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 Doo-Hwan Bae's research lab specializes in software engineering, with a focus on model-based testing, formal methods, and quality assessment in object-oriented and mobile software systems. The lab develops advanced techniques for test case generation using UML state diagrams, statecharts, and Petri nets, emphasizing control and data flow analysis to improve test coverage and fault detection. It also investigates cohesion metrics and mutation testing, aiming to enhance software maintainability and reliability through rigorous empirical validation.
Professor Bok Jik Lee's research lab specializes in advanced fluid dynamics, energy conversion systems, and sustainable materials, with a strong focus on multiphase flows, combustion science, and thermal energy storage. The lab investigates innovative solutions for clean energy applications, including MILD combustion of alternative fuels like ammonia, phase change materials for thermal storage, and self-cleaning surfaces inspired by nature. Their work also extends to aerospace applications, such as modeling ice accretion on aircraft and developing efficient simulation techniques for complex geometries using immersed boundary methods.
Professor Cheon Gyu Cho's research lab specializes in the development of innovative synthetic methodologies for complex natural products and nitrogen-containing heterocycles. The lab focuses on transition-metal-catalyzed reactions, cycloadditions, and photochemical transformations to enable efficient and selective synthesis of bioactive molecules. Key research directions include tandem and cascade reactions, Fischer indolization strategies, and visible-light-driven processes using earth-abundant reagents and mild conditions.
Professor Ho-Yeon Jung's research lab focuses on the intricate interplay between bone metabolism, endocrine function, and metabolic diseases, particularly in the context of aging, diabetes, and osteoporosis. The lab investigates hormonal and cytokine regulators—such as osteocalcin, interleukin-3, and estrogen receptor variants—that influence bone remodeling, insulin sensitivity, and glucose homeostasis. A central theme is the role of bone-derived hormones in systemic metabolic regulation, with translational studies in both clinical populations and animal models of type 2 diabetes. The lab also explores therapeutic strategies, including taurine supplementation and hormone replacement therapy, to mitigate metabolic and skeletal complications.
Professor Kyu-Won Shim's research lab specializes in pediatric and functional neurosurgery, with a strong focus on minimally invasive endoscopic techniques for complex neurological conditions. The lab investigates innovative applications of 3D-printed cranial implants for craniofacial reconstruction, particularly in patients with skull defects due to trauma, tumor resection, or congenital anomalies. A key research direction involves the endoscopic treatment of epileptogenic lesions such as hypothalamic hamartomas and corpus callosotomy for seizure control, emphasizing safety, efficacy, and improved quality of life. The lab also explores long-term outcomes in pediatric moyamoya disease, advocating for early intervention to preserve neurocognitive function.
Professor Yun-hyung Choi's research lab focuses on environmental and occupational health, with a primary emphasis on the impacts of environmental toxicants—particularly heavy metals and air pollutants—on human health. The lab investigates the associations between exposure to cadmium, lead, mercury, and other pollutants and health outcomes such as hearing loss, sarcopenia, and respiratory health, often integrating data from large-scale population surveys like NHANES. A key research direction involves assessing the synergistic effects of multiple environmental exposures, such as noise, heavy metals, and organic solvents, on sensory and systemic diseases. The lab also develops and applies innovative exposure assessment tools, including those derived from occupational databases like O*NET, to improve epidemiological research on environmental health risks.
Professor Yoo Chul Sang's research lab specializes in hydrological modeling, rainfall-runoff analysis, and sustainable water resource management, with a strong focus on climate change impacts, radar rainfall estimation, and the performance evaluation of low-impact development (LID) and rainwater harvesting systems. The lab develops advanced statistical and hydrological models—such as the IHACRES model and mixed distribution functions—to improve the accuracy of rainfall frequency analysis, gauge network optimization, and flood mitigation strategies. Their work integrates entropy theory, radar bias correction, and curve number methods to quantify the runoff reduction effects of urban stormwater control measures.
Professor Yu Mi Wei's research lab specializes in infectious diseases, with a focus on antimicrobial resistance, emerging pathogens, and clinical microbiology. The lab investigates multidrug-resistant bacterial infections, including carbapenem-resistant Pseudomonas aeruginosa and nontuberculous mycobacteria, as well as rare but significant pathogens like Ochrobactrum anthropi. Their work emphasizes clinical predictors of disease severity, biomarkers for early risk stratification, and the epidemiology of emerging infections such as severe fever with thrombocytopenia syndrome in endemic regions.
Professor Lee Jin-Hyoung's research lab specializes in quantum information science, with a focus on quantum entanglement, quantum teleportation, and decoherence in noisy environments. The lab investigates how quantum correlations and information are preserved or degraded when quantum systems interact with thermal and mixed environments, particularly in the context of quantum communication and quantum computing. Key research directions include entanglement dynamics, correlation information transfer, and the development of robust protocols for quantum teleportation using both discrete and continuous-variable systems.
Professor Fabio Donati's research lab specializes in the atomic-scale engineering of magnetic properties in low-dimensional systems, focusing on single-atom magnets and molecular magnets. The lab investigates how quantum confinement, spin-orbit coupling, and tailored ligand fields can be exploited to achieve ultra-high magnetic anisotropy, magnetic remanence, and long spin relaxation times in individual atoms and molecules. Key research directions include the design of nanomagnetic materials for quantum information and ultra-high-density data storage, using advanced scanning probe microscopy and spectroscopy techniques combined with ab initio calculations.
Professor Sang Yeon Lee's research lab specializes in clinical and molecular genetics of hearing disorders, with a focus on hereditary sensorineural hearing loss and Usher syndrome. The lab investigates disease-causing variants in genes such as USH2A and KCNQ4, emphasizing genotype-phenotype correlations and the pathophysiological mechanisms underlying progressive hearing and vision loss. Additionally, the lab explores surgical and interventional strategies for conditions like pulsatile tinnitus and enlarged vestibular aqueduct, integrating clinical otology with advanced genomic and imaging techniques.
Professor Sangwoo Lim's research lab specializes in the development and characterization of advanced functional materials for energy and electronic applications. Key research directions include the synthesis and optimization of ZnO-based nanostructures—such as nanorods and nanowires—for use in dye-sensitized solar cells and other optoelectronic devices, as well as the fabrication of low-dielectric-constant films for next-generation integrated circuits. The lab focuses on understanding growth mechanisms, surface engineering, and material properties at the nanoscale to enhance device performance.
Professor Sung Hyub Hyun's research lab specializes in medical image analysis and artificial intelligence applications in oncology and ophthalmology. The lab focuses on developing machine learning and deep learning models to improve diagnostic accuracy and prognostic prediction in non-small cell lung cancer (NSCLC) using PET/CT and CT radiomics. A key research direction involves leveraging imaging biomarkers—such as FDG uptake and tumor volume—combined with clinical metadata to enhance early detection and differential diagnosis. The lab also pioneers AI-driven approaches for glaucoma diagnosis using fundus and OCT imaging, aiming to automate and standardize screening processes.
Professor Chang Myeon Song's research lab specializes in head and neck surgery, with a strong focus on minimally invasive and endoscopic surgical techniques for thyroid and parathyroid disorders. The lab investigates surgical outcomes, lymph node metastasis patterns in thyroid cancer—particularly in isthmic papillary thyroid carcinoma—and the long-term functional and cosmetic results of robotic and endoscopic thyroid surgery. Research also emphasizes preserving parathyroid function during total thyroidectomy and optimizing patient-reported outcomes such as sensory disturbance and voice recovery. The lab aims to improve surgical precision, reduce complications, and enhance quality of life after head and neck surgery.
Professor Jae K. Kim's research lab specializes in advanced functional materials and their applications, with a strong focus on tunable photonic devices, such as metasurfaces and metalenses, for dynamic wavefront control and holography. The lab also investigates phase separation-driven nano- and micro-structured polymeric materials, including porous films and membranes, for applications in optics, sensing, and filtration. Additionally, the lab explores human-centered technology development, particularly in virtual reality, by modeling and predicting VR-induced sickness through interactions between human motion and the vestibular system. These interdisciplinary efforts bridge materials science, photonics, and human factors engineering to create smart, responsive, and user-friendly technologies.
Professor Minsu Park's research lab specializes in the design and application of advanced nanomaterials, particularly graphene quantum dots (GQDs) and graphene oxide quantum dots (GOQDs), for optoelectronic and sensing technologies. The lab focuses on manipulating electronic and optical properties—such as singlet–triplet energy splitting and photoluminescence quantum yields—through surface engineering and matrix integration to overcome aggregation-caused quenching and enable high-performance solid-state lighting and sensing. Key research directions include the development of stimuli-responsive nanomaterials for bioimaging, wearable thermal stimulation devices, and highly sensitive heavy metal ion sensors using microfluidic integration. The lab also explores hybrid heterostructures, such as GQD@BNO and III–V semiconductor heterojunctions, for next-generation optoelectronic devices.
Professor Nakhyeon Kim's research lab focuses on antimicrobial resistance and infectious disease management, with a particular emphasis on Staphylococcus aureus and multidrug-resistant Gram-negative pathogens. The lab investigates novel therapeutic strategies, including phage therapy and endolysins, while also evaluating the clinical impact of antibiotic use, such as vancomycin and tigecycline, in critically ill patients. Key research directions include understanding host-pathogen interactions through innate immune receptors like TLR2, improving diagnostic accuracy for persistent infections (e.g., small-colony variants), and optimizing clinical practices to reduce antibiotic overuse and contamination in blood cultures.
Professor Kim Dae-Jin's research lab specializes in computational mechanics and structural engineering, with a focus on advanced numerical methods for fracture mechanics and structural performance evaluation. The lab develops innovative generalized finite element methods (GFEM) to accurately model complex three-dimensional crack problems and global-local interactions in structural systems. Research also extends to structural behavior of reinforced concrete and steel modular systems, particularly under critical loading conditions such as punching shear and fracture. The lab integrates experimental testing with advanced analytical and simulation techniques to enhance structural safety and design efficiency.
Professor WanHee Kim's research lab specializes in regenerative medicine and veterinary surgical innovation, with a focus on tissue engineering and stem cell therapy for bone regeneration. The lab investigates the use of acellular dermal matrices (ADM) combined with adipose-derived mesenchymal stem cells (ASCs) and low-level laser therapy (LLLT) to enhance bone repair in animal models. Additionally, the lab explores minimally invasive surgical techniques, such as single-port retroperitoneoscopic adrenalectomy, to improve outcomes in canine surgery. The integration of biomaterials, stem cells, and advanced imaging techniques underpins the lab’s translational approach to veterinary and comparative medicine.
Professor Kyung Hwan Jo's research lab focuses on interdisciplinary studies spanning public health, linguistic semantics, and food science. The lab investigates health outcomes related to obesity and kidney cancer in Asian populations, explores the syntactic and aspectual distinctions in East Asian languages—particularly the nuances between 'result' and 'telicity' in Korean and Chinese—while also conducting applied research on food preservation using gamma irradiation to enhance shelf life and microbial safety. The lab integrates epidemiological data, corpus-based linguistic analysis, and experimental food science to address both societal health challenges and theoretical questions in language structure.