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 Hwanwoo Lee's research lab focuses on molecular mechanisms underlying bone metabolism and osteoblast differentiation, with a particular emphasis on epigenetic regulation, signaling pathways, and the therapeutic potential of natural compounds. The lab investigates how histone modifications, adipokines like adiponectin, and phytochemicals such as berberine and celastrol influence osteogenic and adipogenic lineage decisions in mesenchymal stem cells. Additionally, the lab explores the anticancer effects of natural products, especially in gastric cancer, highlighting autophagy and apoptosis induction. These studies aim to identify novel therapeutic targets for osteoporosis and cancer.
Professor Myoungsu Shin's research lab specializes in advanced concrete materials and structural engineering, with a focus on improving the seismic performance of reinforced concrete structures through innovative analysis methods and smart materials. The lab investigates the behavior of beam-column joints under cyclic loading, develops conductive cement composites for self-healing and accelerated curing applications, and explores practical finite element modeling techniques for real-world structural systems. A key emphasis is placed on bridging the gap between laboratory research and field implementation, particularly in enhancing durability and sustainability of civil infrastructure.
Professor Jongeun Lee's research lab specializes in computer architecture and compiler optimization, focusing on domain-specific accelerators and reconfigurable computing. The lab develops advanced compilation techniques and hardware-software co-design methodologies to enhance performance, energy efficiency, and code size in configurable processors and coarse-grained reconfigurable architectures (CGRAs). Key research directions include instruction set synthesis, loop mapping algorithms, and static vulnerability analysis for soft error resilience. The lab emphasizes practical, efficient solutions that bridge the gap between algorithmic optimization and custom hardware platforms.
Professor Dae Hee Lee's research lab specializes in knee joint biomechanics and orthopedic surgery, with a primary focus on meniscal pathology, joint alignment, and long-term outcomes following meniscal repair or transplantation. The lab investigates meniscal extrusion, degenerative changes, and the impact of surgical interventions such as partial meniscectomy, high tibial osteotomy, and meniscus allograft transplantation. Key research directions include the correlation between radiological findings—such as meniscal extrusion and joint alignment—with clinical outcomes and the development of predictive models for post-surgical complications.
Professor Jung Kyu Han's research lab specializes in vascular biology and regenerative medicine, with a focus on endothelial cell biology, endothelial progenitor cells (EPCs), and the molecular mechanisms regulating vascular repair and angiogenesis. The lab investigates nuclear receptor signaling—particularly PPAR-δ— in modulating EPC function and paracrine communication with endothelial and skeletal muscle cells. It also explores cellular reprogramming strategies to generate functional endothelial cells from somatic cells, aiming to advance cell-based therapies for ischemic vascular diseases.
Professor Wooseong Jung's research lab focuses on complex systems, network science, and the statistical analysis of socio-economic and biological systems. The lab investigates transportation networks, financial market dynamics, and knowledge diffusion through large-scale data analytics, particularly using citation networks and Wikipedia as empirical datasets. A central theme is understanding systemic behaviors—such as power laws, memory effects, and multiscaling—across diverse systems, from highway traffic to stock market returns and academic publishing practices.
Professor Kyungdu Song's research lab specializes in interventional radiology and image-guided ablation therapies for hepatocellular carcinoma (HCC), with a focus on improving the accuracy, feasibility, and outcomes of percutaneous radiofrequency ablation (RFA) and cryoablation. The lab investigates advanced medical imaging techniques—particularly US/MRI and CT fusion imaging—to enhance lesion visibility and targeting in small or subcentimeter HCCs that are difficult to detect with conventional ultrasound. Key research directions include predicting microvascular invasion risk, optimizing treatment selection between surgical resection and ablation, and evaluating long-term survival and recurrence outcomes. The lab also explores novel imaging biomarkers, such as dual-energy CT for renal mass characterization, to support personalized cancer management.
Professor Sung Soo Lee's research lab specializes in molecular and cellular mechanisms underlying signal transduction in mammalian systems, with a strong focus on protein tyrosine kinases (PTKs) and their substrate recognition. The lab investigates the structural and functional basis of kinase-substrate interactions, particularly the identification of substrate-docking sites that govern signaling fidelity. Additional research directions include the impact of lifestyle interventions—such as aerobic exercise—on neurotrophic and inflammatory factors in pediatric metabolic disorders, as well as clinical outcomes related to pediatric and young adult conditions like spontaneous pneumothorax and post-vaccination myocarditis. The lab integrates structural biology, molecular pharmacology, and clinical translational research to understand disease mechanisms and improve therapeutic strategies.
Professor Jae Eun Oh's research lab specializes in the durability and microstructural evolution of cementitious materials, particularly focusing on chloride binding mechanisms in alkali-activated materials such as fly ash and slag-based systems. The lab investigates the formation of chloride-bearing phases, including zeolites and ettringite, and their role in immobilizing chlorides—critical for enhancing the long-term performance of concrete in aggressive environments like seawater exposure. Advanced characterization techniques such as STXM, XANES, and XRD are employed to study phase transformations and ion exchange processes at the nanoscale. The lab’s work contributes significantly to the development of sustainable, chloride-resistant construction materials.
Professor Young-Bin Park's research lab specializes in advanced nanomaterials and their applications in thermal management and flexible electronics. The lab focuses on developing novel nanofluids, such as CuO-graphene oxide nanocomposite-based nanofluids, to enhance critical heat flux in boiling heat transfer systems, aiming for sustainable and efficient thermal solutions. Concurrently, the lab pioneers bioinspired flexible electronic skins with high sensitivity to multimodal mechanical stimuli, leveraging microstructured architectures and carbon nanotubes for next-generation wearable sensors and robotics. The research bridges nanomaterial synthesis, functional device design, and real-world applications in energy, healthcare, and smart systems.
Professor Cheol-Hwan Park's research lab specializes in advanced medical imaging and reconstructive surgery, with a focus on improving diagnostic accuracy in cardiovascular and musculoskeletal conditions through innovative CT and MRI techniques. The lab also conducts pioneering work in microvascular reconstruction, particularly using anatomically reliable flaps such as the chondrocutaneous postauricular flap for complex facial defects. Additionally, the lab contributes to the standardization of imaging protocols and anatomical classification systems, especially in congenital ear deformities and lung transplantation size matching. Their interdisciplinary approach bridges radiology, cardiac imaging, and plastic surgery to enhance clinical outcomes through precise, non-invasive diagnostics and safe, aesthetic surgical reconstruction.
Professor Naomichi Yamamoto's research lab specializes in atmospheric microbiology, focusing on the sources, transport, and deposition of airborne fungi and bacteria in urban and indoor environments. The lab investigates the seasonal and size-resolved dynamics of fungal and bacterial communities, emphasizing their impacts on human health, particularly respiratory diseases like asthma. Using advanced molecular techniques such as quantitative PCR and high-throughput sequencing, the lab quantifies microbial exposure and apportions indoor and outdoor sources through mass balance modeling. Their work bridges environmental science, public health, and aerobiology to understand the role of atmospheric microbes in global biogeochemical cycles and human exposure.
Professor Jeong Ok Lee's research lab focuses on population-based epidemiological studies, particularly on iron deficiency and its related health outcomes in diverse demographic groups, with a strong emphasis on gender and age-specific prevalence and risk factors. The lab also investigates genetic and pharmacogenetic aspects using lymphoblastoid cell lines, exploring gene expression changes during long-term culture and their clinical implications. Additionally, the lab contributes to oncology research, examining treatment responses and outcomes in rare cancers such as adrenocortical carcinoma and hairy cell leukemia, particularly in the context of targeted therapies and chemotherapy resistance. The integration of clinical data with molecular and population-level analyses defines the lab’s translational research approach.
Professor Jae Seung Kang's research lab focuses on immunology and cancer biology, with a particular emphasis on the role of metabolic enzymes and inflammatory mediators in autoimmune diseases and tumor immune evasion. The lab investigates molecular mechanisms underlying immune cell activation, including the cell-surface expression of α-enolase in rheumatoid arthritis and the immunomodulatory effects of natural compounds like red ginseng and vitamin C. Additionally, the lab explores the regulation of cancer metastasis through cytokines such as IL-18 and the impact of micronutrients like vitamin C on tumor cell iron metabolism and apoptosis. Their work bridges basic immunology, translational medicine, and therapeutic development.
Professor Sanguine Byun's research lab focuses on the molecular mechanisms underlying skin cancer, aging, and inflammation, with a particular emphasis on identifying natural compounds as chemopreventive and therapeutic agents. The lab investigates the roles of key signaling pathways—such as NF-κB, AP-1, Src kinase, and PKCε—in UV-induced skin damage and carcinogenesis, and explores how autophagy modulates immune responses and cancer progression. Using in vitro models like JB6 P+ cells and in vivo systems such as SKH-1 hairless mice, the lab evaluates the protective effects of dietary flavonoids like luteolin, quercetin, and apigenin against skin pathologies. The research also delves into novel therapeutic targets, such as USP8, in non-small cell lung cancer, especially in the context of drug resistance.
Professor Hyung-Jin Lee's research lab specializes in abdominal radiology and medical imaging, with a primary focus on the diagnostic and prognostic evaluation of liver and pancreatic malignancies using advanced cross-sectional imaging techniques. The lab investigates the histopathological and molecular correlates of imaging features in hepatocellular carcinoma (HCC) and cholangiocarcinoma, particularly the role of tumor microenvironment interactions—such as cancer-associated fibroblasts and epithelial cells—in regulating biomarkers like KRT19. They also develop and validate novel imaging criteria, especially using gadoxetate-enhanced MRI (Gd-EOB-MRI), to improve early detection and characterization of liver tumors. Their work bridges radiological imaging with molecular pathology to enhance precision diagnosis and clinical decision-making in hepatobiliary diseases.
Professor Changsik Song's research lab specializes in the design and synthesis of advanced functional materials, with a strong focus on sustainable and biocompatible materials for biomedical and energy applications. Key research directions include the development of conductive hydrogels for neural tissue engineering, eco-friendly synthesis of polyurethanes using biomass-derived monomers, and the creation of hybrid nanomaterials for catalysis and energy storage. The lab also investigates molecular systems for dynamic nuclear polarization and redox-active materials with tailored electronic properties.
Professor Goo Yeong Cho's research lab specializes in cardiovascular imaging and heart failure management, with a focus on echocardiographic phenotypes, diastolic and systolic dysfunction, and the impact of comorbidities such as diabetes mellitus on cardiac outcomes. The lab investigates advanced imaging techniques—including tissue Doppler imaging, 2D speckle tracking, and cardiac MRI—to assess ventricular dyssynchrony, strain, and response to therapies like ARNI in heart failure with reduced ejection fraction. Additionally, the lab explores non-invasive predictors of cardiac events using cardiopulmonary exercise testing and evaluates the hemodynamic and functional implications of pacemaker pacing sites. The integration of echocardiographic biomarkers with clinical outcomes underscores the lab’s translational approach to improving risk stratification and personalized treatment in heart failure.
Professor Kim Taehee's research lab specializes in consumer behavior, service marketing, and organizational psychology, with a strong focus on the emotional and psychological drivers behind consumer decisions in hospitality and retail environments. The lab investigates key factors such as brand-image congruence, physical environment, employee empowerment, and performance appraisal systems to understand their impact on customer satisfaction, loyalty, and organizational performance. Research is primarily conducted through empirical surveys and structural equation modeling, often in high-end service settings like luxury restaurants, hotels, and specialty retail brands such as Starbucks. The lab’s work bridges theoretical insights with practical marketing strategies, particularly in emotional branding and service quality enhancement.
Professor Ki-Young Choi's research lab specializes in theoretical particle physics and cosmology, with a focus on dark matter candidates in supersymmetric and axion-based models. The lab investigates the cosmological implications of heavy fermions and scalars such as axinos and gravitinos, exploring their production mechanisms, relic abundances, and signatures in astrophysical observations. Key research directions include thermal and non-thermal dark matter production, the role of late-decaying particles in entropy generation, and the connection between supersymmetry, axion physics, and observed X-ray and gamma-ray anomalies. The lab also examines the phenomenological distinctions between weakly interacting massive particles (WIMPs) and their implications for collider searches at the LHC.