世界の主要大学の研究室を探索 — 研究分野と主要論文を一目で確認できます。
Professor Yoon, Yoo Seok's research lab specializes in advanced surgical oncology and minimally invasive surgery, with a primary focus on biliary and hepatopancreatobiliary (HPB) diseases. The lab investigates optimal surgical strategies for acute cholecystitis, ampullary cancer, gallbladder cancer, and pancreaticoduodenal malignancies, emphasizing oncologic safety, long-term outcomes, and the role of laparoscopic techniques. Key research directions include refining diagnostic criteria, evaluating surgical indications—particularly the superiority of pancreatoduodenectomy over ampullectomy in early ampullary cancer—and advancing laparoscopic approaches for complex hepatobiliary procedures.
Professor Sang Woo Han's research lab specializes in the design, synthesis, and application of advanced nanostructured materials, particularly noble metal and metal oxide nanomaterials, for energy conversion and catalytic applications. The lab focuses on developing novel synthetic strategies to create hollow, core-shell, dendritic, and ultrathin 2D nanostructures with precise control over composition, morphology, and surface atomic distribution. Key research directions include electrocatalysis for fuel cells and renewable energy technologies—especially oxygen reduction and ethanol/amine oxidation reactions—using Pd-, Pt-, Au-, and ternary-alloy nanocrystals with tailored functionalities. The lab emphasizes structure-property relationships to optimize catalytic activity and stability.
Professor Jae-jun Kim's research lab focuses on gastrointestinal oncology and microbial pathogenesis, with a particular emphasis on Helicobacter pylori-related gastric carcinogenesis, antibiotic resistance mechanisms, and the role of DNA repair pathways in gastric cancer development. The lab investigates the impact of H. pylori infection on DNA mismatch repair deficiency and microsatellite instability, as well as the clinical implications of antibiotic resistance in treatment outcomes. Additionally, the lab explores efficient colonoscopy preparation regimens and the molecular mechanisms of UV-induced mutagenesis in plant-associated bacteria.
Professor Jin Seok Kim's research lab specializes in biomedical and environmental sensing technologies, with a focus on developing advanced biosensors for clinical and environmental applications. The lab investigates molecular targets in hematological malignancies such as acute myeloid leukemia (AML), exploring protein kinase CK2alpha as a prognostic marker and therapeutic target. It also conducts studies on neurogenesis modulation using lithium and develops high-resolution atmospheric pollution monitoring systems using satellite data, particularly for urban air quality in Seoul. The lab integrates nanomaterials and sensor technologies to enable sensitive, real-time detection of biological and environmental analytes.
Professor Hak-Sung Kim's research lab specializes in advanced functional materials and printed electronics, with a focus on low-temperature sintering techniques for metal nanoparticle inks, particularly copper-based systems, on flexible and low-cost substrates. The lab develops innovative approaches such as intense pulsed light (IPL) sintering and inkjet printing to achieve high-conductivity, mechanically robust, and environmentally stable metallic electrodes for flexible and wearable electronics. Key research directions include the design of nanostructured copper inks, multilayered enzyme films for biosensing, and the integration of nanomaterials like copper nanowires and dendrimers for enhanced electrical and mechanical performance. The lab emphasizes in situ process monitoring and precise control of microstructure and conductivity during rapid sintering processes.
Professor Mi-Ji Kim's research lab specializes in geriatric health, focusing on the assessment and management of sarcopenia, frailty, and body composition in community-dwelling older adults. The lab conducts large-scale, population-based cohort studies to investigate the prevalence, risk factors, and clinical implications of sarcopenia, obesity-sarcopenia, and cognitive-muscle interactions. Using advanced techniques such as dual-energy X-ray absorptiometry (DXA) and multifrequency bioelectrical impedance analysis (SMF-BIA), the lab evaluates body composition and physical function to improve early detection and intervention strategies in aging populations. Their work contributes significantly to the development of evidence-based diagnostic criteria and clinical tools for geriatric syndromes in older adults in Korea and beyond.
Professor Jeong Du-yeon's research lab specializes in infectious diseases and host-pathogen interactions, with a focus on bacterial pathogenesis, antimicrobial resistance, and immune responses in severe infections such as hospital-acquired pneumonia, intra-abdominal sepsis, and liver abscesses. The lab investigates the role of T cells, particularly CD4+ T cells, in mediating tissue damage and abscess formation, and explores the translational potential of point-of-care molecular diagnostics for rapid, syndromic pathogen detection in critical care. Their work bridges basic immunology with clinical microbiology to improve patient outcomes through better diagnostics and targeted therapies.
Professor Chang-Sup Hong's research lab specializes in the design, synthesis, and functionalization of metal-organic frameworks (MOFs) with a focus on advanced applications in energy and environmental technologies. The lab pioneers post-synthetic modification strategies to enhance MOF properties, particularly for proton conduction and CO₂ capture. Key research directions include developing superprotonic conductive MOFs for fuel cell electrolytes and engineering open metal sites for high-efficiency CO₂ adsorption under ambient and flue gas conditions. The lab integrates advanced characterization techniques such as synchrotron XRD and in situ spectroscopy to understand structure-property relationships at the molecular level.
Professor Jong-Man Kim's research lab specializes in the development of smart responsive materials, particularly conjugated polymers like polydiacetylene (PDA), for advanced sensing and anti-counterfeiting applications. The lab focuses on stimuli-responsive color and fluorescence transitions in PDA-based systems, enabling innovative solutions in security labeling, environmental sensing, and biomedical diagnostics. Key research directions include inkjet-printable sensors, label-free detection platforms, and hydrochromic materials for real-time, sub-nanoliter detection of moisture and biomolecules. The lab also pioneers functional paper-based devices that integrate sustainability with high-performance sensing.
Professor Sang Min Park's research lab focuses on the epidemiological and population-based investigation of modifiable lifestyle and environmental factors influencing chronic disease outcomes. The lab explores the interplay between metabolic health, cardiovascular disease, dementia, and cognitive decline, with a particular emphasis on early-life and midlife risk factors. Key research directions include the impact of smoking, obesity, hypertension, periodontal disease, and urban environmental exposures—such as green space—on long-term health trajectories. The lab aims to inform public health policies through evidence-based interventions targeting preventable risk factors.
Professor Cheol-In Kang's research lab specializes in clinical infectious diseases, with a primary focus on antimicrobial resistance, particularly among gram-negative pathogens such as *Escherichia coli*, *Klebsiella pneumoniae*, *Pseudomonas aeruginosa*, and *Enterobacter* species. The lab investigates the epidemiology, risk factors, and outcomes of bloodstream infections caused by extended-spectrum beta-lactamase (ESBL)-producing and multidrug-resistant organisms, emphasizing the impact of delayed or inappropriate antimicrobial therapy on patient mortality. Their work also includes the development and updating of national clinical guidelines for urinary tract infections and antimicrobial stewardship in the Korean context, reflecting a strong translational focus on improving patient outcomes through evidence-based infectious disease management.
Professor Moon Young Kim's research lab focuses on hepatic fibrosis and portal hypertension, with an emphasis on identifying non-invasive diagnostic biomarkers and understanding the hemodynamic and vascular remodeling processes in advanced liver disease. The lab integrates clinical hepatology with advanced imaging techniques such as contrast-enhanced ultrasonography and genomic analysis to improve the assessment of liver fibrosis and portal hypertension. A key research direction involves evaluating the prognostic significance of sarcopenia and its interaction with established clinical scores like MELD and CTP in cirrhotic patients. The lab also contributes to plant genomics, particularly in soybean, by analyzing structural and evolutionary differences between wild (G. soja) and cultivated (G. max) species to elucidate domestication mechanisms.
Professor Jinseok Kim's research lab focuses on translational oncology and immunotherapy, with a strong emphasis on hematological malignancies such as acute myeloid leukemia (AML) and multiple myeloma (MM). The lab investigates molecular targets like protein kinase CK2α and adaptive natural killer (NK) cells to improve therapeutic outcomes, particularly through antibody-dependent cellular cytotoxicity (ADCC) mechanisms. It also explores novel therapeutic strategies involving microRNA and siRNA delivery using targeted nanocarriers, especially in breast cancer and other solid tumors. Additionally, the lab contributes to understanding the pathogenesis of autoimmune diseases, such as lupus nephritis, through complement system activation pathways.
Professor Sung Hwan Lee's research lab focuses on host-pathogen interactions, particularly innate and adaptive immunity in livestock and model organisms, with a strong emphasis on genetic mechanisms underlying disease resistance. The lab investigates key immune response genes, such as those in the Ly49 receptor family and the Cmv1 locus in mice, to understand natural resistance to viral infections. Additionally, the lab conducts functional genomics and genome-wide association studies (GWAS) in Hanwoo cattle to identify genetic markers linked to economically important traits like carcass weight and meat quality. The integration of immunogenetics and biotechnological applications, including the use of hyperimmune egg yolk antibodies (IgY) for disease control in poultry, further highlights the lab’s translational approach to animal health and agricultural biotechnology.
Professor Jung Eon Lee's research lab focuses on the molecular mechanisms underlying cancer metastasis and the development of natural compounds as potential therapeutic agents. The lab investigates the roles of inflammatory cytokines, matrix metalloproteinases (MMPs), and trace elements in cancer progression, particularly in breast and gastric cancers. Additionally, the lab contributes to energy storage technologies by developing advanced battery management systems (BMS) for improved state of charge and state of health estimation in lithium-ion batteries. The integration of biological and electrochemical research highlights the lab’s interdisciplinary approach to disease intervention and sustainable energy solutions.
Professor Hye-Yeong Kim's research lab focuses on immunology and renal pathophysiology, with a particular emphasis on innate immune cells such as NKT cells and neutrophils in inflammatory and fibrotic diseases. The lab investigates the functional roles of these immune cells in autoimmune arthritis, chronic kidney disease, and viral infections like hepatitis A, exploring their interactions with growth factors and signaling molecules. Additionally, the lab examines host-pathogen interactions, including viral receptor polymorphisms that influence disease severity, and the impact of host factors such as financial status on consumer perceptions of anthropomorphized technologies. The overarching goal is to uncover novel immunological mechanisms and therapeutic targets for inflammatory and metabolic diseases.
Professor Goangseup Zi's research lab specializes in computational mechanics, with a primary focus on advanced numerical methods for modeling crack propagation and fracture in engineering materials. The lab develops meshfree and extended finite element methods (XFEM) that enable accurate simulation of arbitrary crack growth without remeshing, including complex phenomena such as crack coalescence, junctions, and dynamic fracture. Their work emphasizes robust, efficient formulations using level set methods and enriched finite elements to model cohesive and quasibrittle fracture in both homogeneous and inhomogeneous media. The research is highly applicable to structural integrity assessment, materials science, and failure prediction in mechanical and civil engineering systems.
Professor Chang Hyun Bang's research lab specializes in bioinspired materials and devices, focusing on developing flexible, stretchable, and highly adhesive systems for medical and wearable electronics. The lab pioneers innovative micro- and nano-architectures inspired by nature—such as octopus suckers and tree frog toe pads—to achieve robust adhesion on wet, rough, or dynamic surfaces. Key research directions include ultraconformal sensing, biocompatible tissue integration, and self-powered wearable systems with enhanced signal fidelity and mechanical durability.
Professor Yong-chan Lee's research lab specializes in gastrointestinal diseases, with a primary focus on *Helicobacter pylori* infection, gastric carcinoid tumors, and occupational asthma. The lab conducts evidence-based clinical research, emphasizing endoscopic treatment of small duodenal carcinoid tumors, the pathogenesis of *H. pylori* virulence factors like CagA, and the immunological mechanisms underlying occupational asthma induced by isocyanates. The team integrates molecular biology, animal models, and clinical trials to improve diagnosis, treatment, and long-term outcomes in gastrointestinal and respiratory diseases.
Professor Tae-Soo Kim's research lab specializes in computational and systems biology, with a focus on understanding the molecular mechanisms underlying gene regulation, epigenetic modifications, and transcriptional dynamics. The lab investigates how epigenetic enzymes such as histone demethylases and deacetylases regulate transcriptional memory and stress responses in model organisms like budding yeast. Additionally, the lab explores the application of machine learning and deep learning techniques—particularly Temporal Convolutional Networks (TCNs)—to decode complex biological signals, including 3D human action recognition and gene expression patterns. The integration of computational modeling with experimental validation defines the lab’s interdisciplinary approach to systems biology and biomedical applications.