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 Kim Jong-Woo's research lab focuses on translational biomedical research spanning cancer biology, neurogastroenterology, and ophthalmic imaging. The lab investigates molecular mechanisms in pancreatic carcinogenesis, gut-brain axis interactions under stress, and the application of deep learning in retinal disease diagnosis. It also explores nutritional factors in skin cancer prevention and non-pharmacological interventions like auricular acupuncture for cognitive disorders.
Professor Hyosang Shin's research lab specializes in advanced guidance, navigation, and control (GNC) systems for unmanned aerial vehicles (UAVs), with a strong focus on distributed estimation, multi-object tracking, and cooperative control in dynamic and uncertain environments. The lab develops innovative algorithms for finite-time convergence guidance, robust distributed estimation over low-cost sensor networks, and nonlinear model predictive control for UAV formation flight, emphasizing fault tolerance and real-time performance. Research also extends to task allocation, data association, and uncertainty management in multi-UAV systems, aiming to enhance scalability, optimality, and resilience in complex missions. The lab integrates theoretical rigor with empirical validation through simulation and experimental testing.
Professor Ji Hoon Han's research lab specializes in sustainable biorefining and carbon utilization, focusing on the catalytic conversion of lignocellulosic biomass and biomass-derived oxygenates into advanced biofuels and high-value chemicals. The lab develops integrated process strategies that maximize resource efficiency by co-producing liquid hydrocarbons, hydrogen, and chemical intermediates while minimizing environmental impacts. Key research directions include electrocatalytic oxidation of biomass derivatives, life cycle assessment of bio-based processes, and the design of scalable infrastructure for carbon dioxide utilization and storage. The lab emphasizes techno-economic feasibility and sustainability assessment to support the transition toward low-carbon, circular bioeconomies.
Professor Yong Park's research lab specializes in translational oncology and stem cell biology, focusing on the molecular mechanisms underlying cancer progression—particularly bone metastasis in gastric cancer and extracellular vesicle-mediated signaling in acute myeloid leukemia. The lab also investigates the regulatory roles of growth factors and stromal microenvironments in maintaining pluripotency of human embryonic stem cells, with an emphasis on feeder-free and cytokine-free culture systems. Additionally, the lab contributes to clinical hematology by developing consensus guidelines for bone marrow involvement assessment in lymphoma and evaluating hypomethylating agents in myelodysplastic syndromes.
Professor Seseo Kim's research lab focuses on the molecular mechanisms underlying cancer immunometabolism, particularly the interplay between immune checkpoint pathways—such as PD-1/PD-L1—and metabolic reprogramming in lymphomas and carcinomas. The lab investigates how oncogenes like MYC and BCL2 drive tumor aggressiveness through metabolic and immune microenvironment remodeling, with a strong emphasis on diffuse large B-cell lymphoma of the central nervous system and non-small cell lung cancer. Key research directions include the role of glycolytic enzymes like HK2 in shaping the tumor immune microenvironment and the clinical implications of genetic alterations such as TERT promoter mutations in young-onset oral squamous cell carcinoma. The lab integrates multi-omics approaches, immunohistochemistry, and preclinical models to identify novel therapeutic targets in aggressive lymphoid and epithelial malignancies.
Professor Sangwon Yoon's research lab specializes in advanced materials and electronic packaging for high-temperature and high-power applications, with a focus on high-temperature superconductors, transient liquid phase (TLP) bonding technologies, and intelligent human-machine interfaces. The lab develops innovative solutions for next-generation power electronics in electrified transportation and renewable energy systems, emphasizing reliability, thermal stability, and system integration. Key research directions include Ni-Sn and Cu-Sn TLP bonding for power module die attachment, compact high-field superconducting magnets, and multi-modal gesture recognition for adaptive human-machine interaction.
Professor Sung Ho Park's research lab focuses on understanding the immunological and cellular mechanisms underlying chronic inflammatory diseases and cancer. The lab employs single-cell genomics and molecular immunology to dissect immune cell heterogeneity and dysfunction in conditions such as severe COVID-19, rheumatoid arthritis, atherosclerosis, and colorectal cancer. Key research directions include the role of stromal and myeloid cells in driving inflammation, the regulation of T cell exhaustion by angiogenic factors like VEGF-A, and the contribution of metabolic and autophagic pathways to tissue homeostasis and disease progression. The lab integrates multi-omics approaches with preclinical models to identify novel therapeutic targets for inflammatory and metabolic disorders.
Professor Sang-Bae Ko's research lab specializes in cerebrovascular diseases, with a primary focus on optimizing outcomes in acute stroke and intracerebral hemorrhage. The lab investigates hemodynamic and metabolic monitoring to guide critical care decisions, particularly in targeting cerebral perfusion pressure and mitigating secondary brain injury. Key research directions include understanding the role of blood pressure variability, clot burden quantification, and the pathophysiology of ischemia-reperfusion injury, with emerging interest in senolytic therapies to target cellular senescence in stroke recovery. The lab integrates multimodality neuromonitoring and advanced imaging to develop precision medicine approaches in neurocritical care.
Professor Kyeong Cheon Jung's research lab specializes in immunology and cancer biology, with a focus on T cell biology, antigen-specific tolerance induction, and the role of cell surface molecules in immune regulation and tumorigenesis. The lab investigates molecular mechanisms underlying T cell differentiation, activation, and apoptosis, particularly through receptors such as CD99, CD24, and ICAM-1. Key research directions include the development of tolerance-inducing strategies for transplantation and autoimmune diseases, and the characterization of CD99 isoforms in gastric adenocarcinoma and other malignancies. The lab integrates preclinical models, including humanized mice and non-human primates, to translate findings into clinical applications.
Professor Donghae Shin's research lab specializes in antiviral drug discovery, with a primary focus on identifying and characterizing natural compounds—particularly flavonoids—that inhibit viral proteases from pathogenic coronaviruses such as SARS-CoV, MERS-CoV, and SARS-CoV-2. The lab employs a combination of biochemical assays, fluorescence-based binding studies, and X-ray crystallography to elucidate the molecular mechanisms of inhibition and to understand the structural basis of flavonoid-protease interactions. Their work also extends to other significant animal and zoonotic viruses, including African swine fever virus, highlighting a translational approach to combat emerging viral threats.
Professor Choong Ho Shin's research lab specializes in pediatric endocrinology and metabolic diseases, with a focus on thyroid disorders, type 1 diabetes mellitus (T1DM), and congenital hyperinsulinism in children. The lab investigates the genetic and environmental determinants of autoimmune and endocrine diseases in pediatric populations, particularly the role of HLA polymorphisms in autoimmune thyroid disease among children with type 1 diabetes. It also examines the epidemiology and long-term outcomes of pediatric thyroid cancer, as well as vitamin D status and its impact on adolescent health in Korea. The lab integrates clinical, genetic, and population-based research to understand disease mechanisms and improve patient outcomes.
Professor Jun Won Choi's research lab specializes in advanced signal processing and machine learning techniques for next-generation wireless and underwater communication systems. The lab focuses on developing efficient detection and equalization algorithms, particularly through turbo processing frameworks, compressed sensing, and deep learning-based modulation classification. Key research directions include low-complexity MIMO detection, robust automatic modulation classification in fading channels, and iterative receiver design for high-reverberation underwater acoustic environments. The lab emphasizes practical implementation and performance-complexity tradeoffs in real-world communication scenarios.
Professor Seung-Yup Ku's research lab focuses on reproductive biology and bioengineering, with a strong emphasis on ovarian function, fertility preservation, and the development of artificial reproductive tissues. The lab investigates molecular mechanisms underlying ovarian follicle development, including the roles of microRNAs and genetic polymorphisms in regulating oocyte maturation and bone mineral density in women. It also explores innovative strategies such as artificial ovary technology and ovarian tissue cryopreservation to address infertility and reproductive failure, particularly in cancer survivors and those with premature ovarian insufficiency. The lab integrates molecular endocrinology, stem cell biology, and tissue engineering to advance regenerative solutions for female reproductive health.
Professor Sung Mi Park's research lab focuses on cardiovascular and metabolic diseases, with a particular emphasis on the pathophysiological mechanisms linking aging, hypertension, and cardiac dysfunction. The lab investigates molecular pathways involving key signaling molecules such as RIP1, NF-κB, and mTOR in cancer and cardiovascular disease, as well as the role of adipose tissue and arterial stiffness in metabolic syndrome. Using advanced imaging techniques like speckle tracking echocardiography and non-invasive hemodynamic measurements, the lab explores early markers of cardiac involvement in young and middle-aged adults with hypertension and metabolic risk factors.
Professor Chang Won Lee's research lab specializes in the intersection of information technology, healthcare systems, and supply chain management. The lab focuses on leveraging digital transformation—particularly through AI, IoT, and metaverse technologies—to enhance healthcare operations, supply chain resilience, and organizational productivity. Key research directions include information resource planning in healthcare, techno-stress in digital work environments, and strategic implementation of emerging technologies in medical and industrial settings. The lab also investigates viral genomics and bioinformatics, particularly in the context of avian influenza.
Professor Dohun Kim's research lab specializes in advanced nanomaterials and energy conversion technologies, with a strong focus on sustainable hydrogen production and next-generation quantum devices. The lab develops efficient electrocatalysts—such as Fe₇S₈/polydopamine systems—for green hydrogen generation across diverse pH conditions, while also exploring novel carbon-based nanomaterials like sulfur-doped carbon dots for biomedical photothermal therapy. In parallel, the lab investigates quantum phenomena in semiconductor heterostructures, particularly in GaAs double quantum dots, for high-fidelity quantum information processing. These interdisciplinary efforts bridge materials science, energy technology, and quantum engineering.
Professor Yoon In-Young's research lab focuses on the intersection of sleep medicine, aging, and mental health, with a particular emphasis on identifying and understanding sleep disorders—such as REM sleep behavior disorder (RBD) and restless legs syndrome (RLS)—in the elderly. The lab investigates the neurobiological, circadian, and microbial underpinnings of sleep disturbances and their links to cognitive decline, mood disorders, and systemic health markers. Using multimodal approaches including polysomnography, actigraphy, and microbiome analysis, the lab explores both clinical phenotypes and potential probiotic interventions to improve sleep and mental well-being in aging populations.
Professor Doh's research lab specializes in bioengineering and immunology, focusing on the development of advanced biomaterials and microenvironmental systems to modulate immune cell behavior. Key research directions include bioprinting of complex tissues using native extracellular matrix components, engineering synthetic microenvironments to study immune synapse formation and T cell migration, and creating 3D in vitro models to evaluate cytotoxic lymphocyte function in tumor-like microenvironments. The lab also pioneers novel photoresponsive materials and cell expansion strategies for immunotherapy applications, particularly in enhancing natural killer (NK) cell expansion and activation.
Professor Junmo Yang's research lab focuses on identifying molecular and genetic mechanisms underlying atopic dermatitis (AD), with a strong emphasis on proteomic and genetic analyses. The lab investigates dysregulated proteins and gene-gene interactions in AD-derived cells, particularly fibroblasts and keratinocytes, to uncover biomarkers and pathogenic pathways. Key research directions include the role of cytokines (e.g., IL-4, IL-13), immune-related genes (e.g., SPINK5, ALDH1), and post-translational modifications in disease progression. The lab integrates proteomics, genomics, and molecular biology techniques to translate findings into potential diagnostic and therapeutic targets for AD.
Professor Jeong Won Choi's research lab focuses on the immunological and cellular mechanisms underlying rare inflammatory and degenerative diseases, with a particular emphasis on autoimmune disorders such as lupus erythematosus and osteoarthritis. The lab investigates novel therapeutic strategies using targeted nanotherapeutics, including immunomodulating nanoparticles for joint diseases, and explores mitochondrial dysfunction in vascular and neurological conditions like moyamoya disease. Additionally, the lab examines the pathophysiology of craniosynostosis and neurofibromatosis type 2 in pediatric populations, highlighting developmental and neurological implications. Their work bridges clinical medicine, immunology, and nanomedicine to develop precision treatments.