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 Sang‐Sun Han's research lab specializes in advanced dental imaging and clinical applications, focusing on anatomical variations in the maxillofacial region, particularly retromolar canals and the trigeminal nerve's terminal branch complex (TCC), using cone-beam computed tomography (CBCT) for precise diagnosis. The lab investigates image quality optimization in CBCT scans under varying patient positioning and exposure conditions, aiming to improve diagnostic accuracy. Additionally, the lab explores innovative training methods using virtual reality to enhance spatial cognition and navigation skills in individuals with visual impairments, particularly in wayfinding and obstacle recognition. The integration of medical imaging, surgical planning, and assistive technology defines the lab’s interdisciplinary approach to improving clinical outcomes and patient safety.
Professor Seungwoo Hong's research lab specializes in bioinorganic chemistry, focusing on the biomimetic activation of dioxygen by nonheme transition metal complexes. The lab investigates the formation, structural characterization, and reactivity of high-valent metal-oxo and metal-nitrido intermediates, particularly iron(IV)- and iron(V)-oxo species, to elucidate reaction mechanisms relevant to metalloenzymes. Key research directions include understanding the electronic structures and reactivity trends of these intermediates in C–H bond activation, oxygen atom transfer, and hydrogen atom transfer reactions, with an emphasis on ligand effects and redox properties.
Professor Sungchul Park's research lab focuses on health services research with a primary emphasis on Medicare beneficiaries, particularly in the context of health insurance choice, access to care, and health disparities. The lab investigates the impact of Medicare Advantage (MA) versus fee-for-service (Fee-for-service) plans on health outcomes, care utilization, and health equity, with a special focus on vulnerable populations such as those with Alzheimer’s disease and related dementias (ADRD) and racial and ethnic minorities. Research also explores health insurance literacy, low-value care, and the effects of public health crises—like the COVID-19 pandemic—on care access and utilization. The lab’s work informs policy initiatives aimed at improving health system efficiency, equity, and patient-centered decision making.
Professor Gang-Jee Ko's research lab focuses on the pathophysiology of chronic kidney disease (CKD), with a strong emphasis on the impact of dietary factors—particularly protein intake—on kidney function and progression of renal disease. The lab investigates mechanisms of kidney injury related to high-protein diets, ischemia/reperfusion injury, contrast-induced nephropathy, and metabolic interventions such as pioglitazone therapy. Additionally, the lab explores the role of immune cells like macrophages in driving inflammation and fibrosis in CKD. A growing area of interest involves the development and evaluation of plant-based, low-protein diets (PLADO) as a therapeutic strategy to slow CKD progression and improve metabolic control.
Professor Jitae Shin's research lab specializes in quality-of-service (QoS) provisioning for next-generation wireless and networked systems, with a strong focus on intelligent video streaming, differentiated services (DiffServ), and robustness in autonomous driving environments. The lab develops adaptive QoS mapping, dynamic packet forwarding, and service differentiation frameworks that integrate application-level priorities with network-level resource control to ensure reliable, low-latency multimedia transmission. Key research directions include QoS-aware routing in energy-constrained wireless sensor networks, adversarial robustness in deep learning-based vision systems, and cooperative optimization between applications and networks for end-to-end quality enhancement. The lab emphasizes practical, real-time solutions for emerging challenges in smart cities, autonomous vehicles, and ubiquitous multimedia communications.
Professor Jin Whan Cho's research lab specializes in the clinical and neuroimaging characterization of neurodegenerative ataxias and parkinsonian syndromes, with a focus on differentiating challenging movement disorders such as spinocerebellar ataxias, multiple system atrophy, and Parkinson’s disease. The lab employs advanced ophthalmologic assessments, brain MRI, and comprehensive clinical phenotyping to identify early diagnostic biomarkers, particularly non-motor symptoms and imaging signs like the hot cross bun sign. Research also emphasizes caregiver burden in dementia subtypes and the neural correlates of gait disturbances, such as freezing of gait, using neuroanatomical mapping. The lab's work bridges clinical neurology and neuroimaging to improve early diagnosis and patient management in atypical parkinsonism and cerebellar ataxias.
Professor Sangwan Sim's research lab specializes in ultrafast quantum dynamics and light-matter interactions in two-dimensional and topological quantum materials. The lab focuses on exploring coherent excitonic phenomena, such as quantum beats and optical Stark effects, in atomically thin semiconductors like transition metal dichalcogenides and ReS₂, as well as topological insulators. Using advanced ultrafast spectroscopy techniques—including pump-probe and terahertz spectroscopy—the lab investigates exciton dynamics, many-body interactions, and light-induced quantum control at femtosecond timescales. Their work aims to develop novel optoelectronic devices with ultra-high-speed modulation and tunable quantum responses.
Professor Sang-Uk Han's research lab focuses on translational biomedical research and advanced construction technologies. The lab investigates metabolic reprogramming in gastric cancer through metabolomic profiling, exploring organic acids and growth factors like HGF as biomarkers for cancer progression and prognosis. Concurrently, the lab develops innovative augmented reality and computer vision solutions for improving precision in construction manufacturing and facility management by enabling accurate as-built vs. as-planned model registration. These interdisciplinary efforts bridge clinical oncology with digital construction technologies.
Professor Chunghun Lim's research lab focuses on viral persistence and host-virus interactions, particularly the molecular mechanisms by which herpesviruses such as Kaposi's sarcoma-associated herpesvirus (KSHV) maintain latent infection. The lab investigates viral proteins like latency-associated nuclear antigen (LANA) in genome tethering, transcriptional regulation, and immune evasion, with a strong emphasis on host cellular machinery such as transcription co-factors (e.g., CBP) and RNA-binding proteins (e.g., ATX2). The lab also explores evolutionary conservation of sleep and circadian regulation using simple model organisms like *Hydra vulgaris*, linking cellular homeostasis to gene expression dynamics. These studies integrate virology, molecular biology, and systems-level analysis to uncover fundamental mechanisms of viral latency and host regulation.
Professor Taeho Yoon's research lab specializes in advanced energy storage materials, with a primary focus on next-generation lithium-ion batteries and their key components. The lab investigates the electrochemical behavior, interfacial chemistry, and degradation mechanisms of silicon anodes, high-voltage cathodes, and solid electrolyte interphases (SEI), emphasizing the role of electrolyte additives and salt chemistry in enhancing stability and cycle life. Additionally, the lab explores functional nanomaterials such as metal-organic frameworks (MOFs) and carbon nanostructures to improve conductivity, surface properties, and durability in battery systems. Their work bridges fundamental electrochemistry with practical battery performance optimization.
Professor Youngsook Son's research lab focuses on the therapeutic potential of Substance P (SP) and glial cell crosstalk in regenerative medicine, particularly in neurological and ocular disorders. The lab investigates neuroimmune interactions, including microglia-macrophage polarization and astrocyte-microglia communication, to modulate inflammation and promote tissue repair in conditions such as spinal cord injury, stroke, and retinal degeneration. A central theme is the role of endogenous signaling molecules like SP in enhancing angiogenesis, reducing chronic inflammation, and mobilizing stem cells to accelerate healing in diabetic and neurodegenerative environments. The lab also explores alternative cell sources, such as costal chondrocytes, for regenerative applications in cartilage repair.
Professor Jong Hun Woo's research lab specializes in intelligent manufacturing systems with a focus on advanced scheduling, simulation, and data-driven optimization in the shipbuilding industry. The lab explores multi-agent reinforcement learning, discrete event system simulation, and machine learning techniques to address production variability, lead time uncertainty, and complex scheduling challenges in smart shipyards. Key research directions include the development of simulation-based planning systems, real-time response to production changes, and the integration of Industry 4.0 technologies such as smart factories and intelligent planning systems.
Professor Sukhwan Yoon's research lab focuses on microbial biogeochemistry, particularly the microbial transformation of nitrogen oxides and their roles in greenhouse gas emissions and nutrient cycling in agroecosystems. The lab investigates key pathways such as denitrification and dissimilatory nitrate reduction to ammonium (DNRA), examining how environmental factors like carbon-to-nitrogen ratios, pH, and electron acceptor availability influence microbial metabolism and nitrogen fate. A central theme is the development of strategies to mitigate nitrous oxide (N2O) emissions by understanding the functional diversity of microbial communities, especially those harboring distinct forms of the nosZ gene. The lab also explores microbial metal homeostasis, including copper acquisition in methanotrophs through novel metal-chelating molecules like methanobactin.
Professor Mik Fanguy's research lab focuses on innovative pedagogical practices in higher education, particularly in online and blended learning environments. The lab investigates how collaborative learning strategies—such as collaborative note-taking, media diversity in video lectures, and student engagement behaviors—impact cognitive load, learning performance, and academic achievement. A central theme is understanding the interplay between instructional design, student cognition, and technology use to enhance deep and meaningful learning in graduate and postgraduate education.
Professor Teun-Teun Kim's research lab specializes in non-Hermitian photonics, active terahertz metamaterials, and graphene-based tunable optical devices. The lab focuses on engineering exceptional points in metasurfaces, dynamically controlling slow light and polarization states via electrical gating of graphene, and developing reconfigurable photonic components for integrated terahertz and microwave systems. Their work bridges fundamental non-Hermitian physics with practical applications in sensing, telecommunications, and on-chip photonics.
Professor Wonse Park's research lab specializes in the application of deep learning and artificial intelligence in oral and maxillofacial diagnostics, with a focus on improving the accuracy and efficiency of dental implant identification and classification using medical imaging. The lab conducts large-scale, multicenter studies involving panoramic and periapical radiographs to develop and validate AI algorithms that support clinical decision-making. Research also extends to the molecular biology of estrogen receptors in ovarian cancer and the diagnostic challenges of temporomandibular disorders, highlighting a multidisciplinary approach combining AI, radiology, and biomedical research. The lab is committed to translating advanced computational methods into practical clinical tools, including mobile-based emergency diagnostic systems.
Professor Hong In Yoon's research lab specializes in radiation oncology and multimodal cancer treatment strategies, with a focus on improving outcomes for patients with advanced or metastatic cancers. The lab investigates the role of radiotherapy in combination with chemotherapy, surgery, and targeted therapies across various malignancies, including cervical cancer, hepatocellular carcinoma (HCC), diffuse intrinsic pontine glioma (DMG), and locally advanced rectal cancer (LARC). Key research directions include optimizing treatment protocols to enhance tumor response, reduce toxicity, and improve resectability through strategic sequencing of therapies. The lab also explores predictive biomarkers—such as ICG-R15 for radiation-induced liver toxicity and H3K27M mutations for DMG diagnosis—to personalize treatment approaches.
Professor Dong Wook Kim's research lab focuses on advancing clinical prediction and diagnostic methodologies through innovative applications of machine learning and biomedical imaging. The lab specializes in developing deep learning-based survival models for oncology, particularly in oral squamous cell carcinoma, while also exploring personalized treatment strategies such as the ketogenic diet in neurological conditions. Additionally, the lab investigates medical imaging techniques for accurate pediatric kidney volume assessment and examines the genetic and molecular underpinnings of cancers like small cell lung cancer. Their work bridges computational science with clinical practice to improve patient outcomes.
Professor Jinyoung Kim's research lab specializes in advanced microfluidic systems and nanomaterials for biomedical applications. The lab focuses on developing innovative organ-on-a-chip platforms, droplet-based microfluidics, and functional nanomaterials for disease modeling, drug screening, and point-of-care diagnostics. Key research directions include the integration of microfluidic devices with analytical techniques like HPLC, the fabrication of high-pressure-resistant microfluidic systems using novel materials such as thermoset polyester, and the application of nanomaterials like PoGNP for antiviral therapy and detection. The lab also explores symmetry-based analysis of complex materials to understand structural transitions in functional oxides.
Professor Yong Song Gho's research lab specializes in extracellular vesicles (EVs) across prokaryotic and eukaryotic systems, focusing on their biogenesis, molecular composition, and roles in intercellular communication and disease pathogenesis. The lab investigates bacterial outer membrane vesicles (OMVs), particularly from pathogens like *Pseudomonas aeruginosa* and *Escherichia coli*, to understand their contribution to virulence and systemic inflammation such as sepsis. A key focus is the application of high-throughput 'omics' technologies—proteomics, genomics, and lipidomics—to characterize EV cargo and their functional impact in host-microbe interactions. The lab also develops integrative databases like EVpedia to centralize and advance EV research across species and biological contexts.