ソウル大学、KAIST、延世大学など韓国QSトップ10大学の研究室情報です。
Professor Bumseok Jeong's research lab specializes in computational psychiatry and neuroimaging, focusing on the neural mechanisms underlying psychiatric disorders such as depression, schizophrenia, ADHD, and internet gaming disorder. The lab integrates advanced neuroimaging techniques—particularly diffusion tensor imaging (DTI) and perfusion MRI—with machine learning and behavioral data to uncover structural and functional brain connectivity abnormalities. A key focus is developing explainable AI models to predict genetic markers (e.g., IDH status in gliomas) and clinical phenotypes, while also exploring digital phenotyping through social media and mobile app usage to detect early signs of mental health conditions. The lab emphasizes translational research, aiming to bridge neurobiological findings with clinical applications for early diagnosis and personalized intervention.
Professor Hyun-Suk Kim's research lab specializes in advanced functional materials and nanostructured devices, with a focus on responsive surfaces, oxide semiconductors for next-generation electronics, and sustainable carbon capture technologies. The lab explores innovative fabrication methods—such as osmotically-driven wrinkling and flow coating—to create hierarchical and patterned nanoarchitectures with applications in tunable optics, high-performance transistors, and flexible optoelectronics. Key research directions include enhancing the stability and performance of amorphous oxide semiconductors, developing environmentally responsive materials for smart devices, and enabling precise control over polymorphous calcium carbonate formation for carbon sequestration. The lab also investigates functional oxide films for integrated photonic and spintronic applications, particularly in magnetically doped oxides with high Faraday rotation and low optical loss.
Professor Heung Dong Kim's research lab specializes in pediatric epilepsy and neurometabolic therapies, with a primary focus on the ketogenic diet (KD) as a treatment for drug-resistant epilepsy in children. The lab investigates dietary interventions such as the MCT-based KD and classic KD, evaluating their efficacy, safety, and suitability across different age groups. Additionally, the lab explores neurorehabilitation strategies, including tongue-to-palate resistance training, for improving oropharyngeal swallowing function in stroke patients with dysphagia. The research integrates clinical trials with mechanistic insights to optimize neurological outcomes in pediatric and adult populations.
Professor Young Jong Kang's research lab specializes in structural engineering with a focus on the stability, buckling behavior, and performance assessment of curved and thin-walled structural systems, particularly circular arches and cable-stayed bridges. The lab conducts theoretical and analytical studies on nonlinear behavior, large displacements, and bifurcation buckling using advanced formulations based on the principle of minimum total potential energy. It also develops innovative monitoring and analysis methodologies, such as SRALMR, to enhance structural health monitoring using limited measurement data. The lab's work bridges fundamental mechanics with practical infrastructure management, especially for aging bridges.
Professor Ho Young Jo's research lab specializes in the environmental and geochemical behavior of clay-based materials, particularly bentonite and geosynthetic clay liners (GCLs), under varying chemical conditions. The lab investigates cation exchange, hydraulic conductivity, and long-term performance of clay barriers in engineered barriers for nuclear waste repositories and landfill liners. Key research directions include the impact of ionic strength, valence, and pH on swelling and transport properties, as well as the use of advanced spectroscopic and modeling techniques to understand mineral transformation and nuclide retention. The lab also explores innovative applications of Vis-NIR spectroscopy for rapid, non-destructive characterization of clay mineral mixtures.
Professor Jung Wook Huh's research lab specializes in colorectal cancer oncology, focusing on prognostic biomarkers, surgical outcomes, and pathological predictors of recurrence and survival. The lab investigates preoperative serum markers like CEA, lymph node metastasis distribution, and imaging modalities such as ERUS and CT to improve treatment response prediction. Key research directions include identifying clinicopathological factors influencing pathological complete response and evaluating the impact of complications like anastomotic leakage on long-term oncologic outcomes. The lab also explores molecular markers such as CD44s to understand their role in tumor progression and patient prognosis.
Professor Hoon-Suk Cha's research lab focuses on inflammatory and autoimmune rheumatic diseases, with a particular emphasis on rheumatoid arthritis (RA), connective tissue diseases, and vasculitides. The lab investigates the pathogenic mechanisms underlying these conditions, including the role of proinflammatory cytokines, angiogenic factors like VEGF-C, and molecular pathways such as PUMA in fibroblast-like synoviocytes. Utilizing clinical epidemiology, metabolomics, and molecular biology techniques, the lab aims to identify novel biomarkers and therapeutic targets for early diagnosis and improved management of autoimmune and systemic inflammatory disorders.
Professor Dongho Won's research lab specializes in cybersecurity and privacy-preserving protocols, with a primary focus on designing secure and efficient authentication schemes for resource-constrained environments such as wireless sensor networks (WSNs) and the Internet of Medical Things (IoMT). The lab investigates advanced cryptographic techniques to address critical vulnerabilities like offline password guessing attacks, impersonation, and smart card compromise, particularly in medical and multi-server environments. Their work emphasizes practical security solutions that balance robustness, efficiency, and resilience against emerging cyber threats in e-health and IoT systems.
Professor Hyun-Chang Lim's research lab specializes in advanced semiconductor nanomaterials and optoelectronic devices, with a primary focus on quantum dot infrared photodetectors (QDIPs) for high-performance infrared sensing. The lab investigates the fundamental physics of carrier transport, optical absorption, and photoconductive gain in self-assembled InAs and InGaAs-based quantum dots, aiming to enhance detectivity and enable room-temperature operation. In parallel, the lab contributes to clinical dental research, particularly in alveolar ridge preservation, implant integration, and peri-implant tissue health, demonstrating a unique interdisciplinary approach combining nanotechnology with biomedical applications. The research bridges materials science, device physics, and clinical dentistry to develop next-generation sensors and implant solutions.
Professor Junyang Jung's research lab focuses on the molecular mechanisms underlying cellular homeostasis, with a central emphasis on hydrogen sulfide (H₂S) as a key gasotransmitter in neuroprotection and age-related diseases. The lab investigates the roles of H₂S in regulating oxidative stress, mitochondrial quality control through mitophagy, and nerve degeneration processes such as Wallerian degeneration. Additionally, the lab explores the design and photophysical properties of fluorescent dyes for biomedical imaging, particularly in aqueous environments. These interdisciplinary efforts bridge redox biology, neuroscience, and molecular imaging.
Professor Uman Khalid's research lab specializes in advancing quantum technologies with a focus on quantum information processing, quantum sensing, and the foundational aspects of quantum correlations. The lab explores quantum internet architectures, measurement-based quantum correlations, and the integration of quantum networks with classical infrastructure to enable scalable, secure, and high-precision applications. Key research directions include quantum advantage in noisy intermediate-scale quantum (NISQ) devices, quantum metrology under environmental noise, and the development of unified frameworks for learning fundamental quantum properties such as entanglement, discord, and coherence.
Professor Heung-Woo Park's research lab focuses on respiratory and metabolic diseases, with a strong emphasis on asthma pathogenesis, asthma phenotypes, and type 2 diabetes mellitus. The lab investigates key molecular mechanisms such as HMGB1 and ADRB2 variants in asthma, explores biomarkers for disease progression and treatment response, and evaluates the impact of medications like tiotropium and systemic corticosteroids on clinical outcomes. The lab also examines genetic and metabolic factors influencing disease exacerbations and treatment efficacy, particularly in vulnerable populations.
Professor Tae-Jin Yang's research lab specializes in plant genomics, with a focus on the evolutionary genomics, genome architecture, and molecular phylogenetics of economically and medicinally important plants such as *Panax ginseng*, *Epimedium*, and *Brassiceae* species. The lab employs advanced sequencing technologies and bioinformatic approaches to unravel whole-genome and chloroplast genome evolution, including whole-genome duplications, polyploidization, and genome structural dynamics. Their work also contributes to species authentication and conservation through the development of molecular markers and genomic databases.
Professor Bong-Jin Lee's research lab focuses on antimicrobial peptides (AMPs) and toxin-antitoxin (TA) systems as novel therapeutic targets for combating antibiotic-resistant pathogens. The lab investigates the structural and functional mechanisms of AMPs and TA systems, particularly in pathogenic bacteria like Mycobacterium tuberculosis, to develop new antimicrobial strategies. Using biophysical techniques such as fluorescence and circular dichroism spectroscopy, the lab explores protein-ligand interactions, especially with HIV-1 integrase inhibitors, aiming to design effective antiviral and antibacterial agents. The research also emphasizes overcoming clinical translation barriers, including toxicity, stability, and production costs, through rational peptide engineering and biomimetic design.
Professor Chongam Kim's research lab specializes in high-order numerical methods and large-scale simulations for complex fluid dynamics, with a focus on developing accurate, stable, and efficient computational tools for engineering applications. The lab pioneers advanced discontinuous Galerkin methods and high-fidelity solvers tailored for scale-resolving simulations over complex geometries, particularly in aerospace and turbomachinery flows. Their work emphasizes shock stability, numerical robustness, and high-performance computing to enable practical deployment of high-order methods in real-world design and analysis. The lab also actively contributes to open-source software development, promoting accessibility and reproducibility in computational fluid dynamics research.
Professor Hongje Jang's research lab specializes in the design and application of advanced nanomaterials for biomedical and biotechnological applications. The lab focuses on developing novel nanomaterials—particularly gold-silver and graphene oxide-based systems—for real-time biosensing, targeted drug delivery, and combinational cancer therapy. Key research directions include the engineering of hollow and porous nanostructures with tunable optical, catalytic, and loading properties, as well as the development of innovative assays for high-throughput screening of antiviral and anticancer agents. The lab integrates nanoscience with enzymatic and molecular functions to create multifunctional platforms for diagnostics and therapeutics.
Professor Moon-Seong Kang's research lab specializes in hydrological and water resource systems, with a strong focus on reservoir water balance, water quality management, and sustainable water use in complex environments such as estuarine and agricultural reservoirs. The lab integrates hydrological modeling, remote sensing, and field monitoring to address challenges related to water scarcity, pollution, and climate variability. Key research directions include the development of data-driven and model-based frameworks for inflow and outflow estimation, irrigation efficiency optimization, and the evaluation of pollution control measures in reservoir systems.
Professor Seongryong Kim's research lab specializes in single-cell genomics and tumor microenvironment analysis, focusing on deciphering cellular heterogeneity in pancreatic cancer and other human diseases. The lab employs advanced single-cell RNA sequencing and multi-omics approaches to map dynamic cellular states, particularly in epithelial and stromal cells, with an emphasis on identifying novel therapeutic targets. They also investigate host responses to mRNA vaccines and develop innovative chemical tools for bioorthogonal synthesis, bridging immunology, cancer biology, and chemical biology. Their work integrates systems biology with translational insights to understand disease mechanisms across organs and cell types.
Professor Seung Up Kim's research lab focuses on neural stem cells, glial cell biology, and neuroinflammation in the context of central nervous system (CNS) disorders. The lab investigates the roles of microglia and astrocytes in neurodegenerative diseases such as Alzheimer’s, Parkinson’s, and ALS, with a particular emphasis on their secretory profiles and immunomodulatory functions. Using primary human glial cells and neural stem cell transplantation models, the lab explores therapeutic strategies involving cell replacement, gene therapy, and angiogenic modulation—particularly through VEGF overexpression—for stroke and intracerebral hemorrhage. The research integrates molecular profiling, protein microarrays, and in vivo models to advance regenerative and immunomodulatory therapies for neurological diseases.
Professor Ji Hoe Heo's research lab specializes in cerebrovascular pathophysiology, with a focus on microvascular integrity, extracellular matrix remodeling, and thrombus composition in acute ischemic stroke. The lab investigates the role of matrix metalloproteinases (MMPs) in blood-brain barrier disruption and vascular damage during cerebral ischemia, using advanced imaging and molecular techniques. A key research direction involves understanding thrombosis mechanisms in stroke patients with cancer, particularly the pro-thrombotic characteristics of thrombi in active malignancy. The lab also explores interventional strategies, such as abciximab use, to restore perfusion after thrombolytic reocclusion. These studies aim to improve outcomes in acute stroke through a deeper understanding of vascular and thrombotic pathology.