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 Hyeongseok Ko's research lab specializes in character animation and simulation, focusing on the integration of kinematics and dynamics for realistic human motion synthesis. The lab develops real-time motion retargeting techniques that preserve original motion characteristics while adapting to different body types, leveraging inverse rate control and kinematic redundancy. It also explores inverse dynamics and constrained fluid solvers to enhance physical fidelity and computational efficiency in animation and simulation. The lab's work bridges the gap between biomechanical plausibility and visual realism in virtual characters.
Professor Hyuk Soo Han's research lab specializes in orthopedic biomechanics and joint replacement surgery, with a primary focus on improving outcomes in total knee arthroplasty (TKA). The lab investigates implant design, component fixation, and surgical techniques to reduce complications such as aseptic loosening and periprosthetic fractures. Research also emphasizes patient-specific factors—like preoperative glycemic control and tibial alignment—impacting surgical success and long-term implant survival.
Professor Seung Woo Seo's research lab specializes in spinal deformity and spinal cord pathology, with a strong focus on the anatomical and radiological evaluation of congenital and adolescent idiopathic scoliosis. The lab investigates the underlying mechanisms of vertebral and disc wedging using imaging techniques such as MRI, particularly examining intraspinal abnormalities like tethered cord and their association with spinal malformations. Research also extends to the detailed neuroanatomy of lumbar nerve roots and their relationship to intervertebral discs, contributing to improved surgical planning and outcomes. The lab emphasizes diagnostic accuracy and prognostic evaluation in spinal disorders through rigorous clinical and anatomical studies.
Professor Hyunjin Kim's research lab focuses on the molecular mechanisms of transient receptor potential (TRP) channels, particularly TRPML3 (MCOLN3), in cellular calcium signaling, membrane trafficking, and autophagy. The lab investigates how TRPML3's dynamic subcellular localization and post-translational modifications—such as palmitoylation—regulate its function in endocytosis, autophagosome formation, and lysosomal homeostasis. A central theme is understanding the pathophysiological roles of TRPML3 mutations in neurodegenerative and lysosomal storage disorders. The lab integrates electrophysiology, live-cell imaging, and molecular biology to dissect the channel's regulation by extracellular ions and G-proteins, with a strong emphasis on calcium-dependent cellular processes.
Professor Hye Yeon Park's research lab focuses on environmental health and developmental toxicology, with a primary emphasis on the neurodevelopmental, immunological, and psychological impacts of prenatal exposure to environmental pollutants such as polychlorinated biphenyls (PCBs) and traffic-related air pollution. The lab investigates the mechanisms by which these toxins affect fetal and infant development, particularly through biomarkers like hydroxylated PCB metabolites and ultrafine particulate matter. A key research direction involves longitudinal cohort studies in Eastern Slovakia and California to assess long-term health outcomes in children and adults. The lab also explores psychosocial interventions in chronic illness, particularly in breast cancer and chronic pain populations.
Professor Ji-young Lee's research lab focuses on antimicrobial resistance, particularly the molecular mechanisms underlying colistin resistance in Gram-negative pathogens such as Pseudomonas aeruginosa and Acinetobacter baumannii. The lab investigates genetic and genomic determinants of resistance, including lipid A modifications and regulatory systems like PhoPQ, and examines the stability and reversibility of resistance traits. Additionally, the lab explores the psychological and social dimensions of misinformation, especially AI-generated deepfake news, and their impact on public perception and risk cognition. The integration of microbiology, genomics, and social science reflects a multidisciplinary approach to addressing global health challenges.
Professor Young Lee's research lab specializes in public finance, fiscal policy, and institutional economics, with a strong focus on fiscal decentralization, tax burden analysis, and the impact of e-government on environmental sustainability. The lab investigates how institutional frameworks, competition, and ownership structures affect economic efficiency, particularly in transitional and developing economies. It also conducts forward-looking policy analysis using econometric modeling and scenario-based forecasting, especially in education and demographic planning.
Professor Hoo Jung Lee's research lab specializes in the development and characterization of advanced functional thin films and nanostructured materials for microelectromechanical systems (MEMS) and energy applications. The lab focuses on understanding the microstructure-property relationships in materials such as NiTi shape memory alloys, aluminum-based alloys, and graphene-supported nanocatalysts through in situ transmission electron microscopy and micro-mechanical testing. Key research directions include phase transformation kinetics, grain growth dynamics, and the design of earth-abundant electrocatalysts for hydrogen evolution reactions.
Professor Hyunhwan Seong's research lab specializes in urological oncology and minimally invasive surgical techniques, with a strong focus on upper tract urothelial carcinoma (UTUC) and renal cancer. The lab investigates prognostic biomarkers such as erythrocyte sedimentation rate (ESR) and neutrophil-lymphocyte ratio (NLR) to improve patient outcomes after radical nephroureterectomy. It also evaluates the impact of diagnostic and therapeutic interventions—like ureterorenoscopy and radiofrequency ablation—on oncological and renal functional outcomes in urological malignancies.
Professor Young Ho Choi's research lab specializes in translational and experimental medicine, with a focus on interventional radiology, urological physiology, and reproductive biotechnology. The lab investigates minimally invasive techniques for managing gastrointestinal and urological disorders, including endovascular therapies for variceal bleeding and ureteral flow dynamics in pathological conditions. It also conducts advanced in vitro studies on gamete physiology and oocyte maturation, aiming to improve assisted reproductive technologies in equine and other species. The integration of clinical outcomes with mechanistic biological research defines the lab’s interdisciplinary approach.
Professor Chang Woo Lee's research lab specializes in dermatological disorders, with a focus on rare genetic syndromes such as Cowden syndrome, drug-induced cutaneous reactions like acetaminophen-induced purpuric dermatosis, and autoimmune bullous diseases such as sun-induced localized bullous pemphigoid. The lab also investigates inflammatory and pigmentary skin conditions, including erythromelanosis follicularis faciei et colli with calcification, and explores the molecular mechanisms underlying skin pathology. Structural biology is another key area, particularly the crystallographic analysis of ribonucleases like oligoribonuclease, contributing to understanding RNA metabolism and degradation.
Professor Kyoungdoug Min's research lab specializes in advanced internal combustion engines, focusing on dual-fuel combustion systems that combine gasoline and diesel fuels to achieve high thermal efficiency and low emissions. The lab investigates combustion characteristics, heat release rate dynamics, and optimal fuel blending strategies using single-cylinder engine experiments to extend operational load limits. Key research directions include precise control of injection timing, fuel reactivity, and energy conversion efficiency in compression ignition engines. The lab's work contributes to the development of cleaner, more efficient engine technologies for sustainable transportation.
Professor Yun Bin Lee's research lab focuses on hepatology and molecular mechanisms underlying liver diseases, particularly hepatocellular carcinoma (HCC) in the context of chronic hepatitis B (CHB) and metabolic liver disorders. The lab investigates the interplay between metabolic factors, viral hepatitis, and cancer risk, with a strong emphasis on identifying modifiable risk factors and evaluating novel therapeutic strategies such as radioembolization and immunotherapy. They also explore the impact of pharmacological agents like aspirin and antiviral therapies on disease progression and outcomes in large population-based cohorts.
Professor Dong Wook Choi's research lab specializes in molecular and cellular biology, with a focus on cancer biology, mitochondrial dynamics, and the pathogenesis of viral infections such as SARS-CoV-2. The lab investigates key regulatory mechanisms in cell death, protein degradation, and metabolic reprogramming in diseases like hepatocellular carcinoma and colorectal cancer. It also explores the therapeutic potential of natural compounds, particularly coffee-derived molecules, in targeting stress response pathways in cancer cells. The integration of multi-omics data and systems biology approaches is central to identifying disease-associated genes and biomarkers.
Professor Woojae Jeong's research lab specializes in the design and fabrication of biomimetic nanomaterials for regenerative medicine and biomedical applications. The lab focuses on creating hierarchically structured, bioinspired materials using genetically engineered viruses, peptide amphiphiles, and functionalized microspheres to guide cell behavior and tissue regeneration. Key research directions include the development of stimuli-responsive and bioactive scaffolds through directed self-assembly, biomimetic mineralization, and virus-based nanomaterial engineering for applications in bone and neural tissue engineering. The lab also explores functionalization of filtration materials for antiviral applications using natural molecules like tannic acid.
Professor Ha Gon Jeon's research lab specializes in computational imaging and light field processing, focusing on advancing depth estimation, super-resolution, and focus-based depth sensing using novel imaging hardware and deep learning. The lab develops data-driven algorithms that enhance the accuracy and efficiency of depth maps from lenslet light field cameras, addressing challenges such as low resolution, noise, and non-uniform degradation. Key research directions include multi-view stereo matching with sub-pixel accuracy, joint spatial-angular super-resolution of light field images, and robust focus measure design for depth from focus. The lab integrates physics-based modeling with end-to-end learning to improve performance in real-world, uncontrolled environments.
Professor Hyomin Lee's research lab specializes in advanced materials and surface engineering, focusing on the design and fabrication of functional micro- and nanostructured materials for biomedical, energy, and environmental applications. Key research directions include droplet microfluidics for precise microparticle fabrication, electrocatalytic CO₂ conversion using tailored copper-based electrodes, and the development of multifunctional coatings with antifogging, self-cleaning, and optical properties. The lab also explores stimuli-responsive polymer systems and hydrogen-bonded multilayer films for controlled release and enhanced stability in challenging environments.
Professor Sung Min Kim's research lab specializes in advanced materials and catalysis for sustainable energy and environmental applications. The lab focuses on developing novel catalysts—particularly bimetallic and nanostructured systems—for carbon dioxide and methane utilization, including dry reforming of methane and integrated CO2 conversion processes. A key emphasis is placed on designing transparent, flexible, and high-performance electronic devices such as gas sensors and memory devices using 2D heterostructures, graphene, and carbon nanotubes. The lab also explores enantioselective synthesis using chiral transition metal complexes for high-value chemical production.
Professor Jaechul Lim's research lab focuses on post-transcriptional gene regulation, particularly the role of RNA modifications and mRNA tail dynamics in cellular homeostasis and disease. The lab investigates how polyadenylation, deadenylation, and guanylation of mRNA tails control mRNA stability, translation, and immune cell function. Key research directions include the molecular mechanisms of T cell quiescence, the regulation of maternal mRNA in early development, and the transfer of immune cell membrane proteins to cancer cells via trogocytosis, contributing to immunosuppression in tumors. The lab also explores the lipid-binding properties of adiponectin and related C1q/TNF-related proteins, linking metabolism and immunity.
Professor Hyoungsoo Kim's research lab specializes in interfacial phenomena and microfluidics, focusing on the dynamics of droplet evaporation, Marangoni flows, and surface-mediated assembly processes. The lab investigates how surfactants, polymers, and interfacial forces govern the formation of uniform coatings, patterned deposits, and functional nanofilms. Using advanced experimental techniques such as PIV, Tomo-PIV, and particle tracking, combined with theoretical modeling, the lab explores the fundamental mechanisms behind flow control and self-assembly at liquid interfaces. Their work bridges soft matter physics, materials science, and microfluidic engineering to enable applications in sensing, separation, and portable fluidic devices.