首尔大学、KAIST、延世大学等韩国QS前10名大学的研究室信息。
Professor Daehoon Kim's research lab focuses on cardiovascular and cerebrovascular diseases, with a strong emphasis on atrial fibrillation (AF) and its long-term complications, including dementia and cognitive decline. The lab investigates the impact of rhythm and rate control strategies, anticoagulant adherence, and comorbid conditions such as hypertension on clinical outcomes in AF patients. Using large-scale national databases, the lab explores mechanisms linking AF to neurocognitive impairment and identifies modifiable risk factors, particularly in midlife populations. The research also extends into molecular mechanisms of epigenetic regulators like CARM1, linking cellular signaling to disease pathogenesis.
Professor Seohyun Kim's research lab focuses on interdisciplinary health and biomedical research, with a strong emphasis on aging-related musculoskeletal and pulmonary health, postural control in older adults, and the psychosocial well-being of marginalized communities. The lab investigates sarcopenia, obesity-sarcopenia synergy, lung function decline, and the role of biomarkers such as adiponectin/leptin and apolipoprotein ratios in chronic disease progression. It also explores innovative rehabilitation strategies, including augmented somatosensory feedback and AFOs, for improving postural stability. Additionally, the lab conducts critical qualitative research on identity, belonging, and resilience among LGBTQ+ refugees, particularly through the lens of 'chosen family' as a protective factor in resettlement.
Professor Yongwon Jung's research lab specializes in the development of innovative biomolecular tools and bioconjugation strategies for advanced diagnostic and therapeutic applications. The lab focuses on engineering site-specific protein-DNA conjugates, antibody immobilization techniques, and functional probes for sensitive detection of nucleic acids and proteins. Key research directions include the design of photoactivatable antibody-binding proteins, locked nucleic acid (LNA)-based microRNA detection systems, and understanding protein-DNA interactions involving damage-response factors like HMGB1. The lab integrates chemical biology, structural biology, and biophysical methods to create highly specific and efficient bioassay platforms.
Professor Kwang-Jae Kim's research lab specializes in advanced manufacturing systems, with a focus on multiresponse optimization, product-service system (PSS) design, and quality engineering. The lab develops innovative methodologies for optimizing complex manufacturing processes and supporting the creation of integrated product-service solutions that enhance system performance and customer satisfaction. Key research directions include model-free optimization techniques, quality function deployment, and the application of data-driven decision-making tools in industrial settings.
Professor Dong-Kwon Rhee's research lab focuses on microbial pathogenesis, particularly the molecular mechanisms of virulence in *Streptococcus pneumoniae*, including stress response regulation and genetic determinants of pathogenicity. The lab also investigates the host-microbe interactions and the immunomodulatory effects of natural compounds such as ginseng, especially in relation to stress-related diseases, inflammation, and respiratory infections. A key research direction involves elucidating the protective roles of ginseng and its components in mitigating oxidative stress, enhancing immune responses, and preventing chronic inflammatory and neurological disorders. The lab integrates molecular microbiology, host immunology, and natural product pharmacology to explore therapeutic applications of ginseng and bacterial stress response pathways.
Professor Juhee Chin's research lab specializes in cognitive neuroscience and neuropsychiatry, focusing on the early detection and characterization of mild cognitive impairment (MCI) and its progression to neurodegenerative diseases such as Alzheimer’s disease and subcortical vascular dementia. The lab investigates the interplay between self-focused attention, depressive symptoms, and objective cognitive performance in individuals with severe mental illness (SMI), as well as the neuropsychiatric profiles associated with different subtypes of MCI. Using validated cognitive screening tools like Inbrain CST and neuroimaging techniques such as MRI cortical thinning analysis, the lab aims to enhance clinical assessment and early intervention strategies for cognitive decline in aging populations. Their work bridges clinical psychology, neuropsychology, and neuroimaging to improve diagnostic accuracy and patient outcomes.
Professor Moon Son's research lab specializes in advanced materials and electrochemical systems for sustainable water and energy solutions. The lab focuses on developing innovative desalination and ion separation technologies, including rechargeable seawater batteries, mixed capacitive deionization, and forward osmosis systems with enhanced efficiency. Key research directions involve designing functional nanomaterials—such as boron nitride nanotubes and metal hexacyanoferrate composites—for energy-efficient water purification and ion recovery, with an emphasis on reducing energy consumption and membrane fouling. The lab also explores electrochemical systems for selective ammonium recovery, contributing to resource recovery from wastewater.
Professor Seibum B. Choi's research lab specializes in advanced vehicle control systems, focusing on intelligent braking and throttle control for autonomous and automated vehicles. The lab develops model-based, adaptive, and sliding mode control strategies to enhance vehicle stability, safety, and ride quality, with particular emphasis on electromechanical brakes, active steering, and integrated longitudinal control. Research integrates real-time estimation, dynamic modeling, and hardware-in-the-loop validation using test vehicles and dynamometer systems. The lab’s work bridges theoretical control design with practical implementation in drive-by-wire and automated driving systems.
Professor Jaeyeon Kim's research lab specializes in hydrogeoscience and environmental data analytics, focusing on groundwater dynamics, contaminant transport, and the application of geochemical tracers such as radon and isotopes in understanding subsurface processes. The lab investigates the impacts of natural and induced seismicity on groundwater systems, climate change effects on water quality, and the development of advanced analytical frameworks for environmental monitoring. Recent work also extends into AI-driven environmental modeling, including audio captioning using multimodal deep learning, reflecting a growing integration of data science in environmental research.
Professor Soo-Jin Yang's research lab focuses on the molecular mechanisms underlying daptomycin resistance in *Staphylococcus aureus*, particularly in methicillin-resistant (MRSA) strains. The lab investigates genetic and regulatory pathways—such as the GraRS two-component system, mprF mutations, and dlt operon expression—that modulate bacterial cell surface charge and contribute to antibiotic resistance. Using clinical isolates and isogenic strain pairs from treatment failures, especially in endovascular infections, the lab explores how resistance evolves in vivo and impacts therapeutic outcomes. Their work also examines the interplay between resistance mechanisms and bacterial fitness in infection models.
Professor Joung-Hun Kim's research lab focuses on the cellular and molecular mechanisms underlying neurodegenerative diseases, particularly Alzheimer’s disease, with a strong emphasis on amyloid precursor protein (APP) processing, amyloid-beta toxicity, synaptic plasticity, and calcium homeostasis. The lab investigates the roles of key signaling molecules such as dopamine, neuritin (CPG15), eIF2α, and LIMK1 in neuronal function and synaptic regulation, using advanced techniques including atomic force microscopy, electrophysiology, and in vivo behavioral models. A central theme is understanding early pathogenic events in Alzheimer’s disease, including oxidative stress, disrupted protein synthesis, and impaired synaptic transmission. The lab also explores potential therapeutic targets, such as neuritin overexpression and antioxidant interventions, to rescue cognitive deficits in Alzheimer’s models.
Professor Yeo-Chang Youn's research lab focuses on the sustainable management of forest resources and ecosystem services, with a strong emphasis on socio-ecological systems, community-based forest governance, and policy-oriented environmental decision-making. The lab investigates the drivers of forest degradation, particularly related to non-timber forest product extraction and logging policies, while exploring public preferences for ecosystem services in urban and rural contexts across East Asia. Key research directions include the sustainability of traditional forest commons, the impact of policy changes on forest-dependent communities, and the application of choice experiments and Delphi methods to inform environmental governance.
Professor Junsang Doh's research lab specializes in developing advanced biomaterials and microengineered platforms to study and enhance T cell function in complex biological environments. The lab focuses on understanding how physical cues—such as nanotopography, extracellular matrix architecture, and immunological synapse structure—influence T cell migration, activation, and anti-tumor responses. By integrating microfabrication, photochemistry, and 3D tissue models, the lab creates physiologically relevant in vitro systems to evaluate cancer immunotherapies, including adoptive T cell therapy and combination strategies with photothermal therapy. Their work aims to bridge the gap between in vitro assays and clinical outcomes by mimicking the tumor microenvironment and vascular barriers that govern T cell efficacy.
Professor In Hwan Jung's research lab specializes in the design and synthesis of novel conjugated polymers and small molecules for optoelectronic applications, with a primary focus on organic photovoltaics and thermoelectric materials. The lab develops low-bandgap semiconducting polymers using advanced heterocyclic building blocks—such as cyclopentadithiophene, diketopyrrolopyrrole, and thienoisoquinoline derivatives—to achieve tunable energy levels, enhanced charge transport, and improved device performance. Key research directions include structure-property relationships in all-polymer solar cells, precise doping strategies for high-performance thermoelectric materials, and the development of fullerene-free organic solar cells with high efficiency and stability.
Professor Ho-Jin Son's research lab specializes in the design and development of advanced functional materials for sustainable energy conversion and environmental remediation. The lab focuses on molecular and hybrid materials for solar energy harvesting, particularly dye-sensitized solar cells (DSCs), metal-organic frameworks (MOFs) for light-harvesting, and TiO₂-based photocatalytic systems for CO₂ reduction. Key research directions include suppressing interfacial recombination, preventing dye desorption, mitigating dye aggregation, and enhancing charge transfer through atomic layer deposition (ALD) and nanoengineering strategies. The lab also explores tunable luminescent Zn(II) complexes and energy migration in highly ordered porphyrin-based frameworks for artificial photosynthesis applications.
Professor Hayeon Song's research lab focuses on the intersection of communication, health behavior, and emerging technologies, with a strong emphasis on how individual differences and contextual factors influence information processing and user experiences. The lab investigates health communication across diverse populations, particularly low-income and pregnant women, while exploring the role of technology—such as virtual reality, exergames, and online education—in shaping perceptions, social presence, and behavioral outcomes. A central theme is understanding how psychological factors like self-awareness, personality traits, and social connection affect engagement with digital health and media content.
Professor Hyungpil Moon's research lab specializes in advanced robotic manipulation and tactile sensing technologies, focusing on distributed manipulation systems that leverage passive airflow fields and innovative sensor designs. The lab develops algorithmic frameworks for force control and object manipulation using logarithmic potential fields, enabling precise, contactless manipulation. A key focus is on creating parasitic capacitance-free tactile sensors with floating electrodes, enhancing sensitivity and reliability in multi-cell sensor arrays. The lab bridges robotics, mechatronics, and human-machine interaction through novel actuation and sensing solutions.
Professor Dong Ki Yoon's research lab specializes in the design and manipulation of soft matter systems, particularly liquid crystals and biomaterials, with a focus on using topographical and electrostatic confinement to achieve precise molecular alignment and hierarchical structuring. The lab explores novel phases of bent-core and discotic liquid crystals, develops advanced processing techniques for high-performance organic semiconductors, and pioneers optofluidic and DNA-based photonic devices for sensitive, label-free biosensing. A central theme is the integration of materials science, nanofabrication, and optical phenomena to create functional micro- and nanostructures for applications in photonics, electronics, and biomedicine.
Professor Jerald D. Kralik's research lab investigates the cognitive and neural mechanisms underlying decision-making, inhibitory control, and metacognition in primates and other vertebrates. The lab focuses on understanding how animals—particularly tamarins and macaques—manage prepotent responses, generalize learning across novel situations, and apply abstract rules in complex environments. Using behavioral experiments and comparative cognition approaches, the lab explores the evolutionary roots of executive function and the architecture of nervous systems, with a particular emphasis on how cognitive heuristics and neural circuitry shape adaptive behavior. The work also extends to model systems like *C. elegans* to uncover fundamental principles of neural network organization and function.
Professor Sang Do Noh's research lab focuses on advancing smart manufacturing and industrial sustainability through digital transformation. The lab specializes in digital twin technologies, cyber-physical production systems (CPPS), and service-oriented platforms leveraging the Industrial Internet of Things (IIoT) to enable resilient, efficient, and personalized manufacturing. Key research directions include the integration of PLM (Product Lifecycle Management) with cyber-physical systems, optimization of energy efficiency in small- and medium-sized enterprises, and the development of modular micro smart factories for agile, cost-effective production. The lab emphasizes system-level coordination and operational resilience in dynamic, make-to-order environments.