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 Yoon Ho Lee's research lab specializes in the design, fabrication, and application of advanced functional nanomaterials for next-generation optoelectronic and energy conversion devices. The lab focuses on developing flexible and high-performance sensors, thin-film solid oxide fuel cells, perovskite-based photodetectors, and chiral plasmonic nanostructures through innovative nanofabrication techniques such as sputtering, block-copolymer lithography, and mechanical force-induced patterning. Key research directions include enhancing device efficiency via nanostructure engineering, band structure modulation, and scalable thin-film processing for real-world applications in health monitoring and renewable energy.
Professor Jonghun Yoon's research lab specializes in advanced optical materials and smart manufacturing technologies. The lab focuses on the optical and luminescent properties of rare-earth-doped glasses, particularly for applications in fiber optics, solid-state lasers, and optical amplifiers. Additionally, the lab develops innovative real-time monitoring and predictive modeling techniques for industrial processes, such as weld pool analysis and springback prediction in precision-formed tubular components. These interdisciplinary efforts bridge materials science, photonics, and advanced manufacturing.
Professor Jonghun Yoon's research lab specializes in radiation shielding materials, with a primary focus on developing and evaluating novel glass systems—particularly borate-bismuthate and metal oxide-based glasses—for effective protection against ionizing radiation, including gamma rays and neutrons. The lab employs advanced computational methods such as MCNPX, Geant4, FLUKA, and Phy-X/PSD to simulate and validate radiation attenuation properties, emphasizing parameters like mass attenuation coefficient, half-value layer (HVL), mean free path (MFP), and effective atomic number (Zeff). Their work also extends to aluminum matrix composites (AMMCs) for structural applications in high-performance industries, combining materials science with radiation safety. The lab’s interdisciplinary approach bridges nuclear engineering, materials science, and medical imaging, with applications in nuclear facilities, medical diagnostics, and radiation therapy.
Professor Ali Bahadur's research lab specializes in the design and synthesis of advanced nanomaterials for environmental remediation and biomedical applications. Key research directions include the development of visible-light-responsive photocatalysts based on doped metal oxide and carbon nitride heterostructures for dye degradation and water splitting, as well as the engineering of multifunctional nanocarriers for combined cancer therapy through chemotherapy and hyperthermia. The lab also explores sustainable polymer-based coatings and ionomer-modified polyurethanes for enhanced durability and chemical resistance. These efforts are underpinned by a strong focus on materials synthesis, structural characterization, and performance optimization under real-world conditions.
阿部克彦教授の研究室は、ナノスケールの構造を精密に制御するための自己集合型ナノファブリケーション技術に注力しています。特に、層間積層(LbL)法や金属有機フレームワーク(MOF)を前駆体とするナノポーラス炭素の創製が柱であり、エネルギー変換・貯蔵や環境応用に向けた高性能材料の開発を進めています。近年では、MOF由来のナノポーラス炭素の電気化学的特性の解明や、メソポーラス酸化物・珪酸塩の簡易合成法の確立にも貢献しています。
Professor Jong-Hun Kim's research lab focuses on advanced materials science and environmental health, with a strong emphasis on graphene-based nanomaterials and their defect engineering for electronic applications. The lab also conducts impactful research in public health, particularly on viral transmission risks among high-risk populations and the health impacts of air pollution. Additionally, the lab develops innovative, personalized health care solutions, including customized diet recommendations for chronic disease management and novel in-situ methods for measuring building energy efficiency. These interdisciplinary efforts bridge materials science, environmental science, and healthcare innovation.
Professor Jae Seung Kang's research lab focuses on the multifaceted roles of vitamin C (sodium ascorbate) and natural compounds like red ginseng in modulating immune responses, cancer progression, and neurodegenerative diseases. The lab investigates the mechanisms by which these compounds influence immune cell activation, tumor cell apoptosis, iron metabolism in melanoma, and inhibition of key enzymes such as BACE1 involved in Alzheimer’s disease. A central theme is the context-dependent biological effects of vitamin C, particularly its dual role in promoting cell death in cancer cells while protecting against inflammation-induced organ damage. The lab also explores the regulation of angiogenesis through VEGF modulation, highlighting the therapeutic potential of micronutrients in chronic disease prevention and treatment.
Professor Jae Seung Kang's research lab specializes in translational oncology and gastrointestinal cancer research, with a focus on understanding the molecular mechanisms of cancer metastasis, immune evasion, and prognostic biomarkers in gastric and pancreatic cancers. The lab investigates key regulatory molecules such as IL-18, CD70, CD44, and VEGF in tumor microenvironment interactions and evaluates clinical staging systems and diagnostic criteria—particularly for intraductal papillary mucinous neoplasm (IPMN) and ductal bile duct (DBD) cancer—aiming to improve diagnostic accuracy and treatment planning. The lab also contributes to fusion energy research through advanced plasma modeling for the K-DEMO reactor, emphasizing steady-state operation and performance optimization.
Professor Dongho Won's research lab specializes in cybersecurity and privacy-preserving protocols, with a primary focus on designing secure and efficient authentication schemes for resource-constrained environments such as wireless sensor networks (WSNs) and the Internet of Medical Things (IoMT). The lab investigates advanced cryptographic techniques to address critical vulnerabilities like offline password guessing attacks, impersonation, and smart card compromise, particularly in medical and multi-server environments. Their work emphasizes practical security solutions that balance robustness, efficiency, and resilience against emerging cyber threats in e-health and IoT systems.
Professor Jae-Seok Roe's research lab focuses on the molecular mechanisms underlying cancer pathogenesis, with a central emphasis on the roles of tumor suppressor proteins, chromatin regulators, and epigenetic modifiers in tumorigenesis. The lab investigates how mutations in genes such as VHL, KRAS, and transcription factors like C/EBPα and p53 contribute to cancer initiation and progression, particularly in renal cell carcinoma and acute myeloid leukemia. A key direction involves understanding the context-specific sensitivity of cancer cells to epigenetic therapies, including inhibitors targeting histone demethylases and BET proteins. The lab also explores the functional interplay between DNA damage response pathways and tumor suppressor networks, aiming to identify novel therapeutic vulnerabilities in cancer.
Professor James Won-Ki Hong's research lab specializes in computer vision, multimedia analysis, and blockchain technology. The lab focuses on developing robust video understanding techniques, particularly through weakly-supervised learning and pose estimation in challenging domains such as sports video. It also explores decentralized digital ownership and non-fungible tokens (NFTs), emphasizing their technical foundations, standards, and real-world applications. The lab bridges cutting-edge AI with emerging blockchain innovations to solve practical problems in video intelligence and digital asset management.
Professor Hyo Sun Jung's research lab specializes in organizational behavior and human resource management within the hospitality and service industries, with a strong focus on positive psychological constructs such as psychological capital, emotional intelligence, and organizational virtue. The lab investigates how individual well-being, interpersonal treatment (e.g., bullying, social undermining), and organizational climate influence employee outcomes like job satisfaction, engagement, citizenship behavior, and stress-coping strategies. Research also extends to health promotion and literacy, particularly among young adults, highlighting the intersection of personal behavior, education, and public health in service contexts.
Professor Joon-Ho Lee's research lab specializes in applied entomology, population ecology, and genetic evaluation in agricultural and invasive pest systems. The lab investigates insect population dynamics, survivorship, and predator-prey interactions in crop ecosystems, with a focus on pest management and biological control. It also conducts genetic and genomic studies to improve livestock and pest traits, integrating molecular tools with ecological and physiological data. The lab emphasizes sustainable agriculture through understanding pest dispersal, genetic structure, and the role of natural enemies in pest suppression.
Professor Hyunseung Choo's research lab specializes in intelligent networking and distributed systems, with a focus on wireless sensor networks, IoT integration, and UAV communications. The lab develops energy-efficient and scalable solutions for dynamic network management, including density control, processor allocation in 3D torus topologies, and reliable IoT gateway systems. Recent work emphasizes AI-driven optimization using deep reinforcement learning for UAV handover decisions and anomaly detection in industrial systems through advanced deep learning models.
Professor Minjung Lee's research lab specializes in public health behavior, health communication, and health emergency preparedness, with a focus on understanding individual and population-level responses to infectious disease outbreaks. The lab investigates the role of social determinants, risk perception, vaccine hesitancy, and digital communication strategies—particularly mobile alerts and media—during public health emergencies such as COVID-19 and MERS. A central theme is the development of person-centered, equitable public health interventions that enhance knowledge, efficacy beliefs, and timely preventive behaviors.
Professor Sib Sankar Giri's research lab specializes in aquatic animal health, focusing on the development and application of probiotics, plant-based feed additives, and bioactive compounds to enhance growth, immunity, and stress resilience in freshwater fish. The lab investigates microbial and phytochemical interventions—such as *Lactobacillus* spp., banana peel flour, and curcumin—to mitigate environmental toxicants like lead and improve sustainable aquaculture practices. A key focus is on understanding the immunomodulatory and antioxidant mechanisms underlying these protective effects through in vivo and in vitro studies.
Professor Christian Wallraven's research lab focuses on the perception and recognition of facial expressions, with an emphasis on dynamic and multimodal communication. The lab investigates how humans perceive and interpret facial expressions through vision, touch, and motion, exploring the interplay between static and dynamic facial cues. A central theme is the role of holistic versus part-based processing in face recognition, informed by psychophysical experiments and computational modeling. The lab also develops and evaluates realistic facial animations using perceptual quality assessments, bridging computer graphics and cognitive science.
Professor Hayoung Choi's research lab focuses on advancing precision medicine in chronic respiratory diseases, particularly bronchiectasis and tuberculosis. The lab investigates inflammatory endotypes, microbial dysbiosis, and host-microbe interactions to identify treatable traits and improve clinical outcomes. Key research directions include integrating multi-omics data (inflammatory markers, microbiome) to stratify patients, evaluating treatment responses in macrolide-resistant infections, and clarifying the clinical spectrum of pleural tuberculosis with atypical cell profiles. The lab employs large-scale epidemiological data and translational approaches to bridge clinical phenotypes with molecular mechanisms.
Professor Hosung Kim's research lab specializes in neuroimaging and biomedical image analysis, focusing on improving the quality, reliability, and interpretability of brain imaging data. The lab develops advanced computational methods—such as deep learning, motion correction, and image harmonization—to address challenges in MRI acquisition, artifact reduction, and longitudinal brain structure analysis. Key research directions include understanding neurodevelopmental and neurodegenerative brain changes in conditions like premature birth, obstructive sleep apnea, and hearing loss, with a strong emphasis on clinical translation and data standardization.
Professor Bong Hyun Sung's research lab focuses on microbial systems biology, with a strong emphasis on understanding and engineering microbial metabolism and behavior for industrial and biomedical applications. Key research directions include microbial degradation of complex biopolymers like lignin, biofilm formation and its inhibition in biotechnological processes, and the development of minimal-genome strains through genome reduction and synthetic biology approaches. The lab also investigates the physiological and vascular impacts of metabolic conditions such as high cholesterol, linking microbial and host physiology in health and disease. These interdisciplinary efforts integrate systems biology, synthetic biology, and metabolic engineering to design robust microbial platforms for sustainable bioproduction and medical insights.