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 Taeyeon Kim's research lab specializes in indoor air quality and human thermal comfort, focusing on the dynamic interactions between building environments, occupant behavior, and health. The lab investigates cooking-generated particulate matter (PM2.5) dispersion, ventilation effectiveness, and the development of real-time clothing insulation (clo) estimation methods using thermal imaging and thermoregulation models. Key research directions include improving indoor air quality through optimized ventilation strategies, range hood performance enhancement, and data-driven modeling of occupant-specific parameters for personalized thermal comfort.
Professor Hyoyul Kim's research lab specializes in otorhinolaryngology and head and neck surgery, with a strong focus on upper airway disorders, sleep-disordered breathing, and nasal mucosal immunology. The lab investigates the pathophysiology of obstructive sleep apnea through advanced diagnostic techniques such as drug-induced sleep endoscopy and the Muller maneuver, while also exploring novel therapeutic interventions, including pharmacological agents and natural compounds like onion extract. Research extends to the role of microbial factors—such as *Helicobacter pylori*—in chronic rhinosinusitis and the functional recovery of olfactory dysfunction using animal models. The lab integrates clinical studies with preclinical translational research to improve diagnosis and treatment of airway and inflammatory disorders.
Professor Sang Min Lee's research lab specializes in advanced materials for next-generation energy storage and microelectronic packaging. The lab focuses on developing high-performance anode materials for lithium-ion batteries, particularly silicon suboxides (SiOx), and innovative solid electrolytes for all-solid-state batteries using novel solution-processing techniques. Key research directions include optimizing material synthesis through controlled crystallinity, interfacial engineering, and low-temperature bonding technologies for 3D integrated devices. The lab also applies complex network analysis to understand dynamic systems, such as football player transfer markets, demonstrating interdisciplinary applications of systems science.
Professor Seok-Ho Song's research lab specializes in non-Hermitian photonics, topological optics, and integrated optical devices, focusing on emergent wave phenomena such as exceptional points, parity-time (PT) and anti-PT symmetries, and nonreciprocal light control. The lab develops innovative photonic platforms using holographic patterning, geometric phase engineering, and active optical materials to realize tunable, robust, and multifunctional optical systems. Key research directions include non-Hermitian lattices, topological resonances, and nonlinear optical devices for applications in optical signal processing and advanced intraocular lenses.
Professor Woo-keun Lee's research lab specializes in integrated circuit design for high-performance RF and microwave systems, with a strong focus on advanced frequency synthesizers and low-phase-noise oscillators. The lab develops cutting-edge CMOS and BiCMOS implementations of fractional-N frequency synthesizers using Delta-Sigma modulators to achieve fine frequency resolution, low phase noise, and high agility—critical for modern wireless communication standards. Key research directions include charge pump nonlinearity mitigation, noise coupling suppression in mixed-signal systems, and on-chip calibration techniques such as delay-locked loops to enhance process and temperature robustness. The lab also explores low-power, high-efficiency VCO architectures for energy-constrained applications.
Professor In-Seok Song's research lab specializes in the intersection of dental and medical imaging, artificial intelligence, and clinical diagnostics. The lab focuses on developing deep learning and machine learning models for automated detection and segmentation of oral and maxillofacial pathologies, including periodontal bone loss, maxillary sinus lesions, and skeletal maturation. Research also extends to patient-specific implant applications and the biological mechanisms linking systemic conditions like insulin resistance and neuro-immune interactions in skin and oral diseases. The lab emphasizes clinical translation through AI-driven diagnostic support systems and advanced imaging analysis.
Professor Dong Jin Byun's research lab specializes in the development of advanced semiconductor materials and thin-film heterostructures for next-generation optoelectronic and electronic devices. The lab focuses on innovative deposition techniques—such as synchrotron radiation-induced CVD, atomic layer deposition, and ion implantation—to grow high-quality III-nitride semiconductors (e.g., GaN, ZnO) and boron-carbide-based heterojunctions on silicon and sapphire substrates. Key research directions include defect engineering, epitaxial lateral overgrowth, and surface pretreatment strategies to enhance crystalline and optical quality for applications in power electronics, UV photodetectors, and high-efficiency light-emitting devices.
Professor Dal-Mo Yang's research lab specializes in medical imaging, with a focus on the noninvasive diagnosis and characterization of various abdominal and pelvic masses using advanced imaging modalities such as MRI, CT, and ultrasonography. The lab investigates the radiological features of complex cystic and solid lesions, including tailgut cysts, retroperitoneal cystic masses, and scrotal abscesses, aiming to improve diagnostic accuracy and guide clinical management. Key research directions include optimizing cross-sectional imaging techniques for preoperative staging of gastrointestinal cancers and differentiating inflammatory from neoplastic processes based on imaging biomarkers. The lab emphasizes the integration of clinical context with detailed sonographic and radiological findings to enhance diagnostic confidence in challenging cases.
Professor You-mi Lee's research lab specializes in thyroid cancer biology and clinical oncology, with a focus on understanding the molecular and pathological characteristics of non-medullary thyroid cancers, including familial and minimally invasive variants. The lab investigates prognostic factors, lymph node metastasis patterns, and treatment outcomes to improve staging systems and surgical strategies. Key research directions include the genetic profiling of infectious agents like *Orientia tsutsugamushi* and the role of biomarkers such as CK19 in cancer progression.
Professor Jin Young Yoon's research lab focuses on advancing the understanding and management of Parkinson's disease (PD) and related neurodegenerative disorders through multimodal approaches. The lab specializes in identifying biomarkers—particularly autophagy-related proteins and CSF-based markers—for early diagnosis and disease monitoring. It also investigates motor and non-motor symptoms such as motor fluctuations, freezing of gait, falls, and autonomic dysfunction using clinical assessments, neuroimaging (e.g., DTI), and wearable technology combined with machine learning. The lab aims to develop objective, wearable-based tools for real-time monitoring of disease states, especially 'On' and 'Off' medication phases, to improve patient care in home settings.
Professor John Ames's research lab specializes in integrating long-term ecological field studies with advanced genomics to investigate the evolutionary processes shaping natural populations. The lab focuses on understanding how dispersal, gene flow, genetic drift, and natural selection interact to shape genetic structure and allele frequency dynamics in wild populations, using the Florida Scrub-Jay as a model system. By combining detailed pedigree data with high-throughput genomic analyses, the lab develops and applies novel statistical and bioinformatic methods to address fundamental questions in population genetics and evolutionary biology. Additionally, the lab contributes to materials science by studying nanoscale microstructures and thermoelectric properties in complex chalcogenide materials.
Professor Young-Tae Jeon's research lab specializes in critical care medicine and perioperative medicine, with a focus on optimizing sedation strategies, improving outcomes in neurosurgical and orthopedic patients, and identifying predictive biomarkers for postoperative complications. The lab investigates the clinical efficacy of anesthetic agents, timing of interventions such as tracheostomy, and the prognostic value of inflammatory markers like C-reactive protein in elderly and critically ill patients. Key research directions include patient-controlled sedation, prevention of post-anesthesia shivering, and hemodynamic predictors during spinal anesthesia.
Professor Jeong Sung-kwon's research lab focuses on the molecular mechanisms underlying Alzheimer's disease, with a central emphasis on the role of ion channels, cholesterol metabolism, and post-translational modifications—particularly O-GlcNAcylation—in amyloid precursor protein (APP) processing and amyloid-β (Aβ) generation. The lab investigates how presenilin 1 (PS1) and γ-secretase activity are regulated by cellular cholesterol levels and lipid raft microdomains, as well as how natural compounds like ginsenoside (20S)-Rg3 modulate Aβ production through subcellular trafficking and signaling pathways. A key theme is the interplay between membrane dynamics, ion homeostasis, and neurodegenerative pathology, especially in the context of familial Alzheimer’s disease mutations and endocytic trafficking.
Professor Sung Bae Kim's research lab specializes in structural engineering with a focus on advanced composite materials and fire-resistant structural systems. The lab conducts experimental and analytical studies on composite steel-concrete beams, including innovative connection details, shear connectors, and the use of recycled materials such as RPET fibers in concrete. A key research direction involves enhancing structural performance through innovative section design and fire protection systems, particularly for high-rise and critical infrastructure applications.
Professor Ki Woong Nam's research lab specializes in cerebrovascular and metabolic medicine, focusing on the pathophysiological links between metabolic markers and cerebrovascular diseases. The lab investigates biomarkers such as the neutrophil-to-lymphocyte ratio (NLR), triglyceride-glucose (TyG) index, and homocysteine in relation to stroke outcomes, including stroke-associated pneumonia, early recurrent lesions, and neurological deterioration. A central theme is identifying accessible, objective, and clinically relevant indicators for predicting stroke complications and progression, particularly in subgroups like patients with cancer or subcortical infarctions. The lab also explores the role of insulin resistance and hypercoagulability in stroke pathogenesis, especially in cryptogenic stroke.
Professor Byung Se Choi's research lab specializes in neuroimaging and artificial intelligence applications in neurological disorders, with a focus on Parkinson's disease, brain metastasis, and neurodegenerative conditions such as α-synucleinopathies. The lab employs advanced MRI techniques—including 7-Tesla imaging, diffusion-tensor imaging (DTI), and functional MRI—to investigate brain network alterations, glymphatic function, and structural changes in the substantia nigra and perivascular spaces. A key research direction involves developing and validating machine learning and deep learning algorithms for early diagnosis and automated detection of brain pathologies from medical imaging. The lab also explores resting-state functional connectivity in dizziness disorders and the role of neuroimaging biomarkers in disease progression and phenoconversion prediction.
Professor Dongju Yu's research lab specializes in advanced energy storage materials and electrolyte engineering, with a primary focus on next-generation batteries such as lithium-metal and aluminum-ion batteries. The lab explores innovative electrolyte formulations—including high-concentration and low-temperature electrolytes—using molecular design strategies to stabilize interfaces and suppress dendrite growth. Key research directions include the development of functional solvents, ionic liquid additives, and novel electrode materials to enhance cyclability, safety, and performance under extreme conditions. The lab also investigates supramolecular engineering of binders and conductive scaffolds to improve structural integrity in high-capacity anodes.
Professor Dongwon Shin's research lab focuses on neuropsychiatry and pediatric mental health, with a particular emphasis on the neurobiological and environmental factors underlying attention-deficit/hyperactivity disorder (ADHD). The lab investigates the roles of stress reactivity, HPA axis function, trace elements like manganese, and familial factors such as maternal depression in shaping ADHD symptoms and treatment outcomes. Additionally, the lab explores pharmacological mechanisms of drugs like auranofin in cancer cell apoptosis and the application of biomaterials, such as fibrin sealants, in neurosurgical drug delivery. The research integrates molecular biology, clinical psychiatry, and epidemiological approaches to understand and improve mental health interventions in children and adolescents.
Professor Dae-Hong Ko's research lab specializes in advanced semiconductor materials and thin film physics, with a focus on defect engineering, dopant activation, and interfacial phenomena in group III-V and group IV semiconductors. The lab investigates nonequilibrium doping processes, such as laser annealing and amorphous interfacial layer formation, to enhance electrical properties and strain control in silicon-based and III-V compound semiconductor heterostructures. Key research directions include the fundamental understanding of phosphorus doping in silicon, interfacial reactions in Pt/GaAs systems, and the development of low-temperature epitaxial growth techniques using high-order silane precursors.
Professor Kyung Seok Park's research lab specializes in translational biomedical research and agricultural biotechnology, focusing on neuroimmunological disorders such as neuromyelitis optica spectrum disorder (NMOSD) and the clinical significance of autoantibodies like MOG-IgG and AQP4-IgG. The lab also investigates plant-microbe interactions, particularly the role of plant growth-promoting rhizobacteria (PGPR) in inducing systemic resistance and enhancing crop resilience against bacterial and viral pathogens. Their work bridges clinical neurology and sustainable agriculture, exploring both disease mechanisms and biocontrol applications of microbial metabolites such as exopolysaccharides (EPS).