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 Eun-Hwa Lee's research lab specializes in interdisciplinary biomedical and environmental sciences, focusing on host-microbe interactions, infectious disease biomarkers, and sustainable catalytic materials. The lab investigates the role of arbuscular mycorrhizal fungi in plant-microbe symbiosis and plant adaptation to terrestrial environments, while also exploring host immune responses in sepsis and bloodstream infections in critically ill patients. Additionally, the lab develops advanced mesoporous silica-based catalysts for efficient biomass conversion and renewable energy applications. These diverse research directions reflect a strong commitment to understanding biological systems and designing innovative materials for health and environmental sustainability.
Professor Yun-Rak Choi's research lab focuses on regenerative medicine and orthopedic bioengineering, with a central emphasis on understanding the pathophysiology of joint diseases such as osteoarthritis and carpal tunnel syndrome. The lab investigates the role of adipose tissue in joint degeneration, develops advanced stem cell-based therapies for cartilage repair, and designs precision surgical techniques and bioengineered implants for peripheral nerve and joint disorders. Utilizing cutting-edge technologies like CRISPR-Cas9 genome editing, single-cell RNA sequencing, and patient-specific iPSC differentiation, the lab aims to create smart, responsive therapeutic systems that adapt to disease activity.
Professor Jun Ho Lee's research lab specializes in gastrointestinal oncology, with a primary focus on gastric and colorectal cancers. The lab investigates molecular mechanisms underlying tumor progression, recurrence, and prognosis, particularly through the study of immune-related markers (e.g., CCR4), angiogenic regulators (e.g., SOX group F genes), and systemic factors such as fibrinogen. Key research directions include identifying prognostic biomarkers, understanding the role of hormonal and inflammatory pathways in cancer development, and improving risk stratification in early-stage colorectal and gastric cancer patients. The lab integrates clinical data with molecular and immunohistochemical analyses to advance precision oncology in digestive system malignancies.
Professor Yongbaek Kim's research lab focuses on the molecular mechanisms underlying cancer progression, with a particular emphasis on tumor microenvironment interactions, metabolic reprogramming, and epigenetic regulation in cancer. The lab investigates how hypoxia, cancer-associated fibroblasts, and altered lipid metabolism contribute to tumor heterogeneity, drug resistance, and cancer stemness. Using advanced 'omics' technologies such as RNA-seq, MeDIP-seq, and next-generation sequencing, the lab explores signaling pathways and non-coding RNAs—including microRNAs—in various cancers, especially malignant mesothelioma and liver neoplasms. The ultimate goal is to identify novel therapeutic targets and understand drug resistance mechanisms, including those involving metformin and mitochondrial dysfunction.
Professor Goo Ja-yong's research lab specializes in statistical methodology and data science, with a focus on developing advanced nonparametric and semiparametric techniques for complex data analysis. The lab's main directions include high-dimensional data integration, especially in genomics and biomedical applications, using methods such as meta-analytic support vector machines and robust regression estimation for discontinuous or noisy functions. The lab also investigates inverse problems in density estimation and signal processing, particularly in the context of deconvolution, ESD coupling, and functional data analysis, often combining theoretical rigor with practical applications in engineering and life sciences. Their work bridges statistics, machine learning, and applied mathematics to address challenges in reproducibility, noise resilience, and structural feature detection in real-world data.
Professor Jun Moon's research lab specializes in stochastic control, differential games, and reinforcement learning, with a focus on large-scale multiagent systems, risk-sensitive and robust control, and mean-field type games. The lab develops advanced mathematical frameworks for decentralized decision-making under uncertainty, integrating stochastic optimal control, backward SDEs, and deep reinforcement learning algorithms. Key research directions include time-inconsistent control, zero-sum and leader-follower differential games, and applications in UAV path planning and autonomous systems.
Professor Hakyeong Kim's research lab specializes in radiation oncology and cancer genetics, with a focus on optimizing radiotherapy for patients with underlying lung diseases such as idiopathic pulmonary fibrosis (IPF) and COPD. The lab investigates the impact of advanced radiation modalities—particularly proton therapy—on reducing severe radiation toxicity in early-stage lung cancer patients. Additionally, the lab explores the genetic underpinnings of cancer predisposition, particularly BRCA mutations, and their association with non-breast and non-ovarian cancers in high-risk families. Their work integrates clinical outcomes, radiobiology, and familial cancer genetics to improve patient selection and treatment strategies.
Professor Sang-Hee Kang's research lab focuses on molecular oncology and cancer biology, with a primary emphasis on understanding the genetic and molecular mechanisms underlying colorectal cancer, meningioma, and cancer stem cells. The lab investigates key regulatory factors such as MSI status, FOXM1, TGM2, and the anticancer effects of repurposed drugs like metformin to identify novel therapeutic targets and prognostic biomarkers. Their work integrates high-throughput genomics, clinical data analysis, and experimental validation to improve cancer diagnosis, treatment, and patient outcomes.
Professor Hyun Beom Song's research lab focuses on ocular vascular biology, retinal diseases, and neuroprotection, with a particular emphasis on the molecular mechanisms underlying angiogenesis, vascular leakage, and cell death in the eye. The lab investigates the roles of key signaling molecules such as MMP-2, clusterin, and p38 MAPK in cancer progression and retinal ischemia, as well as the therapeutic potential of mesenchymal stem cells and natural compounds like sauchinone in treating ocular inflammatory and degenerative conditions. Their work spans from molecular and cellular mechanisms to preclinical disease models, aiming to develop novel therapeutic strategies for retinal and corneal disorders.
Professor Jin Nam Kim's research lab focuses on reproductive biology, particularly primordial germ cell (PGC) isolation, manipulation, and application in transgenic animal production, with an emphasis on avian species such as chickens and quails. The lab also investigates metabolic disorders, including diabetes, by exploring the therapeutic potential of bioactive compounds like chitosan oligosaccharides and black soybean anthocyanins in modulating glucose metabolism and inflammation. Additionally, the lab contributes to virology and immunology research, especially in understanding T cell responses to SARS-CoV-2 variants and the pathogenesis of rare neurological infections like progressive multifocal leukoencephalopathy (PML).
Professor Sunghee H. Tak's research lab focuses on aging, long-term care, and health technology, with an emphasis on improving quality of life for older adults, particularly those with dementia. The lab investigates eHealth literacy, digital health interventions, and the role of technology in long-term care settings to support independence and well-being. Research also explores patient-centered strategies for managing chronic conditions, such as arthritis, and addressing psychosocial factors like the fear of falling and stress management. The lab integrates qualitative and technological approaches to develop person-centered, evidence-based solutions for aging populations and care systems.
Professor Yong Beom Kim's research lab specializes in gynecologic oncology, focusing on improving diagnostic accuracy, treatment strategies, and survival outcomes in endometrial, cervical, and ovarian cancers. The lab investigates prognostic factors, surgical approaches such as laparoscopic versus abdominal radical hysterectomy, and molecular mechanisms underlying chemoresistance, particularly involving genes like HOXB9. It also explores the impact of multidisciplinary tumor boards and machine learning models to enhance clinical decision-making and personalized treatment planning.
Professor Sun Kyung Jeon's research lab specializes in medical imaging and quantitative ultrasound, focusing on advancing non-invasive diagnostic techniques for abdominal diseases. The lab develops and validates novel ultrasound-based methods—particularly radiofrequency (RF) data analysis and deep learning algorithms—for accurate detection and characterization of hepatic steatosis and pancreatic tumors. Key research directions include improving the reproducibility and diagnostic performance of ultrasound attenuation imaging, integrating artificial intelligence with quantitative ultrasound parameters, and applying advanced segmentation algorithms to abdominal CT and MRI for precise organ and lesion analysis. The lab emphasizes clinical translation by using gold-standard imaging modalities like MRI-PDFF and surgical pathology as reference standards.
Professor Se Hee Jung's research lab focuses on clinical and rehabilitative medicine, with a strong emphasis on improving outcomes in neurological and musculoskeletal disorders. The lab investigates neuroimaging techniques—particularly diffusion-weighted MRI—for predicting treatment response in cancer patients, and explores innovative exercise interventions that integrate motor and cognitive training to enhance functional mobility in individuals with Parkinson’s disease. Additionally, the lab conducts critical evaluations of clinical assessment tools, such as the Clinical Dysphagia Scale, in relation to objective measures like videofluoroscopic swallowing studies, and examines aging-related physical decline, including sarcopenia, in adults with cerebral palsy. The overarching research direction centers on advancing personalized rehabilitation strategies through multimodal assessment and targeted therapeutic interventions.
Professor Sang-Il Yang's research lab specializes in the design, synthesis, and application of advanced nanomaterials with a focus on one-dimensional nanostructures, metal-organic frameworks, and bioinspired catalysts. The lab explores innovative fabrication methods such as thermal evaporation, laser ablation, and self-assembly to create functional materials for energy conversion, environmental remediation, and cancer therapy. Key research directions include the development of highly conductive porous carbon nanorods from MOFs, stimuli-responsive nanocarriers for targeted drug delivery, and artificial enzymes mimicking natural enzymes like carbonic anhydrase. The lab also investigates strong metal-support interactions in nanocatalysts to enhance stability and activity in catalytic processes.
Professor Sung Hui Choi's research lab specializes in power electronics and high-voltage direct current (HVDC) transmission systems, with a strong focus on modular multilevel converters (MMCs) for renewable energy integration and future DC-based power grids. The lab investigates advanced fault ride-through strategies, fault current blocking, and soft-switching techniques to enhance the reliability and stability of MMC-based HVDC systems, particularly under dc short-circuit and asymmetrical fault conditions. Key research directions include innovative converter topologies, such as hybrid MMCs and bidirectional dc–dc converters, as well as intelligent control strategies for capacitor voltage balancing and system resilience. The lab emphasizes practical implementation through simulations and experimental validation, aiming to support the development of efficient, stable, and cost-effective DC distribution and transmission networks.
Professor Yong-Sun Maeng's research lab focuses on vascular biology and regenerative medicine, with a central emphasis on endothelial progenitor cells (EPCs), angiogenesis, and lymphangiogenesis in both developmental and pathological contexts. The lab investigates molecular mechanisms regulating EPC homing, differentiation, and vascular barrier function, particularly through growth factor systems (e.g., IGF2/IGF2R), extracellular matrix proteins (e.g., TGFBIp), and epigenetic regulators (e.g., HP1α). Key research directions include understanding the role of TGFBIp in corneal wound healing and ocular surface protection, as well as exploring therapeutic strategies targeting lymphangiogenesis to inhibit cancer metastasis. The lab integrates in vitro cell biology with in vivo disease models to identify novel targets for treating vascular disorders, diabetes-related complications, and cancer.
Professor Jae Seung Lee's research lab focuses on urban sustainability, community resilience, and smart city development, with an emphasis on the interplay between urban form, social capital, and technological innovation. The lab investigates how participatory urban regeneration, transit-oriented development (TOD), and crime prevention through environmental design (CPTED) contribute to improved quality of life in cities. It also explores the role of ICT and renewable energy integration in shaping future urban environments, particularly in the context of shrinking cities and energy transition. The lab combines empirical data analysis with policy-oriented research to support sustainable and inclusive urban development.
Professor Do Yeon Kim's research lab specializes in molecular virology, systems biology, and advanced bioimaging, with a focus on understanding the dynamic regulation of viral and host gene expression during infection. The lab employs high-resolution 'omics' technologies—such as transcriptomics and translatomics—to dissect the intricate mechanisms of SARS-CoV-2 translation and host response, while also pioneering innovative imaging techniques like ExSTED and signal amplification strategies to achieve super-resolution in cellular imaging. Additionally, the lab investigates non-coding RNA biology, particularly microRNA-mediated gene regulation, and explores the ethical dimensions of emerging technologies like AI through the development of validated psychometric scales.
Professor Sangho Lee's research lab specializes in civil and infrastructure engineering with a focus on Building Information Modeling (BIM), smart infrastructure, and digital twin technologies. The lab develops semantic data models—such as IFC-based schemas for tunnels, bridges, and urban road networks—enabling interoperable, lifecycle management of infrastructure projects. Research also extends to mobility-oriented design, including movable buildings and disaster-resilient systems like snow-removal routing, integrating 3D city models and constraint-based optimization. The lab emphasizes practical BIM applications, from design to quantity takeoff, with strong integration of semantic data and user-defined properties for enhanced information modeling.