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 Yoo Seung-don's research lab specializes in neuromusculoskeletal rehabilitation and neurological pain management, with a focus on stroke-related complications such as post-stroke pain, complex regional pain syndrome (CRPS), and motor dysfunction. The lab investigates innovative interventional techniques—like ultrasonography-guided stellate ganglion blocks—and biomechanical gait retraining to improve functional outcomes in patients with neurological impairments. Research also extends to rare neurological phenomena, including supernumerary phantom limbs and amyotrophic conditions like Hirayama disease, emphasizing early diagnosis and personalized rehabilitation strategies.
Professor Tae Wan Kim's research lab focuses on sustainable construction innovation and bio-inspired materials science. The lab investigates modular and offsite construction methodologies to enhance project performance, safety, and efficiency in urban environments, while also exploring gecko-inspired adhesion mechanisms for advanced surface engineering. A key emphasis is placed on understanding the interplay of critical success factors in modular construction and developing high-performance catalysts for clean energy applications.
Professor Jong Hwan Shin's research lab specializes in critical care medicine and emergency life support, with a focus on improving cardiopulmonary resuscitation (CPR) quality and outcomes in cardiac arrest. The lab investigates physiological markers such as ballistocardiogram (BCG) signal analysis for non-invasive cardiac monitoring, microcirculatory changes and red blood cell deformability following ischemia-reperfusion injury, and laboratory biomarkers like pH and potassium levels that predict survival and neurological recovery. Additionally, the lab explores strategies to sustain basic life support skills in laypersons through personalized video feedback and text messaging, emphasizing long-term retention of life-saving skills.
Professor Ranji Yoo's research lab specializes in the development and application of advanced nanomaterials for biomedical and environmental sensing, with a strong focus on pulmonary fibrosis and gas detection. The lab investigates the molecular mechanisms of radiation- and idiopathic-induced lung fibrosis, emphasizing endothelial-to-mesenchymal transition and extracellular matrix remodeling. A key research direction involves designing high-performance, selective, and low-detection-limit gas sensors using metal oxide nanoparticles, carbon nitride nanodots, and carbon nanotube-polyaniline composites for real-time monitoring of toxic volatile organic compounds and nitrogen-containing gases. The lab also explores drug delivery systems, such as albumin-based nanocarriers, to enhance the therapeutic efficacy of antifibrotic agents like apigenin.
Professor Sangwon Lee's research lab focuses on the intersection of digital media, political behavior, and civic engagement, with a particular emphasis on how social media and emerging platforms shape political knowledge, participation, and polarization. The lab investigates causal mechanisms linking incidental news exposure to political outcomes, examining platform-specific effects and the role of media complementarity. It also explores the psychological and cultural dimensions of news consumption, including subjective knowledge, affective polarization, and the symbolic meanings of media use in political contexts.
Professor Young Min's research lab specializes in interdisciplinary studies at the intersection of environmental biotechnology, social capital, and political behavior. The lab investigates enzymatic reactions in green solvents like supercritical CO₂, focusing on sustainable biocatalysis and reaction engineering. It also explores the societal impacts of digital media, particularly how internet access, digital literacy, and online participation shape civic engagement, political trust, and democratic participation. Additionally, the lab examines agenda-setting dynamics and the effects of political communication—especially negative campaigning—on voter behavior and political involvement.
Professor Sanha Kim's research lab specializes in advanced micro- and nanomanufacturing technologies, with a focus on next-generation electronic packaging, high-performance materials, and scalable fabrication processes. Key research directions include flexible and high-throughput printing of nanomaterials, electrostatic adhesion for microscale handling, hybrid bonding for 3D integration, and innovative approaches to stabilize lithium-metal anodes for next-generation batteries. The lab bridges fundamental materials science with practical device integration, targeting applications in flexible electronics, high-density packaging, and energy storage systems.
Professor Soomun Kwon's research lab specializes in population health and health services research, with a strong focus on aging, social determinants of health, and health policy evaluation. The lab investigates the impact of socioeconomic factors, social participation, and access to healthcare on cognitive function, chronic disease outcomes, and health disparities across different life stages, particularly among older adults and vulnerable populations such as disabled and elderly individuals. Using large-scale national survey data, the lab applies advanced statistical methods to inform targeted public health interventions and policy recommendations.
Professor Kyungchul Song's research lab focuses on pediatric metabolic health, with a primary emphasis on insulin resistance, non-alcoholic fatty liver disease (NAFLD), and obesity-related metabolic disorders in children and adolescents. The lab investigates biomarkers such as the triglyceride-glucose (TyG) index and modified TyG indices to improve early detection and risk prediction of metabolic and liver diseases. Using nationally representative data, the lab examines trends in prediabetes, NAFLD, and abdominal obesity, particularly during public health challenges like the COVID-19 pandemic, to inform preventive strategies. The research integrates clinical, biochemical, and epidemiological approaches to understand the pathophysiology and long-term implications of metabolic dysfunction in youth.
Professor Min Jung Kim's research lab specializes in interdisciplinary health sciences, focusing on clinical dental imaging, molecular regulation in erythropoiesis, explainable artificial intelligence in healthcare, and advanced computer vision for medical applications. The lab integrates biomedical imaging, molecular biology, and AI-driven solutions to address challenges in clinical decision-making, patient safety, and personalized healthcare. Current research directions include improving surgical outcomes through anatomical imaging, understanding microRNA regulation in blood cell development, and designing tailored AI explanations for clinicians and patients.
Professor Nam-Kyu Lee's research lab specializes in advanced functional materials for thermal and electromagnetic camouflage, with a focus on metamaterials and multiresonant structures for infrared and microwave applications. The lab develops flexible, broadband, and thermally stable camouflage systems that simultaneously control emissive signatures and manage radiative heat transfer to prevent thermal instability. Key research directions include the design of flexible assembled metamaterials (FAM), thermocamouflage materials (FTCM), and multispectral camouflage devices with tailored radiative properties across multiple spectral bands. The lab also investigates thermophoretic phenomena in microscale systems, emphasizing precise thermal control and characterization at small length scales.
Professor Youngho Kim's research lab specializes in ophthalmic imaging and retinal disease mechanisms, with a strong focus on optical coherence tomography (OCT) technologies such as SD-OCT, EDI-OCT, and SS-OCT. The lab investigates choroidal and retinal pathologies, particularly in age-related macular degeneration (AMD) and pachychoroid spectrum diseases (PSD), using advanced imaging to correlate structural changes with visual function and clinical outcomes. Additionally, the lab extends its research into public health and urban mobility by analyzing spatial patterns of bicycle usage in urban environments using network autocorrelation and geospatial statistics.
Professor Hyung-Chul Lee's research lab specializes in advanced control systems for intelligent transportation and automotive applications, focusing on robust and adaptive control strategies for nonlinear and uncertain dynamic systems. The lab develops innovative control methodologies—such as adaptive fuzzy logic control, sliding mode control, and robust backstepping techniques—to enhance vehicle stability, traction control, and autonomy in complex, real-world environments. Key research directions include integrated longitudinal and lateral vehicle control, sensor fusion for state estimation, and vehicle-in-the-loop (VIL) simulation for validating advanced driver assistance systems (ADAS). The lab emphasizes practical implementation and reliability under model uncertainties and parameter variations.
Professor Hyuk Jin Choi's research lab specializes in ophthalmic xenotransplantation and corneal bioengineering, focusing on overcoming donor corneal shortages through the development of decellularized porcine corneal substitutes. The lab investigates immunological responses, including anti-Gal antibody dynamics and cross-reactivity between xeno- and alloantigens, to improve long-term graft survival. Advanced imaging techniques, such as anterior segment optical coherence tomography, are employed to assess corneal and scleral morphology, supporting clinical applications in ocular surface disease. The lab also explores innovative post-processing methods for medical image enhancement, particularly in reducing blocking artifacts in compressed images.
Professor Sang-hyeop Lee's research lab specializes in clinical ophthalmology and biomedical engineering, with a focus on glaucoma management, ocular infections, and advanced biomaterials. The lab investigates long-term outcomes of glaucoma surgical interventions such as Ahmed valve implantation, explores complex corneal infections involving multidrug-resistant organisms, and develops functionalized materials for improved energy performance. Research spans from clinical trials and patient outcomes to material synthesis and thermophysical characterization, reflecting a strong translational approach.
Professor Jeong-I Kwon's research lab specializes in pediatric neuromuscular rehabilitation, with a primary focus on improving motor function and quality of life in children with cerebral palsy. The lab investigates innovative therapeutic interventions such as botulinum toxin A, selective neuromuscular blocking techniques, and hippotherapy to address spasticity, dynamic foot deformities, and balance impairments. A key emphasis is placed on evidence-based, minimally invasive treatments supported by clinical trials and real-time feedback technologies like ultrasonography. The lab also explores early detection and management of post-surgical complications, such as dysphagia in infants after cardiac surgery, to enhance recovery and reduce hospitalization duration.
Professor Chang Mook Kang's research lab specializes in advanced vehicle control systems with a focus on autonomous driving technologies. The lab develops innovative kinematic and dynamic modeling techniques, predictive control strategies, and state estimation methods for lateral vehicle control, particularly in lane-keeping and path-tracking applications. Key research directions include multirate control systems, virtual lane estimation, and robust observer design using linear parameter-varying (LPV) formulations to enhance system reliability under uncertain conditions such as sensor failures or varying tire-road characteristics. The lab emphasizes practical validation through simulation (CarSim, MATLAB/Simulink) and real-world testing using test vehicles equipped with dSPACE AutoBox and electric power steering systems.
Professor Sun-ah Park's research lab specializes in public administration, policy analysis, and organizational behavior with a strong focus on empirical and quantitative methods. The lab investigates key issues such as public trust in government, bureaucratic effectiveness, civil service motivation, and environmental policy impacts—particularly on air quality and waste management. Research directions include the interplay between administrative culture, citizen satisfaction, and institutional performance, often employing structural equation modeling and panel data analysis to assess policy outcomes and organizational efficiency.
Professor Imjin Lee's research lab focuses on interdisciplinary health and social sciences, with primary research directions in medical imaging, pediatric otolaryngology, cultural studies of African American identity in literature, second language learning processes, and gerontological health disparities among Asian American populations. The lab integrates clinical imaging, linguistic ethnography, and sociocultural analysis to explore health disparities, patient communication, and identity formation across diverse populations.
Professor Hyoungmin Kim's research lab specializes in spinal surgery and musculoskeletal health, with a strong focus on minimally invasive spinal fusion techniques such as oblique lateral interbody fusion (OLIF) for degenerative lumbar diseases. The lab investigates clinical outcomes, surgical indications, and patient-specific predictors—including geriatric assessment and psychological factors like depression—in spinal surgery. Additionally, the lab applies network analysis to international arms transfer data, reflecting an interdisciplinary interest in global health and policy. The research integrates clinical outcomes with broader public health and systemic health policy perspectives.