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 Junmo Kim's research lab specializes in ophthalmic research with a focus on glaucoma, retinal vascular diseases, and ocular hemodynamics. The lab investigates the impact of pharmacological agents—such as Ginkgo biloba extract and anthocyanins—on visual function in patients with normal-tension glaucoma, based on the vascular theory of optic nerve damage. It also explores imaging biomarkers like fundus autofluorescence patterns in conditions such as central serous chorioretinopathy and examines the physiological effects of pupil dilation and cataract surgery on intraocular pressure dynamics. The lab integrates clinical ophthalmology with advanced imaging and biometric analysis to understand structural and functional changes in the retina and optic nerve.
Professor Jinsub Park's research lab specializes in the design, synthesis, and application of advanced oxide-based nanomaterials for optoelectronic and energy conversion devices. The lab focuses on developing novel ZnO, ZnSnO₃ (ZTO), and Zn₂SnO₄ (c-ZTO) nanostructures and heterostructures with tailored electronic and optical properties, particularly for high-performance UV photodetectors and GaN-based light-emitting diodes (LEDs). Key research directions include nanostructure engineering for enhanced photoresponse speed, light extraction efficiency, and second harmonic generation through periodic polarity inversion. The lab also explores innovative growth techniques such as in situ polarity inversion and transferable microsphere monolayers for device integration.
Professor Woon Yong Kwon's research lab specializes in critical care and translational immunology, focusing on the molecular mechanisms underlying sepsis-induced organ injury, particularly acute lung injury and brain injury. The lab investigates protective pathways involving key molecules such as NF-κB, HSP70, HMGB-1, and mitochondrial formyl peptides, with an emphasis on therapeutic interventions using niacin, selenium, glutamine, and S1P1 modulators. Their work bridges preclinical models with clinical relevance, aiming to identify novel targets and combination therapies to improve survival and organ function in septic shock. The lab integrates in vitro cell studies with in vivo rat models of sepsis to dissect signaling pathways and evaluate therapeutic efficacy.
Professor Ui-Hwan Jeong's research lab focuses on the molecular mechanisms underlying plant innate immunity, with a central emphasis on nucleotide-binding leucine-rich repeat (NLR) receptors and their role in pathogen recognition and immune activation. The lab investigates how NLRs detect pathogen effectors, trigger immune signaling, and induce programmed cell death, particularly through TIR (Toll/interleukin-1 receptor) domain-mediated NAD+ cleavage and downstream signaling. A key focus is understanding the structural and biochemical basis of NLR activation, including autoimmunity arising from natural NLR variants and the role of post-translational modifications such as ADP-ribosylation in virulence and defense. The lab also explores the subcellular dynamics of immune receptors and their interplay with host cellular machinery, such as the exocyst complex and RIN4 protein.
Professor Nok-Kyun Kwo's research lab specializes in electrohydrodynamics and microfluidic systems, focusing on ion concentration polarization (ICP) phenomena for advanced applications in desalination, biomolecule preconcentration, and point-of-care diagnostics. The lab integrates experimental, numerical, and theoretical approaches to develop innovative, passive, and continuous-flow devices that leverage electroconvective flows and selective ion transport. Key research directions include the design of nanofluidic and paper-based platforms for sensitive molecular detection and efficient ion separation.
Professor Sung-Hyuk Heo's research lab specializes in cerebrovascular disease, with a primary focus on the pathophysiology of carotid atherosclerosis, plaque instability, and the molecular mechanisms underlying plaque rupture. The lab investigates key biomarkers such as matrix metalloproteinases (MMP-2 and MMP-9) and ABCA1, as well as the impact of medical therapies—like cilostazol—on carotid intima-media thickness and vascular outcomes. Their work integrates clinical data, histopathological analysis, and imaging to improve risk stratification and treatment strategies in patients with carotid stenosis, particularly in the elderly population.
Professor Nan Hoesung's research lab specializes in speech processing, computational phonetics, and second language acquisition, with a strong focus on modeling speech production through articulatory gestures and task dynamics. The lab develops advanced computational systems—such as the TADA platform—to simulate and analyze the temporal coordination of speech gestures, enabling synthesis and annotation of natural speech at a gestural level. A key research direction involves creating data-driven, analysis-by-synthesis frameworks for automatic gestural annotation of speech, enhancing both speech recognition and second language learning applications. The lab also investigates how different types of input and instruction affect implicit linguistic knowledge, particularly in the context of idiom acquisition and processing.
Professor Dokyun Kim's research lab specializes in antimicrobial resistance (AMR) surveillance, with a focus on the epidemiology, molecular mechanisms, and clinical impacts of multidrug-resistant pathogens such as *Escherichia coli*, *Klebsiella pneumoniae*, *Pseudomonas aeruginosa*, and *Acinetobacter* spp. The lab conducts national surveillance through systems like Kor-GLASS and KARMS, emphasizing antimicrobial susceptibility testing, AMR genotyping, and strain characterization to inform public health policies and treatment guidelines. A key research direction involves understanding the clinical significance of resistant phenotypes, including carbapenemase-producing organisms and atypical resistance patterns like ASPR in *Enterococcus faecalis*.
Professor Yong Hoon Jeong's research lab specializes in advanced energy systems and environmental sustainability, with a strong focus on nuclear thermal propulsion for space exploration and innovative water splitting technologies for clean hydrogen production. The lab investigates critical thermal-hydraulic phenomena such as critical heat flux in reactor systems and develops advanced cycles like the hybrid sulfur cycle for efficient, low-temperature hydrogen generation. Additionally, the lab conducts long-term environmental monitoring of large-scale aquatic ecosystems, such as the Saemangeum Reservoir, to assess the ecological impacts of major engineering projects. These interdisciplinary efforts bridge nuclear energy, sustainable chemistry, and environmental engineering.
Professor Hyuk Kim's research lab specializes in advanced materials and energy systems, with a primary focus on solid oxide fuel cells (SOFCs) and molten slag rheology. The lab investigates durable, high-performance anodes—particularly Cu-ceria composites—that enable direct oxidation of hydrocarbon fuels without reforming, even under sulfur-contaminated conditions, and explores innovative fabrication methods for porous electrolytes using template removal techniques. Additionally, the lab examines the viscosity and structural behavior of industrial slags, especially in relation to MgO and flux additives, to optimize processes in steelmaking and materials processing.
Professor Jae Hoon Oh's research lab specializes in healthcare-oriented artificial intelligence and wearable technology, focusing on improving emergency medical care through intelligent systems. The lab investigates meta-learning and federated learning for personalized and adaptive medical AI models, particularly in data-scarce or heterogeneous environments. It also develops smartwatch-based feedback systems for cardiopulmonary resuscitation (CPR) training and evaluates the real-world performance of medical devices like respirators under dynamic conditions. The overarching goal is to enhance clinical decision-making and patient outcomes using AI, wearable sensors, and human-centered technology design.
Professor Min Jung Kang's research lab specializes in organizational communication, public relations, and relationship management, with a focus on how symmetrical communication, trust, justice, and engagement shape employee and public relationships. The lab explores the cognitive-affective-behavioral dynamics in organizational-public and employee-organization relationships, particularly in crisis contexts and nonprofit settings. Key research directions include the role of dialogic communication, relational outcomes, and behavioral intentions in fostering trust, engagement, and support. The lab emphasizes theoretical development and empirical validation of constructs such as public engagement, organizational justice, and relationship quality.
Professor Leonard Sunwoo's research lab specializes in medical image analysis and artificial intelligence, with a focus on advancing deep learning and compressed sensing techniques for magnetic resonance imaging (MRI) reconstruction and diagnosis. The lab explores data-driven approaches such as low-rank Hankel matrix completion and unpaired deep learning to enable accurate k-space interpolation with reduced scan time, particularly in accelerated MRI. Additionally, the lab investigates the application of convolutional neural networks in detecting diseases like brain metastasis, sinusitis, and vascular changes from retinal fundus images, emphasizing diagnostic accuracy and clinical relevance.
Professor Jeong-eun Lee's research lab focuses on the biological and pathological impacts of nanomaterials, particularly nanoplastics, on human health and disease mechanisms. The lab investigates molecular pathways involved in cancer progression, especially osteosarcoma, with an emphasis on inflammatory mediators like COX-2 and their roles in tumor proliferation and metastasis. Additionally, the lab applies advanced molecular imaging techniques, such as FDG-PET/CT, to evaluate cancer metabolism and prognosis in gastrointestinal and biliary tract malignancies. The integration of nanotechnology, molecular oncology, and medical imaging defines the lab’s interdisciplinary approach to understanding disease mechanisms and improving diagnostic and therapeutic strategies.
Professor Yongju Choi's research lab specializes in environmental remediation and resource recovery, focusing on advanced materials and processes for the removal and recovery of hazardous and valuable contaminants from water and soil. Key research directions include membrane-based gas extraction for ammonia and other volatile compounds, activated carbon applications for sequestering hydrophobic organic pollutants such as PAHs and PCBs, and the development of robust, hydrophobic membranes for sustainable resource recovery. The lab integrates experimental studies with predictive mass transfer modeling to optimize performance under real-world conditions.
Professor Kwang-Won Ahn's research lab specializes in financial econophysics and market microstructure, focusing on the application of advanced statistical mechanics, entropy-based measures, and quantum-inspired models to understand market efficiency, price discovery, and systemic risk. The lab investigates complex market dynamics—particularly in emerging and volatile markets such as crude oil, Bitcoin, and Chinese equities—using tools from information theory, stochastic processes, and nonlinear dynamics. Key research directions include market efficiency, uncertainty spillovers, and the role of regulation and trading costs in nascent financial markets. The lab also pioneers the use of quantum harmonic oscillator models to describe asset return behavior, bridging physics-inspired mathematics with financial time series analysis.
Professor Sunny Shin's research lab focuses on translational oncology and respiratory medicine, with a primary emphasis on lung cancer and chronic lung diseases such as COPD and nontuberculous mycobacterial lung disease (NTM-LD). The lab investigates biomarkers and clinical outcomes in non-small cell lung cancer (NSCLC), particularly regarding mediastinal staging, immune checkpoint inhibitor response, and molecular subtypes like ALK-rearranged tumors. It also explores the impact of comorbid conditions—such as COPD and low body mass index—on treatment outcomes and disease progression, integrating clinical data with molecular profiling to improve personalized patient management.
Professor Woo-Seong Park's research lab focuses on plant biotechnology and nutritional biochemistry, with a central emphasis on enhancing the nutritional quality and stress resilience of crops through genetic engineering. The lab investigates carotenoid biosynthesis and regulation in plants, aiming to improve the accumulation of health-promoting pigments such as carotenoids and phycocyanin in food and feed crops. Key research directions include metabolic engineering of forage crops like alfalfa using stress-responsive genes (e.g., IbOr), functional characterization of fatty acid desaturases in human health, and the development of nutraceuticals from colored plants with anti-obesity and antioxidant properties. The lab integrates molecular biology, HPLC-based metabolite profiling, and in vitro/in vivo disease models to translate basic discoveries into practical applications in human health and sustainable agriculture.
Professor Kim, Youngeun's research lab specializes in the design and engineering of dynamic, stimuli-responsive nanomaterials and biological signaling pathways with applications in synthetic biology, regenerative medicine, and point-of-care diagnostics. The lab pioneers the development of reconfigurable nanoparticles and programmable superlattices that can autonomously adapt their structure and function in response to chemical cues, while also investigating key regulatory mechanisms in critical cellular pathways such as Hippo signaling. By integrating principles from materials science, systems biology, and machine learning, the lab aims to create smart materials and diagnostic platforms with high precision and adaptability. The research bridges molecular-level understanding with real-world applications in disease detection and therapeutic intervention.
Professor Gyu-Hong Kim's research lab specializes in advanced semiconductor technologies and biomedical engineering, focusing on cutting-edge developments in nanoscale integrated circuits and medical device applications. The lab pioneers next-generation FinFET and DRAM technologies with ultra-small feature sizes, emphasizing extreme ultraviolet (EUV) lithography, multi-patterning, and novel transistor structures like recessed-channel array transistors for high-performance and low-power electronics. In parallel, the lab explores innovative solutions in millimeter-wave RF systems for 5G communications and applies stereotactic technologies to improve outcomes in minimally invasive neurosurgical interventions for intracerebral hemorrhage. The integration of advanced materials, process engineering, and clinical applications defines the lab’s interdisciplinary approach.