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 Dae Won Kim's research lab focuses on the molecular mechanisms underlying developmental biology, particularly in skeletal and neural systems. The lab investigates transcriptional regulation, signaling pathways such as BMP, Ihh, and NF-κB, and their roles in cell fate determination, chondrocyte differentiation, and developmental plasticity. A central theme is the interplay between transcription factors like Nkx3.2 and co-regulators (e.g., HDAC1, NEMO) in controlling cell survival, differentiation, and disease-relevant processes. The lab also explores behavioral and psychological aspects of clinical training, particularly in counseling and early termination in therapeutic relationships.
Professor Na Ra Kim's research lab specializes in interdisciplinary studies at the intersection of nanomaterials, molecular communication systems, and biomedical engineering. The lab focuses on developing advanced functional materials—particularly metallic nanoparticle films—through innovative processing techniques like movable halogen lamp annealing to enhance electrical and structural properties. Another key research direction involves modeling and optimizing molecular communication systems, especially for biosensing applications using metal-oxide sensors. The lab also investigates health economics and cognitive development, exploring catastrophic health spending in aging populations and the impact of numerical ability training on children’s math achievement.
Professor Ji Hoi Kim's research lab focuses on neuroscience and molecular oncology, with a strong emphasis on understanding the neurobiological basis of migraine through advanced neuroimaging techniques such as voxel-based morphometry and PET scanning. The lab also investigates the role of novel cytokines like IL-32 in cancer progression, particularly in colon and melanoma models, highlighting the regulation of key signaling pathways such as NF-κB and STAT3. Additionally, the lab contributes to reproductive biology by identifying surface markers like GFRα-1 for isolating porcine spermatogonial stem cells, supporting regenerative and biotechnological applications. Their work bridges clinical neurology, cancer biology, and stem cell research with translational implications.
Professor Chandeok Park's research lab specializes in advanced optimal control theory with a focus on nonlinear and underactuated dynamical systems. The lab develops analytical and numerical methods for solving complex optimal control problems using Hamilton-Jacobi theory, generating functions, and pseudospectral methods, particularly for aerospace applications such as spacecraft trajectory design and lunar mission planning. A key strength lies in deriving closed-loop feedback control laws that are analytically explicit and robust to varying boundary conditions, even in the presence of singularities or system constraints. The lab also explores the deep connections between optimal control, canonical transformations, and the Hamilton-Jacobi-Bellman equation to enable global solutions for challenging control problems.
Professor Suk-jin Eom's research lab focuses on contemporary public administration and governance in the digital and open government era, with a strong emphasis on administrative responsibility, fairness, and innovation. The lab explores evolving forms of bureaucracy—such as the digital twin bureaucracy and open government data initiatives—while critically examining institutional arrangements, leadership practices, and policy implementation across different political and technological contexts. Central themes include the transformation of public administration through digitalization, the institutionalization of transparency and accountability, and the socio-political dimensions of e-government and new public management reforms.
Professor Hongju Woo's research lab specializes in consumer behavior, corporate social responsibility (CSR), and sustainable fashion within the global apparel and beauty industries. The lab investigates how consumer motivations—such as utilitarian and hedonic drivers, fashion consciousness, and self-efficacy—influence attitudes and intentions toward subscription-based fashion and beauty services. It also explores the role of CSR in shaping brand equity, the cross-cultural impact of country-of-origin and brand image, and the strategic communication of CSR across global fashion retailers. The lab employs mixed-methods approaches, including surveys, case studies, and content analysis, to address pressing issues in ethical consumption, crisis communication, and education-driven consumer behavior in East Asia.
Professor Jeong-Hyung Park's research lab specializes in differential geometry and spectral theory, focusing on the interplay between geometric structures and their spectral invariants. The lab investigates Riemannian submersions, Einstein manifolds, and tangent sphere bundles, with particular emphasis on contact and H-contact metric structures. Key research directions include spectral characterization of geometric properties, especially through the Laplacian spectrum under various boundary conditions, and the geometric implications of quasi-contact and Sasaki structures on tangent bundles.
Professor Chang-Ju Park's research lab specializes in oral and maxillofacial surgery, with a strong focus on regenerative dentistry and implantology. The lab investigates innovative techniques for alveolar bone regeneration, including the use of preformed titanium mesh and platelet-rich fibrin (PRF) in sinus augmentation procedures. Key research directions include improving the accuracy of surgical templates for dental implantation, evaluating the impact of systemic diseases like rheumatoid arthritis on periodontal health, and optimizing local anesthesia protocols for third molar surgery. The lab emphasizes clinical applications supported by evidence-based research and minimally invasive techniques.
Professor Jin-Hee Han's research lab specializes in translational biomedical research, focusing on the therapeutic potential of polydeoxyribonucleotide (PDRN), an adenosine A2A receptor agonist, in various inflammatory and ischemic conditions. The lab investigates PDRN’s anti-inflammatory, anti-apoptotic, and tissue-protective effects in preclinical models of acute liver injury, cerebral and ischemic colitis, Parkinson’s disease, and perioperative anesthesia. A central theme is the modulation of neuroinflammation and cell death pathways, particularly through suppression of microglial activation and astrocyte reactivity. The lab also explores non-pharmacological interventions, such as treadmill exercise, in neurodegenerative models.
Professor Kyung Seok Woo's research lab specializes in next-generation neuromorphic and probabilistic computing using resistive random-access memory (ReRAM) devices, particularly focusing on ion-migration-driven memristors based on HfO₂ and chalcogenide materials. The lab explores the dual functionality of these devices—enabling both universal Boolean logic operations and true random number generation—by exploiting their intrinsic stochastic switching behaviors. Key research directions include physical reservoir computing, probabilistic computing inspired by Hopfield networks, and hardware security applications such as physically unclonable functions (PUFs), all aimed at overcoming the limitations of conventional silicon-based systems in energy efficiency and functional versatility. The lab emphasizes device physics, stochastic dynamics, and circuit integration to enable intelligent, secure, and low-power computing architectures.
Professor Soo-Jung Nam's research lab focuses on consumer behavior, sustainable development, and social inclusion, with a particular emphasis on how knowledge, empowerment, and socio-demographic factors influence attitudes and decisions toward eco-friendly products, genetically modified foods, and shared value initiatives. The lab also investigates digital equity, especially the digital literacy and technology access of people with disabilities, and explores the psychosocial burdens faced by caregivers of individuals with disabilities. Research integrates behavioral science, social responsibility, and policy-relevant insights to support inclusive and sustainable development in food systems and digital societies.
Professor Soo Min Shin's research lab focuses on materials science and engineering, particularly in iron-carbon systems, high-temperature reactions, and interfacial phenomena in metallurgical processes. The lab investigates carburization, melting, and wetting behaviors of iron in contact with graphite and coke, with applications in steelmaking and energy-intensive industrial processes. Additionally, the lab explores knowledge management, information sharing, and psychological ownership in organizational contexts, integrating sociological and psychological perspectives to improve knowledge flow and decision-making systems. The lab also engages in applied research on digital media and service innovation, particularly in IPTV and mobile media business models, emphasizing consumer value and market positioning.
Professor Juhoo Park's research lab specializes in educational leadership, teacher collaboration, and school improvement, with a strong focus on the organizational and interpersonal factors that influence teaching effectiveness and student outcomes. The lab investigates how principal leadership, professional learning communities, teacher collective responsibility, and teacher self-efficacy shape school-level outcomes such as student achievement and professional development. Drawing on large-scale international and national datasets (e.g., TALIS, TIMSS, HSLDA), the lab emphasizes empirical, multilevel analyses to inform policy and practice in K-12 and vocational education contexts. A central theme is the interplay between school culture, teacher agency, and systemic reform, particularly in Asian and OECD education systems.
Professor Ho-Young Kim's research lab specializes in bio-inspired micro- and nanoscale systems, focusing on soft robotics, responsive hydrogels, and capillary-driven phenomena. The lab develops intelligent, energy-autonomous micro-actuators using environmental stimuli such as humidity and surface tension, enabling applications in medical microrobotics and precision fluidics. Key innovations include hygrobot actuators, water-strider-inspired jumping robots, and fast, high-stress hydrogel actuators driven by turgor and electroosmosis.
Professor Yong-tak Jung's research lab focuses on the molecular and neural mechanisms underlying chemosensation and mechanosensation in *Drosophila*, with a particular emphasis on gustatory receptor function, neural circuit integration, and the role of sensory systems in feeding behavior. The lab investigates how specific combinations of gustatory receptors detect toxic compounds and regulate aversive responses, as well as how mechanosensory inputs interact with chemosensory pathways to shape feeding decisions. Additionally, the lab explores the ectopic expression and non-taste functions of taste receptors in non-gustatory tissues, especially in specialized epithelial cells like tuft cells. These studies provide fundamental insights into sensory perception, neural circuit logic, and homeostatic regulation in animal behavior.
Professor Cheolhyun Park's research lab specializes in the intersection of metabolic health, musculoskeletal disorders, and systemic inflammation, with a focus on sarcopenia, obesity, and their implications in chronic diseases. The lab investigates the relationships between body composition, inflammatory markers like hs-CRP, and clinical outcomes such as lung function, diabetes-related spinal disorders, and dysphagia. Utilizing large-scale national health databases and clinical assessments, the lab emphasizes population-based, observational studies to uncover sex-specific and age-related patterns in metabolic and musculoskeletal health. Their work also explores predictive biomarkers and clinical tools—such as HRM parameters—for early detection of conditions like aspiration pneumonia in vulnerable populations.
Professor Jeong Yong-gi's research lab specializes in otorhinolaryngology and head and neck surgery, with a strong focus on advancing diagnostic accuracy and treatment outcomes in nasal and sinus disorders. The lab integrates clinical research with cutting-edge technologies such as artificial intelligence and medical imaging to improve the management of conditions like septal deviation, chronic rhinosinusitis, and fungal sinus disease. Key research directions include the development of AI-driven computer-aided diagnosis systems for CT and CBCT imaging, evaluation of biomaterials in rhinoplasty, and investigating the neuropsychiatric impact of nasal obstruction using big data analytics.
Professor Jinshil Kim's research lab focuses on antimicrobial resistance (AMR) in foodborne pathogens, particularly in retail poultry and food animals, with an emphasis on the molecular mechanisms of resistance, transmission dynamics, and One Health implications. The lab investigates the role of gut microbiota in colonization resistance, the emergence and spread of multidrug-resistant (MDR) and pan-drug-resistant (PDR) bacteria such as ESBL- and mcr-1-positive E. coli, and the potential of phage therapy as a biocontrol strategy. Additionally, the lab explores host-pathogen interactions and communication models in end-of-life care, reflecting a multidisciplinary approach integrating microbiology, genomics, and health systems research.
Professor Su Mi Shin's research lab specializes in clinical and translational studies spanning pediatric neurology, oral biomaterials, veterinary medicine, and respiratory disease. The lab focuses on understanding rare neurological conditions such as meningioangiomatosis-associated meningiomas, optimizing dental ceramic restorations through light transmission and resin cement curing, and evaluating clinical outcomes in pediatric patients with infectious diseases like COVID-19. Additionally, the lab investigates bovine mastitis through milk composition analysis, highlighting a multidisciplinary approach to health and disease across human and animal populations.
Professor Joo-Won Jeong's research lab specializes in identifying and characterizing natural compounds with anti-angiogenic, anti-cancer, and neuroprotective properties. The lab focuses on elucidating the molecular mechanisms underlying the therapeutic effects of bioactive phytochemicals such as melatonin, p-coumaric acid, glycyrrhizic acid, cinnamaldehyde, and zingerone in cancer and neurodegenerative diseases. Key research directions include tumor angiogenesis inhibition, regulation of hypoxia-inducible factor-1α (HIF-1α), modulation of signaling pathways (e.g., AKT, ERK, JNK), and induction of autophagy in neurodegenerative models. The lab integrates in vitro cell culture studies with in vivo animal models to validate the translational potential of natural compounds in disease therapy.