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 On-Gu Cho's research lab specializes in diagnostic and interventional radiology, with a focus on advanced medical imaging techniques for the detection, characterization, and treatment of various neoplastic and benign conditions. The lab investigates the radiological features of rare and complex tumors, such as synovial sarcoma, Brenner tumors, and plexiform neurofibromas, emphasizing the role of CT and MRI in improving diagnostic accuracy. It also explores interventional techniques like radiofrequency ablation, with an emphasis on optimizing procedural outcomes through technical innovation and imaging guidance. The lab contributes significantly to understanding imaging biomarkers and post-interventional complications, such as heterotopic ossification after surgery.
Professor Jun-Cheol Lee's research lab specializes in clinical and translational research focused on improving patient outcomes in critical care and emergency medicine. The lab investigates novel biomarkers for metabolic disorders such as insulin resistance, evaluates resuscitation techniques and feedback systems for infant and adult cardiopulmonary resuscitation (CPR), and explores the long-term psychiatric and physiological outcomes following out-of-hospital cardiac arrest. A key emphasis is placed on developing practical, technology-assisted interventions—such as smartwatch-based CPR feedback applications—to enhance the quality of life and survival rates in emergency settings.
Professor Jeong-Hwa Seo's research lab specializes in clinical anesthesiology and perioperative medicine, with a focus on optimizing anesthetic techniques, enhancing recovery of consciousness, and improving airway management during surgery. The lab conducts rigorous clinical trials and systematic reviews to evaluate the efficacy and safety of anesthetic agents—such as remimazolam and propofol—and to investigate the timing and impact of neuromuscular blockade and epidural analgesia. Additionally, the lab explores advanced airway management strategies, including double-lumen tube placement and airway resistance, aiming to reduce complications and improve patient outcomes. The integration of evidence-based practices with physiological and hemodynamic monitoring defines the lab’s translational research approach.
Professor Yoonseo Jung's research lab specializes in statistical methodology with a focus on robust and efficient model selection, particularly in high-dimensional and complex data settings. The lab develops advanced cross-validation techniques and regularization methods for regression and variable selection, with applications in genomics, oncology, and clinical outcomes research. Key research directions include improving model stability through ensemble averaging in K-fold cross-validation, extending quantile regression to heterogeneous models, and integrating statistical learning with biomedical data to support precision medicine and survivorship care planning.
Professor Ji-Sun Park's research lab specializes in musculoskeletal radiology and orthopedic imaging, focusing on the diagnosis, prognosis, and treatment outcomes of spinal and joint infections, rotator cuff pathology, and hemophilic pseudotumors. The lab employs advanced MRI techniques to evaluate preoperative predictors of surgical success, particularly in massive rotator cuff tears and vertebral osteomyelitis, with an emphasis on fatty infiltration, tendon retraction, and imaging biomarkers. The team also investigates the impact of surgical interventions—such as spinal instrumentation—on infection recurrence and long-term outcomes in patients with spinal infections.
Professor In Hoe Ku's research lab specializes in social policy, aging, and inequality, with a focus on income distribution, social welfare programs, and intergenerational mobility in South Korea and comparative contexts. The lab investigates the impacts of social pension systems, welfare participation, and shadow education on individual well-being and educational outcomes, particularly among older adults and youth. Key research directions include the role of public transfers in reducing poverty, the long-term effects of early-life welfare exposure, and the drivers of rising income inequality in aging societies.
Professor Jun-Ho Cho's research lab specializes in emergency airway management, simulation-based medical education, and telemedicine innovations. The lab focuses on improving clinical skills through high-fidelity simulation models—such as porcine and manikin models—and developing virtual and remote-guided systems like VRNET and TAMS to enhance training and real-time decision-making in critical care. Research also emphasizes quality improvement in airway management for vulnerable populations, particularly elderly patients, using large-scale registry data to inform clinical practice.
Professor Ji-young Lee's research lab focuses on the intersection of digital technology, social behavior, and societal resilience, with a strong emphasis on youth, education, and disaster vulnerability. The lab investigates how digital environments—such as social networking sites, the metaverse, and ICT in education—affect social capital, cyberbullying, and learning outcomes among adolescents. It also examines housing insecurity among renters in disaster contexts, highlighting policy-relevant insights for urban planning and social equity. The lab integrates mixed-methods approaches, combining surveys, digital data analytics, and qualitative analysis to address pressing social challenges in the digital age.
Professor You-Min Lee's research lab focuses on interdisciplinary research at the intersection of biomedical engineering, environmental health, and electronic design. The lab investigates the impact of environmental factors—such as air pollution and heavy metal exposure—on human health, particularly in respiratory diseases like COPD and asthma-COPD overlap, as well as reproductive health markers like AMH. Concurrently, the lab develops advanced simulation and optimization techniques for integrated circuit design, especially in power delivery networks and thermal management of 3D integrated circuits, aiming to enhance performance and reliability in next-generation electronics. These dual research directions reflect a strong commitment to both human health and cutting-edge semiconductor technology.
Professor Hyoung-Joon Park's research lab specializes in advanced control systems and optimization methodologies for complex dynamic systems, with a strong focus on model predictive control (MPC) and its real-time applications. The lab's main research directions include MPC-based power management in shipboard integrated power systems, spacecraft rendezvous and docking with debris avoidance, and computational optimization techniques such as the IPA-SQP framework for nonlinear MPC. The lab also explores practical challenges in transportation modeling, particularly in destination choice modeling for freight trucks using efficient sampling strategies. These interdisciplinary efforts bridge control theory, aerospace engineering, maritime systems, and transportation science.
Professor Ji Yeon Lee's research lab focuses on developmental psychology and molecular mechanisms underlying human health, with a dual emphasis on early childhood language development and the pathophysiology of autoimmune diseases. The lab investigates how family environment, parental behaviors, and socioeconomic factors influence language acquisition in young children, while also exploring the role of chemokines and circadian clock regulation in inflammatory and degenerative conditions such as rheumatoid arthritis. These interdisciplinary efforts bridge behavioral science and molecular biology to uncover mechanisms that inform both clinical interventions and therapeutic development.
Professor Yun-Mo Sang's research lab focuses on the evolving dynamics of digital news consumption, platform governance, and the socio-legal dimensions of digital content, particularly in the Asia-Pacific region. The lab investigates audience engagement with online news, the feasibility of paid news models, and the role of digital platforms in shaping media ecosystems. It also explores the impact of licensing and digital rights management on public access to ebooks and the regulatory challenges in content moderation on global platforms like Google.
Professor Jonghun Park's research lab specializes in distributed systems, real-time control, and resource allocation in complex, automated environments. The lab focuses on developing scalable, efficient, and logically correct control architectures for dynamic systems such as semiconductor manufacturing fabs, automated production lines, and Internet-based collaborative computing. Key research directions include spatiotemporal behavior modeling for user mobility prediction, distributed control policy synthesis, and coordination protocols for decentralized, multi-party resource sharing in Web services and computational grids. The lab emphasizes both theoretical rigor and practical applicability in large-scale, real-time systems.
Professor Hyeon-Hwa Kang's research lab specializes in Korean language education, with a strong focus on discourse analysis, vocabulary instruction, and culture education for foreign learners. Her work explores the evolution of research trends in Korean language education over the past decade, emphasizing in-depth, empirical studies in lexical semantics, discourse structures, and pragmatic expressions such as complaints. The lab also investigates pedagogical approaches to developing culturally relevant teaching materials, particularly for international students, aiming to bridge language learning with authentic cultural understanding.
Professor Ji Eun Lee's research lab focuses on gender, identity, and social transformation in contemporary Korean society, with a particular emphasis on feminist movements, intergenerational family dynamics, and the sociocultural construction of modern womanhood. The lab explores how structural forces—such as state policy, nationalism, colonialism, and biomedicalization—affect women’s life choices, self-perception, and future aspirations. Research also extends to youth empowerment through technology education and the ethical dimensions of health care decision-making, especially in aging and dementia care. The lab integrates qualitative and quantitative methods to examine lived experiences and systemic inequalities.
Professor Jongchan Kim's research lab specializes in advanced optoelectronic materials and devices, with a primary focus on enhancing the efficiency of organic light-emitting diodes (OLEDs) through precise control of molecular orientation and innovative outcoupling structures. The lab investigates fundamental optical phenomena such as transition-dipole moment alignment using advanced techniques like Fourier-plane imaging microscopy, and develops non-intrusive, wavelength- and angle-independent light extraction methods using high-index waveguides and dielectric reflectors. Additionally, the lab applies machine learning to environmental challenges, such as predicting cyanobacterial blooms, demonstrating a multidisciplinary approach to sustainable technology and data-driven science.
Professor Sungjin Ahn's research lab specializes in advanced electronic materials and devices, with a strong focus on two-dimensional (2D) semiconductors, oxide thin-film transistors, and next-generation display technologies. The lab investigates fundamental electron transport phenomena in low-dimensional systems, including hydrodynamic behavior and localization transitions, while also developing energy-efficient circuits for high-resolution displays. Additionally, the lab contributes to signal processing and communication systems through innovative modulation schemes and automatic modulation classification techniques. These interdisciplinary efforts bridge materials science, device physics, and integrated circuit design.
Professor Tae-Soo Kwon's research lab specializes in character animation and motion synthesis, focusing on developing intelligent, physics-based methods for generating realistic and interactive human and multi-character motions. The lab explores example-based motion synthesis, model-predictive control, and hierarchical motion modeling to enable adaptive, responsive, and collision-free locomotion in complex environments. Key research directions include interactive editing of group motions, synthesis of martial arts interactions, and efficient full-body motion generation using simplified dynamics models and inverse kinematics. The lab bridges computer graphics, robotics, and biomechanics to create lifelike, controllable character behaviors for animation and simulation.
Professor Soo-jin Kim's research lab specializes in health communication, organizational behavior, and consumer behavior, with a strong focus on the psychological and cultural factors influencing human attitudes and decision-making. The lab investigates how emotions, cognitive framing, and cultural values shape responses to health risks, policy communication, and organizational justice. It also explores the strategic use of messaging in health promotion and advertising, particularly in relation to identity, responsibility, and behavioral intention. The research integrates theories from communication, psychology, and sociology to develop practical, evidence-based strategies for public health and organizational effectiveness.
Professor Hyun Jin Kim's research lab specializes in advanced millimeter-wave (mmWave) antenna systems and integrated radio frequency (RF) technologies for next-generation wireless communications, particularly 5G and beyond. The lab focuses on innovative antenna-in-package (AiP) designs, multi-antenna arrays, and compact mmWave modules that enable high performance, wide bandwidth, and efficient power combining in constrained form factors. Research also extends into biomedical applications, particularly the use of proton magnetic resonance spectroscopy (1H-MRS) for detecting onco-metabolites like 2-hydroxyglutarate in brain tumors, highlighting a multidisciplinary approach bridging engineering and medical diagnostics. The lab emphasizes practical integration of antennas with transceivers, dielectric covers, and system-level optimization for real-world deployment.