探索全球顶尖大学的研究室——研究领域与主要论文一览无余。
Professor Yuyong Kim's research lab focuses on animal nutrition and feed formulation, with a strong emphasis on optimizing dietary energy and protein levels to improve growth performance, health, and economic efficiency in livestock such as broiler chickens, pigs, and insects. The lab investigates alternative feed ingredients—like sugar beet pulp, lysophospholipids, and edible insects (e.g., *Tenebrio molitor*)—to enhance gut health, reduce reliance on antibiotics or zinc oxide, and support sustainable animal production. Research also explores phase feeding strategies and nutrient digestibility to balance animal welfare, productivity, and environmental sustainability.
Professor Dong Sub Kim's research lab specializes in ultrafast optics, plasmonics, and nanophotonics, focusing on the coherent manipulation of light at the nanoscale. The lab investigates quantum and classical light-matter interactions in hybrid nanostructures, including plasmonic nanocrystals, metal-semiconductor heterostructures, and subwavelength apertures, with an emphasis on ultrafast dynamics and near-field control. Key research directions include the generation and control of terahertz radiation, the observation of quantum phenomena such as subradiance in plasmonic systems, and the development of advanced spectroscopic techniques with sub-wavelength and sub-cycle resolution. The lab combines experimental ultrafast spectroscopy with theoretical modeling to explore fundamental light-matter interactions in metamaterials and 2D materials.
Professor Heung Kwon Oh's research lab specializes in colorectal and general surgery, with a strong focus on improving surgical outcomes and patient recovery through innovative techniques and technologies. Key research directions include optimizing hernia repair in patients with liver cirrhosis, enhancing bowel function after ileostomy reversal using probiotics, and developing regenerative therapies such as myoblast transplantation for fecal incontinence. The lab also explores the impact of digital health and artificial intelligence on medical information dissemination and patient education.
Professor Gi-hoon Nam's research lab specializes in developing innovative exosome-based nanotherapeutics for cancer immunotherapy. The lab focuses on engineering exosomes to deliver therapeutic molecules—such as membrane proteins, miRNAs, and chemotherapeutic agents—while leveraging their natural ability to mediate intercellular communication and penetrate tumor microenvironments. Key research directions include enhancing antigen presentation by dendritic cells and tumor-associated macrophages, modulating the tumor immune microenvironment through ROCK inhibition or TLR4 activation, and utilizing enzymatically active exosomes to degrade extracellular matrix barriers in tumors. The lab integrates nanotechnology with immunology to design smart delivery systems that amplify antitumor immunity and overcome immunosuppressive mechanisms in cancer.
Professor Sung-Wook Kwon's research lab specializes in the integration of advanced digital technologies—such as Cyber-Physical Systems (CPS), Digital Twins (DT), Augmented Reality (AR), and 3D point cloud modeling—into construction and civil engineering processes. The lab focuses on enhancing construction site operations through real-time monitoring, automation, and data-driven decision-making using IoT and BIM-integrated systems. Additionally, the lab conducts molecular genetics research on rice, particularly targeting starch quality and disease resistance through gene mapping and mutation analysis. This dual focus bridges smart construction technologies with agricultural biotechnology, emphasizing innovation in both infrastructure and food science.
Professor Oh Joon Kwon's research lab specializes in computational fluid dynamics, aeroelasticity, and high-fidelity simulation of complex aerodynamic flows. The lab focuses on developing advanced numerical methods for unstructured mesh solvers, dynamic mesh adaptation, and parallel computing to model unsteady, viscous, and compressible flows. Key research directions include rotorcraft aerodynamics, wind turbine aeroelasticity, and flow physics in shock tubes, with applications ranging from rotor blade performance to ice-induced stall effects on wings. The lab integrates turbulence modeling, structural dynamics, and real-time coupling between aerodynamic and structural solvers for accurate prediction of flight and offshore energy systems.
Professor Jae Hee Cho's research lab specializes in advanced endoscopic and interventional radiological techniques for gastrointestinal diseases, with a focus on improving diagnostic accuracy and therapeutic outcomes in pancreatic and biliary tract disorders. The lab investigates innovative ablation technologies such as temperature-controlled radiofrequency ablation (RFA) for bile duct and biliary strictures, and explores the role of molecular pathways—particularly NRF2—in chemoresistance of pancreatic ductal adenocarcinoma. Additionally, the lab pioneers the integration of artificial intelligence in endoscopic ultrasound (EUS) for real-time diagnosis of gastrointestinal neoplasms, enhancing precision in early cancer detection.
Professor Jeong-bin Kim's research lab focuses on neurological and neurodegenerative disorders, with a strong emphasis on understanding the pathophysiology of multiple sclerosis, epilepsy, migraine, and Alzheimer’s disease through advanced neuroimaging and neurophysiological techniques. The lab investigates immune modulation in autoimmune diseases, particularly the role of dendritic cells and monocytes in therapeutic responses, and explores brain network alterations in epilepsy and cognitive decline. Using multimodal imaging (fMRI, EEG, MRI), graph theory, and clinical correlation, the lab aims to identify early biomarkers and develop non-invasive interventions for neurodegenerative and neuropsychiatric conditions. A key focus is on translating neuroimaging and electrophysiological findings into clinical tools for early diagnosis and personalized treatment.
Professor Dongkeun Jung's research lab specializes in plasma-based surface modification and thin film deposition for advanced applications in biomedicine, renewable energy, and microelectronics. The lab focuses on developing functional coatings—such as plasma-polymerized films and tunnel junctions—using plasma-enhanced chemical vapor deposition (PECVD) to enhance surface properties like biocompatibility, dielectric performance, and electrical conductivity. Key research directions include improving cell-surface interactions for tissue engineering, reducing biofouling in medical devices, and optimizing high-efficiency multi-junction solar cells through novel heteroepitaxial tunnel diodes.
Professor Hong-i Park's research lab specializes in the development and characterization of advanced phosphor materials for solid-state lighting and display applications. The lab focuses on rare-earth doped scintillators and phosphors, particularly alkaline earth silicates and orthosilicates, with an emphasis on tuning luminescence properties through crystal field engineering and energy transfer mechanisms. Key research directions include the synthesis of single-crystal and nanoscale phosphors, understanding defect and host lattice effects on optical properties, and applying spectroscopic techniques such as Raman and electron paramagnetic resonance to probe electronic structures and phonon interactions. The lab also investigates quantum dot-host matrix interactions and energy transfer dynamics to optimize white-light emission for high-color-rendering LEDs.
Professor Kyu Tae Kim's research lab specializes in advanced energy systems, with a primary focus on next-generation all-solid-state batteries and thermoacoustic dynamics in gas turbines. The lab investigates innovative materials such as polymeric binders and protective coatings for solid electrolytes to enhance stability and scalability in solid-state battery applications. Simultaneously, it explores complex collective behaviors in thermoacoustic systems, aiming to mitigate combustion instabilities in low-emission gas turbines through advanced dynamics and synchronization analysis.
Professor Gap-Soo Kim's research lab specializes in transplant surgery and perioperative critical care, with a strong focus on improving outcomes in liver transplantation. The lab investigates key factors influencing post-transplant survival, including blood transfusion practices, cardiac biomarkers, donor organ characteristics (such as donor sex), and anesthetic techniques in high-risk pediatric and adult patients. A central theme is optimizing patient selection and perioperative management to reduce complications and mortality, particularly in patients with hepatocellular carcinoma (HCC). The lab also explores the impact of blood conservation strategies—like leukoreduced autotransfusion—on oncological outcomes in advanced HCC.
Professor Dongwoo Shin's research lab focuses on bacterial gene regulation, particularly the molecular mechanisms underlying virulence and stress response in enteric pathogens such as *Salmonella* and *E. coli*. The lab investigates two-component systems—especially the PhoP/PhoQ regulatory system—through integrative genomics, promoter analysis, and systems-level approaches to understand how bacteria adapt to host environments and regulate virulence. A key focus is on the dynamics of transcriptional regulation, including feedback loops and bistable activation, as well as the identification of novel antibacterial compounds targeting persistent bacterial cells.
Professor Jeong-Mok Kim's research lab specializes in antimicrobial agents and food safety, focusing on the antibacterial properties of essential oil components such as carvacrol, citral, and geraniol against foodborne pathogens. The lab also investigates molecular mechanisms of protein degradation, particularly the N-end rule pathways in regulating cellular signaling and blood pressure. Additionally, the lab explores microbial resistance mechanisms, including clarithromycin resistance in *Helicobacter pylori*, and evaluates the safety of chemical disinfectants like chlorine dioxide in seafood processing. These interdisciplinary efforts bridge microbiology, biochemistry, and food science to address public health and food safety challenges.
Professor Sang Hoon Kwon's research focuses on tectonic processes, particularly the kinematics and dynamics of fold-thrust belts and basin inversion in convergent margins. His work integrates field-based structural geology with advanced 3D finite-element modeling to understand crustal shortening, deformation mechanisms, and the evolution of sedimentary basins. He investigates the interplay between basement-involved deformation, fluid-rock interactions, and metamorphic processes in high-pressure terranes, with a strong emphasis on the Sevier orogeny in Utah and Paleozoic tectonics in the Korean Peninsula. His research also spans detrital zircon geochronology and Hf isotope analysis to trace provenance and tectonic evolution.
Professor Jeong Eun Kim's research lab focuses on patient safety, healthcare quality, and the impact of health information on clinical practice. The lab investigates nurses' perceptions of patient safety culture, medical error reporting, and organizational factors influencing patient safety in hospital settings. It also explores the role of digital health tools, such as smartphone applications, in improving healthcare delivery and patient outcomes. Additionally, the lab engages in interdisciplinary research on biomedical materials, including the synthesis of functional polymers for potential medical applications.
Professor Joonwon Kim's research lab specializes in advanced surface engineering and functional materials, with a focus on superhydrophobic and nanomechanical surfaces for anti-icing, anti-fouling, and fluidic applications. The lab explores droplet dynamics, microfluidic cell isolation, and biocompatible hydrogels for medical interventions such as embolization. Key research directions include designing hierarchical nanostructures to manipulate liquid behavior, developing flexible and EMI-resistant sensors for wearable electronics, and creating stimuli-responsive hydrogels for minimally invasive endovascular treatments.
Professor Dong-Hyun Lee's research lab specializes in translational oncology and biomedical innovation, focusing on liquid biopsy applications in urological cancers, particularly bladder cancer. The lab investigates cell-free and exosomal DNA from urine for non-invasive genomic profiling, explores biomarkers like telomerase activity for early detection, and evaluates metabolic and molecular outcomes following urological surgeries. Additionally, the lab extends into bioactive natural compounds and advanced nanomaterials, demonstrating a multidisciplinary approach bridging clinical urology, molecular diagnostics, and nanotechnology.
Professor Jin Yung Choi's research lab specializes in sustainable environmental systems and advanced energy materials, with a strong focus on integrating geographic information systems (GIS) and hydrological modeling for watershed management. The lab develops innovative, web-based decision support systems (SDSS) to assess and mitigate the impacts of land use changes on water resources. In parallel, the lab pioneers cutting-edge thermoelectric materials—such as nanocrystal thin films and silicon nanowires—for efficient, flexible, and wearable energy harvesting from waste heat. These interdisciplinary efforts aim to address pressing challenges in environmental sustainability and renewable energy conversion.
Professor Min-Kyo Seo's research lab specializes in nanophotonics and plasmonics, focusing on the design, simulation, and experimental realization of ultra-compact photonic and optoelectronic devices at the nanoscale. Key research directions include subwavelength plasmonic cavities, nanowire-based lasers, electrically driven photonic crystal lasers, and metasurface-based 3D holography for advanced optical displays. The lab also explores efficient plasmon detection using 2D materials like graphene, enabling highly integrated photonic circuits with high sensitivity and tunability.