探索全球顶尖大学的研究室——研究领域与主要论文一览无余。
Professor Seung Yeon Jeong's research lab specializes in health outcomes and radiation oncology, with a focus on optimizing radiotherapy strategies for pediatric and adult brain tumors, including ependymoma and metastatic disease. The lab investigates the impact of treatment intensity, dose fractionation, and adjuvant therapies on survival, local control, and neurocognitive outcomes. A key research direction involves understanding the biological and clinical factors influencing radiation-induced lymphopenia and its implications for patient survival. The lab also explores disparities in educational and career trajectories among university students, particularly regarding double major selection and social inequality.
Professor Tae-woo Kang's research lab focuses on the intersection of neuroscience, brain-computer interfaces (BCI), and artificial intelligence, with an emphasis on clinical applications for neurological rehabilitation and cognitive enhancement. The lab investigates neuromuscular control in stroke patients through targeted motor training techniques such as the abdominal drawing-in maneuver and diaphragmatic breathing, aiming to improve trunk stability and balance. It also explores the ethical, legal, and societal implications of emerging neurotechnologies, particularly BCI and AI integration, advocating for responsible innovation and robust regulatory frameworks. The lab's work bridges clinical neurology, rehabilitation engineering, and bioethics to advance personalized, human-centered neurotechnology.
Professor Munsik Ha's research focuses on the archaeology of prehistoric and early historic periods in the Korean Peninsula, particularly the Neolithic, Bronze Age, and early Iron Age. His work centers on megalithic tombs (such as dolmens and stone cists), settlement remains, and burial customs, with an emphasis on regional cultural sequences, funerary practices, and the technological and social aspects of early human settlements. He investigates the distribution, typology, and structural evolution of megalithic monuments, especially in Gyeonggi, Gyeongsang, and Gangwon regions, while also analyzing ritual behavior, material culture, and interregional cultural connections through detailed artifact and stratigraphic studies.
Professor Sung Un Kim's research lab focuses on interdisciplinary studies at the intersection of education technology, information science, and religious hermeneutics. The lab explores user-centered design in digital environments, including web and educational technologies such as AI-powered digital textbooks and academic video platforms, with an emphasis on usability, user behavior, and instructional effectiveness. It also investigates the role of school libraries and librarians in international Baccalaureate (IB) programs, as well as the hermeneutical relationships between biblical texts—particularly the Psalms and the Book of Job—through the lens of intertextuality and literary allusion. The lab integrates quantitative and qualitative methodologies to address practical challenges in education and information systems while contributing to theoretical advancements in digital literacy and biblical hermeneutics.
Professor Sung-Yul Yun's research lab focuses on youth development, particularly the work-life balance and well-being of student-athletes. The lab investigates the structural challenges student-athletes face in balancing academic, athletic, and personal life, with a strong emphasis on stress management, leisure participation, and social integration. Research directions include youth sport psychology, holistic student development, and the design of supportive educational and coaching environments. The lab also emphasizes qualitative methodologies such as in-depth interviews and member checking to ensure research validity and authenticity.
Professor Haneul Kim's research lab focuses on interdisciplinary studies at the intersection of human development, digital well-being, and socio-cultural expression. The lab explores parental perceptions of risk-taking play in early childhood, the emotional and aesthetic dimensions of digital content creation (particularly on platforms like YouTube), and the spiritual and ethical dimensions of avant-garde cinema. It also investigates digital social participation among older adults and the quality of occupational therapy education, reflecting a broad yet coherent commitment to understanding human flourishing through emotional, social, and ethical lenses in contemporary technological and cultural contexts. The lab integrates qualitative, quantitative, and critical theoretical approaches to examine well-being, identity, and creativity in diverse life stages and digital environments.
Professor Gyu-Seon Jeong's research lab specializes in clinical and molecular genetics, with a primary focus on chromosomal microdeletions and their implications in neurodevelopmental disorders. The lab investigates the genetic mechanisms underlying Prader-Willi syndrome (PWS) and growth hormone deficiency (GHD), particularly through advanced molecular techniques such as FISH with SNRPN probes and molecular analysis of GH receptor expression in adipose tissue. Research directions include improving diagnostic accuracy for microdeletion syndromes and evaluating the metabolic and body composition effects of growth hormone therapy in pediatric patients. The lab integrates cytogenetic, molecular, and clinical imaging approaches to understand genotype-phenotype correlations in endocrine and genetic diseases.
Professor Gwang-sik Min's research lab specializes in environmental toxicology and plant physiology, focusing on the biological impacts of environmental pollutants and the adaptation of medicinal plants under controlled environmental conditions. The lab investigates biomarker responses in marine organisms, such as the Pacific oyster, to assess toxicity of contaminants like polychlorinated biphenyls, with an emphasis on cellular immune responses and oxidative stress indicators. Additionally, the lab explores the growth performance and physiological responses of medicinal plants under varying light conditions, particularly in urban rooftop environments, to support sustainable urban agriculture and phytoremediation strategies. The research integrates ecotoxicological assessments with plant biotechnology for environmental and health applications.
Professor Minsuk Na's research lab specializes in otolaryngology and head and neck surgery, with a strong focus on innovative hearing restoration and chronic ear diseases. The lab investigates advanced bone conduction hearing devices, such as the SophonoⓇ implant, to improve hearing outcomes in patients with conductive or mixed hearing loss, particularly in complex surgical cases. It also explores biomarkers and inflammatory endotypes in chronic rhinosinusitis and develops individualized surgical strategies for challenging conditions like recurrent cholesteatoma. The lab emphasizes minimally invasive, patient-centered approaches with a goal of enhancing clinical outcomes and reducing complications.
Professor Won-Yong Shin's research lab specializes in data-driven artificial intelligence, with a strong focus on advancing intelligent systems through graph neural networks, large language models, and knowledge-aware recommendation systems. The lab explores foundational AI techniques such as network embedding, unified item tokenization, and few-shot learning to enhance decision-making, personalization, and interpretability in real-world applications. Current research directions include developing explainable and diverse recommendation systems, smart rehabilitation systems using personalized graph learning, and scalable AI frameworks that bridge language and item spaces for improved generalization and usability.
Professor Jin-Moon Choi's research lab specializes in advanced surface engineering and functional materials, focusing on environmentally friendly surface modification techniques for polymers and plastics. The lab develops innovative, dry-process methods—such as atmospheric plasma treatment using dielectric barrier discharges—for enhancing adhesion in electroless plating, particularly on materials like polypropylene and ABS. A key research direction involves creating high-performance conductive polymer composites for electronic and sensor applications, including humidity sensors based on air capacitors. The lab emphasizes sustainable, chemical-free processes that improve material compatibility and performance while minimizing environmental impact.
Professor Jae-Hyung Ju's research lab specializes in continental philosophy, with a focus on post-Kantian metaphysics, speculative realism, and the philosophy of life. The lab explores the metaphysical foundations of thinkers such as Deleuze, Bergson, Meillassoux, and Foucault, emphasizing their attempts to rethink being, consciousness, and reality beyond traditional metaphysical and epistemological frameworks. Central themes include the critique of correlationism, the reimagining of materiality and life, and the development of non-dualistic, non-essentialist ontologies that challenge both idealism and physicalism.
Professor Jaeyoung Yu's research lab specializes in computational fluid dynamics (CFD) and fluid-structure interaction, focusing on drag reduction and flow optimization in marine and aerospace systems. The lab investigates advanced surface engineering, such as V-shaped microstructures and superhydrophobic surfaces, to enhance hydrodynamic and aerodynamic performance. It also develops innovative fluidic devices—like axial bypass ejectors for fuel cell systems—through high-fidelity simulations and optimization techniques. The lab's work bridges fundamental fluid dynamics with practical applications in clean energy and high-speed transportation.
Professor Hyunjun Lee's research lab focuses on plant developmental biology, particularly the molecular mechanisms regulating flowering time and cellular reprogramming in plants. The lab investigates how genetic and environmental cues—such as temperature and photoperiod—control floral transition, using natural Arabidopsis accessions as models. Additionally, the lab explores the potential of plant cells to reprogram into diverse organ types, recently demonstrating the regeneration of stolons and tubers from potato leaf callus through Agrobacterium-mediated signaling. These studies aim to uncover fundamental principles of plant pluripotency and organogenesis with applications in crop improvement and biotechnology.
Professor Hong-jo Choi's research lab specializes in tuberculosis (TB) epidemiology, social determinants of health, and precision public health interventions. The lab focuses on understanding the societal, behavioral, and biological factors influencing TB outcomes, with particular emphasis on multidrug-resistant TB, asymptomatic TB, and long-term consequences for survivors. Using large-scale national health databases and advanced genomic tools like whole-genome sequencing, the lab integrates epidemiological, clinical, and molecular approaches to inform evidence-based TB control policies in South Korea and beyond.
Professor Yeon-ho Lee's research lab focuses on translational biomedical research with a strong emphasis on gastrointestinal pathology, oncology, and molecular mechanisms of disease. The lab investigates rare gastric polyps such as inverted hyperplastic polyps and their association with malignancy, contributing to improved diagnostic accuracy and clinical management. Additionally, the lab explores drug-induced toxicities—particularly L-asparaginase-induced pancreatitis—and develops interventional strategies for complex complications like pancreatic fistulas. A parallel line of research examines hepatoprotective agents, such as enzymatic porcine placenta hydrolysate, in alcohol-induced liver injury, with a focus on oxidative stress and metabolic regulation. The lab also engages in materials science, studying hydrogen-related defects in doped ZnO nanoparticles using advanced spectroscopic techniques.
Professor Jun Lee's research lab specializes in the intersection of art, technology, and human experience, focusing on innovative artistic practices that emerge from the dialogue between algorithmic systems and embodied, non-deterministic human expression. The lab explores how computational models—such as those in Compton imaging, generative algorithms, and artificial intelligence—can be reimagined through artistic and philosophical lenses to address questions of perception, agency, and relationality. Central themes include the limits of algorithmic determinism, the role of uncertainty and intuition in creative processes, and the ethical reconfiguration of human-technology collaboration in art and science. The lab also investigates trauma, emotional expression, and identity through participatory art education, particularly for marginalized or psychologically complex populations.
Professor Jeong-Yeol Kim's research lab specializes in infectious disease surveillance and diagnostic pathology, with a focus on improving public health responses to emerging infectious diseases and enhancing diagnostic accuracy in breast pathology. The lab develops and evaluates provincial-level surveillance systems for acute febrile illnesses, as demonstrated by the GAFINet initiative following the MERS-CoV outbreak in South Korea. It also investigates interobserver variability in diagnosing papillary breast lesions using core needle biopsy, aiming to standardize pathology reporting and improve clinical outcomes. The lab integrates clinical epidemiology, pathology, and health information systems to strengthen disease detection and diagnostic reliability.
Professor Suk Kyung Oh's research lab specializes in perioperative medicine, with a focus on airway management, neuromuscular blockade, and advanced pain control strategies. The lab investigates innovative airway devices such as the SLIPA and LMA to improve outcomes in novice practitioners, explores the safe use of sugammadex in patients with end-stage renal disease, and develops sustained-release local anesthetic formulations for prolonged postoperative analgesia. The lab also examines objective nociception monitoring using tools like the Surgical Pleth Index to optimize opioid administration during surgery.
Professor Gyungjin Choi's research lab focuses on advancing magnetic fusion energy through the development of high-performance, steady-state plasma regimes in tokamak devices. The lab specializes in understanding and optimizing plasma confinement, particularly through the innovative Fast Ion Regulated Enhancement (FIRE) mode, which leverages fast ions to stabilize core turbulence and sustain high ion temperatures over extended durations. Their work emphasizes advanced diagnostics, neutral beam injection, and the control of internal transport barriers to enable next-generation fusion reactor concepts. The lab's research contributes significantly to the realization of practical fusion energy by improving plasma stability and performance without reliance on complex profile control or excessive impurity accumulation.