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 Soo-young Cho's research lab focuses on perioperative medicine and pain management, with a strong emphasis on improving patient outcomes through evidence-based anesthetic techniques and pain assessment. The lab investigates regional anesthesia methods such as ultrasound-guided transversus abdominis plane (TAP) blocks, evaluates the reliability of pain scales in postoperative settings, and examines the risks of non-obstetric surgery during pregnancy. Additionally, the lab contributes to clinical research on postoperative complications, particularly in vulnerable populations like pediatric patients with recent upper respiratory infections and in pregnant women undergoing non-obstetric procedures.
Professor Seong Yong Lee's research lab focuses on pediatric endocrinology and metabolic disorders, with a strong emphasis on diabetes mellitus, neonatal thyroid function, and neuroendocrine regulation in childhood development. The lab investigates the pathophysiology of type 1 diabetes and diabetic ketoacidosis in children, explores hormonal influences on puberty and growth, and examines the impact of emerging viral infections—such as SARS-CoV-2 variants—on pediatric health. Recent studies also delve into molecular signaling pathways, including IGF1R and Wnt, in neural development and disease. The lab integrates clinical data with molecular mechanisms to improve understanding and management of pediatric endocrine conditions.
Professor Kyung-Hye Kong's research lab focuses on molecular mechanisms underlying age-related organ dysfunction, particularly in the kidney and nervous system. The lab investigates the roles of key regulatory proteins such as Sirt1 and HIF-1α in aging, fibrosis, and cellular stress responses, with an emphasis on translational applications of natural compounds like resveratrol, selenium, and capsaicin. Current research explores how these molecules influence cellular signaling, neurogenesis, and tissue repair, aiming to identify therapeutic targets for chronic diseases. The lab also examines the safety and biological impact of food additives on neural development and function.
Professor Kwang Hyun Cho's research lab specializes in advanced control systems and biomedical diagnostics, with a strong focus on intelligent motion control in mechatronic systems and the application of molecular markers in dermatological pathology. The lab develops innovative control strategies—such as adaptive disturbance observers and sliding mode control—for improving the performance and reliability of electromechanical systems, particularly in linear motor-driven applications and vehicle safety systems like ABS and TCS. In parallel, the lab conducts translational research in immunohistochemistry, investigating S-100 protein subunits as diagnostic indicators in melanocytic skin lesions. These interdisciplinary efforts reflect a dual focus on high-precision engineering control and molecular diagnostics in clinical pathology.
Professor Jeongwoo Park's research lab specializes in energy-efficient hardware systems for machine learning, with a focus on designing specialized accelerators for on-chip training and inference in resource-constrained environments such as mobile and edge devices. The lab explores low-precision computing, sparsity exploitation, and high-level hardware modeling techniques like SystemC TLM to bridge the gap between algorithmic advances and practical hardware implementation. Their work also extends to biomedical signal processing, particularly in electrical impedance tomography using physics-informed optimization. Overall, the lab emphasizes the co-design of algorithms, architectures, and systems for real-time, low-power intelligent systems.
Professor Tae-Hyun Jung's research lab focuses on the intersection of innovation, nonprofit organizations, and public policy, with a strong emphasis on empirical analysis of social and technological change. The lab investigates trends in innovation and intellectual property, particularly the evolving roles of inventors, gender gaps, and technological development across economic transitions. It also explores nonprofit organizational behavior, pricing strategies, and the financial-mission trade-offs in social service delivery. Additionally, the lab examines the implications of clinical trial design and health policy for real-world outcomes, especially among aging populations.
Professor Hee-Seung Lee's research lab focuses on neuropharmacology and anesthesiology, with a primary emphasis on the neural mechanisms underlying itch and pain modulation in primates. The lab investigates the roles of endogenous neuropeptides—such as β-endorphin, GRP, and enkephalins—and opioid receptors (e.g., MOR, KOR, NOP) in sensory processing, particularly in the context of antipruritic and analgesic effects. The lab also explores clinical phenomena such as opioid-induced hyperalgesia and the impact of modern educational technologies on music education, especially in the context of pandemic-driven online learning. Using non-human primate models and advanced neuroimaging techniques, the lab aims to bridge translational neuroscience with clinical applications in pain and itch management.
Professor Jieun Han's research lab focuses on the intersection of healthcare technology, human-centered design, and environmental psychology, with a strong emphasis on smart health environments and assistive robotics. The lab investigates how physical and technological environments—such as smart homes, healthcare facilities, and intelligent robots—can be optimized to enhance user acceptance, well-being, and clinical outcomes. Key research directions include servicescape and healthscape design, usability of healthcare robots, and the application of immersive technologies like virtual reality in neuropsychological assessment and rehabilitation.
Professor Yun-Won Kook's research lab specializes in clinical microbiology and oncology, with a focus on antimicrobial resistance in rapidly growing mycobacteria and the molecular characterization of drug-resistant pathogens such as *Mycobacterium abscessus* complex. The lab also investigates the genetic and molecular mechanisms underlying breast cancer progression, particularly the clinical implications of TP53 mutations and HER2-low expression in treatment response and prognosis. Their work integrates molecular diagnostics, genomics, and long-term clinical outcomes to improve personalized cancer therapy and infectious disease management.
Professor Yong Wook Baik's research lab focuses on entrepreneurial finance, corporate venture capital, and institutional dynamics in innovation ecosystems. The lab investigates how institutional environments, including bankruptcy laws, patent litigation risks, and political competition, shape entrepreneurial behavior and venture performance. Key research directions include the impact of venture capital cycles, the role of prior entrepreneurial and financing experience on startup success, and strategic responses of firms to institutional hazards. The lab combines empirical analysis with institutional theory to understand the interplay between policy, finance, and innovation.
Professor Hye-Jung Yoo's research lab specializes in biomedical engineering and nanotechnology, focusing on innovative solutions for chronic disease management, vision restoration, and targeted drug delivery. The lab develops smart healthcare systems using mobile technology and wearable sensors, such as the Ubiquitous Chronic Disease Care (UCDC) system, and explores advanced materials like silicon nanowires for retinal prosthetics. It also investigates biodegradable microcarriers and flagellated bacteria for precise, localized drug delivery, alongside durable 3D microelectrodes for long-term neural interfacing. The lab’s interdisciplinary approach bridges engineering, medicine, and materials science to address critical challenges in healthcare.
Professor Hogun Park's research lab specializes in the development of advanced wearable biosensors and intelligent signal processing systems, with a focus on electromyography (sEMG)-based gesture recognition using novel flexible electrode arrays and deep learning models such as graph neural networks. The lab also explores temporal and static graph learning for relational data analysis, and applies cutting-edge fabrication techniques—like laser-induced carbonization—for low-cost, unclonable anticounterfeiting tags. Additionally, the lab contributes to biomedical data science by investigating gene regulation mechanisms, particularly nonsense-mediated mRNA decay, using multi-omics data integration. These interdisciplinary efforts bridge materials science, artificial intelligence, biomedical engineering, and bioinformatics to create innovative solutions for healthcare and security applications.
Professor Dong Soo Ryu's research lab specializes in urological and developmental medicine, with a focus on pediatric urology, regenerative medicine, and prostate cancer biology. The lab investigates minimally invasive surgical techniques such as laparoscopic heminephrectomy in children with duplex kidneys, explores stem cell therapy for erectile dysfunction in diabetic models, and examines the molecular pathways driving prostate cancer progression. Additionally, the lab contributes to population health research by assessing the impact of lower urinary tract symptoms on quality of life in aging men. These diverse research directions reflect a strong translational focus, bridging clinical urology with molecular mechanisms and public health outcomes.
Professor Haeseon Sim's research lab specializes in clinical and translational studies focusing on perioperative organ injury, particularly acute kidney injury (AKI) in major surgical procedures such as liver and thoracic aortic surgery. The lab investigates modifiable risk factors, develops predictive scoring models, and explores underlying pathophysiological mechanisms, including hemodynamic and cellular pathways involving calcium signaling and nitric oxide. Additional research extends to metabolic syndrome and its associations with complications such as hearing loss and poor recovery from critical conditions.
Professor Jeeun Lee's research lab focuses on the intersection of metabolism, mitochondrial biology, and nanomaterials. The lab investigates the role of fatty acid oxidation in metabolic regulation using genetically engineered mouse models, particularly in adipose and liver tissues, to understand systemic energy homeostasis during fasting and high-fat diet challenges. In parallel, the lab explores novel two-dimensional materials, such as van der Waals crystals and hexagonal boron nitride defects, for applications in quantum technologies and spintronics, with a focus on electrical and field control of single-photon emission and ferromagnetic properties. The integration of metabolic physiology with advanced materials science defines the lab’s unique interdisciplinary approach.
Professor Hye-Jung Cheon's research lab focuses on family sociology, work-life balance, and intergenerational family dynamics in contemporary South Korean society. The lab explores socio-demographic influences on family decision-making, including fertility intentions, family leisure, and work-life harmonization, with an emphasis on gender, generational perspectives, and socioeconomic disparities. Research also examines the intersection of corporate social responsibility and consumer behavior, particularly through the lens of shared value creation and youth-oriented social movements. The lab employs mixed-methods approaches, integrating surveys, interviews, and qualitative case studies to understand personal and structural influences on individual well-being and family life.
Professor Youn Hee Lim's research lab focuses on environmental and metabolic health, with a strong emphasis on the impact of environmental exposures—such as air pollution, respiratory viruses, and pesticides—on chronic diseases like rheumatoid arthritis, kidney function, and metabolic syndrome. The lab integrates epidemiological data, biomarker analysis, and advanced statistical modeling to assess the long-term health effects of environmental factors, particularly in the Korean population. A key direction involves refining clinical estimation tools, such as glomerular filtration rate equations, using population-specific calibration data.
Professor Byung-Won Woo's research lab specializes in international political economy, with a focus on the intersection of international financial institutions, economic governance, and human rights. The lab investigates how IMF lending programs, conditionality, and geopolitical pressures affect foreign direct investment, labor rights, and access to financial assistance, particularly in politically sensitive or sanctioned contexts. A central theme is the role of political institutions, advocacy groups, and international organizations in shaping economic outcomes and policy implementation. The lab employs rigorous empirical analysis combining institutional data, sanctions records, and human rights indicators to assess the real-world impacts of multilateral economic policies.
Professor Seiyong Kim's research lab specializes in urban planning, city image development, and sustainable urban regeneration, with a strong focus on enhancing livability through strategic urban design and policy. The lab investigates key urban form elements—such as density, diversity, and design—and their impact on travel behavior and quality of life. It also explores community-driven initiatives like urban academies and neighborhood-making programs, emphasizing participatory governance and long-term social sustainability. Additionally, the lab develops objective, environment-centered indicators for age-friendly cities, particularly focusing on physical environments that support older populations.
Professor Yewon Kim's research lab focuses on interdisciplinary studies at the intersection of biomedical engineering, clinical health analytics, and behavioral finance. The lab investigates clinical outcomes in ocular surface diseases, particularly dry eye disease, under environmental stressors like ozone exposure, while also exploring the impact of corporate governance and information transparency on financial market reactions. A key research direction involves leveraging advanced image processing and deep learning techniques to automate the analysis of complex biological and physiological data, such as bubble dynamics in multiphase flows and ocular surface imaging. The lab further examines how managerial competence and information environments influence investor behavior and capital market efficiency.