytic nanostructures and cation-disordered layered oxides for sustainable energy conversion and next-generation batteries. The overarching research direction emphasizes atomic-scale engineering of functional oxide and semiconductor heterostructures for electronics and energy technologies.
Professor Jeong-Seok Park's research lab focuses on immunology and molecular mechanisms underlying T cell development, activation, and homeostasis, with particular emphasis on signaling molecules such as CD5, LAT, and costimulatory receptors. The lab investigates how these molecules regulate T cell receptor signaling, thymic selection, and immune tolerance, and explores the roles of microRNAs, natural compounds like fisetin and melatonin, and phytochemicals such as rosmarinic acid in modulating inflammation, oxidative stress, and allergic responses. The research integrates molecular immunology with translational approaches to understand and treat autoimmune diseases, cancer, and allergic disorders.
Professor Jeongyeon Sim's research lab specializes in pediatric respiratory medicine and immunology, focusing on the pathogenesis, diagnosis, and treatment of community-acquired pneumonia and allergic airway diseases in children. The lab investigates immune mechanisms in asthma and immunotherapy, particularly allergen-specific immune modulation, basophil function, and IgE-mediated responses. It also explores biomarkers such as procalcitonin, CRP, and WBC in distinguishing bacterial from viral infections, and examines signaling pathways like MAPK and PI3K in airway smooth muscle cell proliferation related to airway remodeling. The lab contributes to national surveillance systems for pediatric respiratory infections and antimicrobial resistance in Korea.
Professor Hxiangxi H. Kim's research lab specializes in clinical neuropsychology and neurogenic communication disorders, with a focus on developing and validating culturally adapted assessment tools for Korean-speaking populations. The lab investigates language and cognitive impairments in neurological conditions such as aphasia, mild cognitive impairment, and stroke-related deficits, emphasizing the development of reliable, norm-referenced instruments like the Korean versions of the Boston Naming Test and Western Aphasia Battery. Research also extends to swallowing disorders (dysphagia) in older adults and the potential of mobile health (mHealth) interventions to improve rehabilitation outcomes through accessible, technology-based training. The lab integrates quantitative and qualitative methods to enhance diagnostic accuracy and patient-centered care in clinical practice.
Professor Kyeongha Kwon's research lab specializes in the development of soft, wearable, and implantable electronic systems for biomedical applications. The lab focuses on creating miniaturized, multifunctional sensors and neuromodulation interfaces that enable continuous, real-time monitoring of physiological signals such as pressure, temperature, mechanical forces, and electrical activity in living tissues. Key research directions include the design of bio-integrated microsystems for chronic wound healing, neural interface technologies using 3D spheroid models, and smart prosthetic socket monitoring systems to improve patient comfort and prevent complications. The lab emphasizes innovation in materials science, microfabrication, and wireless sensing to advance personalized and preventive healthcare solutions.
Professor Yun-Hyuk Jung's research lab specializes in human-centered technology studies, focusing on user behavior, perception, and social cognition in digital environments. The lab explores how individuals interact with emerging technologies—such as smartphones, smart speakers, and virtual worlds—through psychological and sociocultural lenses, emphasizing user empowerment, privacy concerns, and sense of presence. Key research directions include the value-laden use of technology, social representations of digital phenomena, and the emotional and cognitive impacts of pervasive technologies in private and virtual spaces.
Professor A-ra Cho's research lab focuses on innate immunity, host-pathogen interactions, and the pathogenesis of inflammatory and respiratory diseases. The lab investigates neutrophil extracellular traps (NETs) in airway diseases, the role of commensal bacteria in modulating antiviral immunity, and the mechanisms of antibiotic resistance in *Staphylococcus aureus*. Additionally, the lab explores the toxicological impacts of environmental endocrine disruptors like BPA and phthalates on reproductive health, as well as the molecular pathways underlying drug-induced toxicity and chemotherapeutic efficacy.
Professor Byeong-Geol Choi's research lab specializes in cosmochemistry and presolar stardust analysis, focusing on the isotopic compositions of refractory minerals in primitive meteorites to unravel the origins of solar system materials. The lab investigates presolar grains—such as corundum, hibonite, and oxides—formed in stellar outflows from asymptotic giant branch (AGB) stars and supernovae, using high-precision secondary ion mass spectrometry (SIMS) to trace nucleosynthetic processes. Their work provides critical insights into stellar evolution, the chemical heterogeneity of the solar nebula, and the early history of the solar system.
Professor Lee Suk's research lab specializes in interdisciplinary systems engineering with a focus on intelligent network management, biomedical systems, and radiation therapy optimization. The lab develops advanced computational methods—such as fuzzy logic, genetic algorithms, and neural networks—for real-time performance optimization in communication networks, particularly in industrial and medical environments. It also conducts clinical and physiological research on renal complications in infectious diseases and explores innovative techniques in radiation oncology to minimize treatment side effects through precise target volume management. The lab bridges engineering innovation with clinical application, emphasizing patient safety and system efficiency.
Professor Keun-Hwan Kim's research lab specializes in computational and structural biology, focusing on the molecular mechanisms of viral pathogenesis and cancer development. The lab investigates host-virus interactions, particularly how hepatitis B virus (HBV) proteins like HBx subvert cellular signaling pathways—such as NF-κB and autophagy—to promote viral persistence and oncogenesis. Using in silico virtual screening, molecular modeling, and structural biology approaches, the lab identifies novel drug targets and develops therapeutic strategies against HBV and related cancers. The research also extends to post-translational modifications like protein tyrosine nitration and their roles in disease progression.
Professor Chae-yeun Park's research lab focuses on environmental health and climate change impacts, with a strong emphasis on air pollution, fire emissions, and their effects on human health and ecosystems. The lab investigates the health burdens of fine particulate matter (PM2.5) from biomass and deforestation fires, as well as the role of socioeconomic and climatic factors in shaping future fire regimes. It also explores adaptation strategies for urban heat stress and the vulnerability of renewable energy infrastructure—such as photovoltaic power stations—to climate-induced hazards like landslides. The lab integrates environmental modeling, remote sensing, and public health analysis to support climate-resilient policy and planning.
Professor Jeong Pil-wook's research lab specializes in cerebrovascular diseases, with a focus on intracerebral hemorrhage, ischemic stroke, and cerebral small vessel disease. The lab investigates hemodynamic factors such as blood pressure variability, neuroimaging markers like white matter hyperintensities and cerebral microbleeds, and metabolic influences including vitamin D and calcification in intracranial arteries. A key emphasis is placed on understanding sex differences and clinical predictors of treatment adherence, particularly in Asian populations.
Professor Jiwon Kim's research lab specializes in the design, synthesis, and application of advanced nanomaterials for sustainable energy and optoelectronic technologies. Key research directions include the development of perovskite nanocrystals and quantum dots for high-efficiency lighting and photovoltaic devices, with a focus on hot-carrier dynamics and defect engineering. The lab also explores electrocatalytic systems for sustainable chemical transformations, such as the ambient-temperature partial oxidation of methane into valuable oxygenates using electrogenerated reactive species. Additionally, the group investigates functional carbon materials derived from metal-organic frameworks for energy conversion and storage applications.
Professor Jaegyun Shin's research lab focuses on cellular signaling pathways, particularly those involving ubiquitin-binding proteins, mitophagy, and nuclear receptor regulation. The lab investigates molecular mechanisms underlying protein degradation, mitochondrial homeostasis, and inflammatory responses, with a strong emphasis on p62 and its role in selective autophagy and disease. Key research directions include the regulation of inflammasome activation, stress-induced proteins like SESN2, and transcriptional coactivators such as PELP1 in hormone signaling. The lab also explores viral pathogenesis, particularly how viral proteins like West Nile virus capsid manipulate host cell death pathways through p53 and HDM2 interactions.