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 Deog Kyeom Kim's research lab specializes in respiratory and pulmonary diseases, with a strong focus on the genetic and environmental determinants of chronic obstructive pulmonary disease (COPD), asthma, and chronic cough. The lab integrates genomics, imaging (particularly volumetric CT), and clinical epidemiology to identify biomarkers, genetic susceptibility, and structural lung changes associated with smoking-related lung diseases. Their work also extends to skeletal biomechanics, examining vertebral osteophytosis in historical populations to understand age-related and sex-related degenerative changes.
Professor Jin Ha Yoon's research lab focuses on occupational and environmental health, with a strong emphasis on the impact of workplace exposures—such as noise, long working hours, and hazardous materials like crystalline silica—on mental and physical health outcomes. The lab integrates epidemiological data with advanced machine learning techniques, particularly deep learning models, to improve early detection of diseases like tuberculosis using medical imaging and demographic data. Research also explores the societal burden of rare diseases and health disparities, especially among vulnerable populations such as young women and low socioeconomic groups. The lab’s interdisciplinary approach bridges public health, environmental science, and artificial intelligence to inform preventive health policies.
Professor Young Jun Oh's research lab focuses on perioperative medicine and critical care, with a strong emphasis on improving postoperative recovery and managing postoperative pain. The lab investigates novel anesthetic and analgesic strategies—such as regional nerve blocks (e.g., serratus plane block), dexmedetomidine administration, and pharmacological modulation of nitric oxide and arginase pathways—to enhance quality of recovery and hemodynamic stability. Their work spans experimental models of neurodegeneration and vascular dysfunction to clinical trials in thoracic surgery, highlighting a translational approach to optimizing surgical outcomes.
Professor Yuhung Shin's research lab specializes in organizational behavior and industrial-organizational psychology, focusing on the psychological and contextual factors that influence employee motivation, engagement, and performance in dynamic work environments. The lab explores how individual traits, team dynamics, and organizational structures—particularly in virtual or high-pressure settings—affect work outcomes such as job performance, creativity, and organizational citizenship behavior. Key research directions include job crafting, work engagement, virtual team effectiveness, and the role of regulatory focus and emotional tone in team performance. The lab employs mixed-methods and multi-level approaches, often drawing on theories like self-determination theory and the broaden-and-build theory to examine motivational and emotional mechanisms in the workplace.
Professor Sung Ok Han's research lab specializes in metabolic engineering and synthetic biology, focusing on the development of microbial cell factories for sustainable production of biofuels, bioproducts, and industrial enzymes. The lab engineers microorganisms such as *Saccharomyces cerevisiae*, *Bacillus subtilis*, and *Clostridium cellulovorans* to enhance the production of valuable compounds like ethanol, fatty acid ethyl esters (FAEEs), surfactin, and cellulolytic enzymes. Key research directions include optimizing carbon metabolism, regulating enzyme expression, and improving synergistic degradation of complex biomass through genetic and systems-level interventions.
Professor Kyung-Jin Min's research lab focuses on aging biology and environmental influences on lifespan regulation, particularly through insulin/IGF signaling and dietary restriction pathways in model organisms like *Drosophila melanogaster* and *C. elegans*. The lab also investigates environmental and lifestyle factors—such as passive smoking, alcohol consumption, and HPV viral load—that influence cancer progression, especially cervical intraepithelial neoplasia (CIN). Additionally, the lab explores environmental biotechnology applications, including the electrodialysis-based separation of heavy metals from industrial wastewater. These diverse research directions reflect a strong emphasis on translational biomedical research with implications for public health and sustainable technology.
Professor Jeon Hwang-gyun's research lab specializes in urological oncology and minimally invasive surgical techniques, with a strong focus on renal cell carcinoma and surgical outcomes. The lab investigates predictors of renal function recovery after nephrectomy, including preoperative kidney volume and visceral obesity, aiming to improve patient prognosis and surgical planning. Key research directions include optimizing laparoendoscopic single-site surgery through innovative device development and enhancing the accuracy of renal mass biopsy for small and complex tumors. The lab integrates clinical data with radiological and pathological analyses to refine personalized treatment strategies in kidney cancer.
Professor Sang-Won Hwang's research lab focuses on data-centric challenges in machine learning systems, particularly in the areas of data management, data quality, and scalable data processing for production machine learning pipelines. The lab investigates efficient and reliable methods for data validation, cleaning, and enrichment, with a strong emphasis on real-world deployment and system robustness. Key research directions include entity resolution at scale, iterative and hint-driven data processing techniques, and the design of orchestration frameworks that reduce technical debt in ML infrastructure. The lab bridges database systems and machine learning communities to address fundamental challenges in data reliability and system maintainability.
Professor Steven Euijong Whang's research lab focuses on data-centric challenges in machine learning systems, particularly in the areas of data management, data quality, and scalable data processing for production machine learning pipelines. The lab investigates efficient and reliable methods for data validation, cleaning, and transformation, with a strong emphasis on real-world deployment and system robustness. Key research directions include entity resolution at scale, iterative and hint-driven data processing, and the design of orchestration frameworks that reduce technical debt in ML infrastructure. The lab bridges database systems and machine learning communities to address fundamental challenges in data reliability and system maintainability.
Professor Jeong Won Lee's research lab specializes in molecular imaging and nuclear medicine, with a focus on improving diagnostic accuracy and prognostic prediction in oncology and neurodegenerative diseases. The lab investigates the clinical utility of PET/CT and SPECT imaging in pancreatic cancer, hepatocellular carcinoma, and differentiated thyroid cancer, emphasizing metabolic and dopaminergic imaging biomarkers. Additionally, the lab explores novel fluorescent probes for intracellular metal ion detection and manipulation, particularly zinc and mercury, with applications in cellular imaging and theranostics. The integration of advanced imaging techniques with clinical outcomes drives the lab’s translational research mission.
Professor Sungwan Kim's research lab specializes in the intersection of biomedical engineering, neuroscience, and smart education technologies. The lab investigates neural signal-based control systems for robotics and brain-computer interfaces, focusing on motor imagery and non-invasive brain signal decoding for rehabilitation and assistive technologies. It also explores the pedagogical applications of emerging educational technologies, including MOOCs and educational apps, with an emphasis on usability, design, and effectiveness in learning environments. Additionally, the lab contributes to biomedical imaging and computer-aided diagnostics, particularly in colonoscopy for early detection of colorectal cancer precursors like sessile serrated lesions.
Professor Changsoon Cho's research lab specializes in optoelectronic materials and devices, with a primary focus on perovskite-based semiconductors for next-generation light-emitting diodes, lasers, and solar cells. The lab investigates fundamental optical phenomena such as photon recycling, amplified spontaneous emission, and light extraction mechanisms to enhance device efficiency. By combining advanced optical modeling, nanomaterial engineering, and experimental characterization, the lab aims to push the limits of energy conversion and emission efficiency in thin-film optoelectronics. Their work bridges materials science, photonics, and device physics to develop high-performance, solution-processable semiconductors.
Professor Taewook Kang's research lab specializes in the design and synthesis of advanced functional nanomaterials with a focus on mesoporous silica-based adsorbents for selective metal ion recovery, plasmonic nanostructures for ultrasensitive sensing, and hybrid nanomaterials for biomedical applications. The lab develops innovative strategies for nanoparticle assembly, including photothermal and self-assembly techniques, to create highly ordered and tunable nanostructures with enhanced optical and catalytic properties. Key research directions include the rational functionalization of mesoporous materials for selective noble metal ion capture, the engineering of plasmonic core-satellite architectures for single-particle sensing, and the creation of stable liposome/metal nanoparticle hybrids for biomedical use. The lab emphasizes both fundamental understanding and practical applications in environmental remediation, sensing, and biomedicine.
Professor Youseok Eom's research lab specializes in the intersection of social networks, neuroscience, and aging, focusing on how social connectedness influences cognitive health and brain structure across the lifespan. The lab investigates the neural underpinnings of social behavior using neuroimaging and network analysis, particularly examining how brain regions like the orbitofrontal cortex and prefrontal cortex relate to social network size and embeddedness. A key focus is on understanding the role of social integration—especially in older adults and marginalized populations such as North Korean defectors—in maintaining cognitive function and emotional well-being. The lab also explores dyadic and triadic network dynamics, including homophily and information exchange, using both population-based surveys and in-depth qualitative methods.
Professor Youngjune Kang's research lab specializes in the design, synthesis, and functional characterization of advanced nanomaterials, with a focus on colloidal nanostructures, hybrid nanocomposites, and stimuli-responsive photonic materials. The lab develops innovative strategies for the controlled dispersion and assembly of carbon nanotubes and nanoparticles using block copolymer templates, enabling precise engineering of core-shell architectures and hierarchical superstructures. Key research directions include the creation of tunable photonic materials, electrically responsive colloidal systems, and perovskite nanocrystals with high optoelectronic performance. The lab integrates advanced characterization techniques such as electron microscopy, spectroscopy, and AFM to probe structure-property relationships at the nanoscale.
Professor Franklin Bien's research lab specializes in the development of advanced, flexible, and transparent electronic systems for next-generation biomedical and wearable sensing applications. The lab focuses on integrating novel nanomaterials—particularly silver nanowires and graphene hybrids—into stretchable, optically transparent, and wireless-capable sensors for real-time health monitoring. Key research directions include implantable and subcutaneous glucose sensors, multifunctional capacitive sensors for tactile and environmental sensing, and smart contact lenses with noninvasive physiological monitoring capabilities. The lab emphasizes materials innovation, device miniaturization, and system integration for practical, patient-friendly medical technologies.
Professor Jun-Ho Jung's research lab specializes in immunology and therapeutic antibody development, with a focus on identifying and characterizing novel antibodies for infectious diseases and cancer. The lab employs advanced technologies such as phage display and next-generation sequencing to isolate high-affinity antibodies from immune libraries, particularly targeting emerging viral pathogens like SFTS virus and SARS-CoV-2. Additionally, the lab investigates tumor microenvironment modulators, such as gremlin-1, to understand their roles in cancer progression and to develop targeted biologics. The integration of nanotechnology, including SERS-based nanoprobe systems, further enables sensitive and multiplexed detection of disease biomarkers.
Professor Wooyoung Shim's research lab specializes in the design and fabrication of advanced nanomaterials and nanodevices for next-generation electronic and energy technologies. The lab focuses on developing low-cost, scalable, and high-performance sensors—particularly capacitive and thermochromic pressure sensors—by leveraging novel material architectures and surface engineering. Key research directions include bismuth nanowires for thermoelectric and magnetoresistive applications, transparent and flexible sensors with high sensitivity and optical clarity, and 2D materials for nanofluidic and energy conversion systems. The lab emphasizes innovative, accessible fabrication methods that bridge fundamental materials science with practical device integration.
Professor Seung Wook Baek's research lab specializes in advanced energy systems, with a primary focus on high-performance, environmentally sustainable rocket propellants. The lab investigates gelled and metallized liquid propellants—particularly ethanol-based systems—aiming to enhance specific impulse and density while maintaining stability and rheological performance. Research spans experimental formulation, rheological characterization, and computational modeling of radiative heat transfer in combustion chambers, supporting the development of next-generation propulsion systems.
Professor Yoon Ho-ju's research lab specializes in respiratory and environmental health, focusing on the immunological and inflammatory mechanisms underlying airway diseases. The lab investigates the impact of environmental exposures—such as air pollutants, indoor air quality, and occupational agents—on respiratory conditions like asthma, bronchiectasis, and chronic obstructive pulmonary disease (COPD). It also explores the systemic links between chronic inflammatory conditions, such as periodontitis, and respiratory outcomes, including lung cancer. The research integrates clinical epidemiology with molecular immunology to understand disease progression and resolution.