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 Yun Jeong Kim's research lab specializes in molecular microbiology and structural biology, focusing on quorum sensing systems in bacterial pathogens such as *Vibrio vulnificus*, with an emphasis on identifying and characterizing regulatory proteins like SmcR as potential therapeutic targets. The lab also investigates host-pathogen interactions and epigenetic regulation in respiratory diseases, including asthma, through genome-wide DNA methylation analysis. Additionally, the lab explores natural product discovery and the development of fluorescent probes for biomedical applications, particularly in detecting human serum albumin with high sensitivity. Their work bridges structural biology, infectious disease mechanisms, and translational diagnostics.
Professor Sang Ho Yu's research lab specializes in bioinorganic chemistry and food science, focusing on the design of artificial metalloenzymes for selective protein cleavage and the development of natural-based functional ingredients to enhance meat quality and safety. The lab investigates lipid oxidation, antioxidant and antimicrobial properties in meat systems, particularly pork, under various processing and storage conditions, while also addressing critical public health issues such as antibiotic resistance in foodborne pathogens. Their interdisciplinary work bridges synthetic biology, food technology, and microbiology to develop sustainable and safe food systems.
Professor Myeong-jin Lee's research lab focuses on socio-psychological and educational dynamics in contemporary Korean society, with a strong emphasis on identity, social inclusion, and individual development across diverse life stages. The lab investigates critical issues such as intergroup attitudes toward multiculturalism, self-regulation in educational contexts, the long-term impacts of child maltreatment on delinquency, the challenges of single-person households, and socioeconomic disparities in youth career planning. By integrating psychological theories with empirical data, the lab aims to inform policy and intervention strategies that promote equity, mental well-being, and lifelong learning.
Professor Hwan Hoon Jeong's research lab specializes in diagnostic and interventional radiology, with a focus on advanced medical imaging techniques and endovascular interventions. The lab investigates innovative ultrasound applications—such as Superb Micro-vascular Imaging (SMI)—for improved vascular assessment in oncology, particularly in breast cancer. It also explores cross-sectional imaging features of infectious and inflammatory diseases (e.g., Klebsiella pneumoniae liver abscess) and hematologic malignancies (e.g., mantle cell lymphoma), while advancing minimally invasive treatments for deep vein thrombosis using single-session endovascular techniques. The lab emphasizes clinical translation through image-guided interventions, catheter length prediction, and optimizing patient safety and outcomes.
Professor Yoon Hwan Chang's research lab focuses on the molecular mechanisms underlying cancer progression and therapy resistance, with a particular emphasis on viral oncology, stress response proteins, and autophagy in cancer. The lab investigates the roles of hepatitis B and C viruses in non-Hodgkin’s lymphoma, explores natural compounds like piperlongumine in selective cancer cell death, and examines stress-induced chaperones such as HSP27 and HSP70 in tumor survival. Additionally, the lab studies autophagy and mTOR signaling in non-small cell lung cancer, aiming to uncover novel therapeutic targets. The work integrates molecular oncology, gene expression profiling, and translational research to improve cancer diagnosis and treatment strategies.
Professor Bong Ju Moon's research lab specializes in spinal surgery and spinal deformity, with a primary focus on osteoporotic spine surgery, degenerative spinal diseases, and cervical spine pathology. The lab investigates innovative spinal fixation techniques—particularly polymethylmethacrylate (PMMA) augmentation of pedicle screws—and evaluates their clinical and radiological outcomes in elderly and osteoporotic patients. Additional research directions include the biomechanical and clinical aspects of lumbar spinal stenosis, cervical kyphosis, and sagittal spinopelvic alignment in neurodegenerative conditions such as Parkinson’s disease. The lab also explores minimally invasive spinal interventions, including epidural neuroplasty and endoscopic laser decompression, for lumbar disc herniation.
Professor Bo Kyung Je's research lab specializes in medical imaging and diagnostic radiology, with a focus on advancing ultrasound and computed tomography techniques for early detection and characterization of diseases. The lab investigates imaging biomarkers for breast cancer, pyogenic liver abscess, and pediatric conditions such as herpes simplex virus encephalitis and acute ischemic stroke, emphasizing the correlation between radiological features and clinical or pathological outcomes. A key research direction involves the application of advanced ultrasound technologies, such as microvascular ultrasonography, to improve visualization of small vessel structures in various organs. The lab also explores the role of infections in triggering acute cerebrovascular events, particularly in children.
Professor Min-hyeon Jeong's research lab focuses on translational biomedical research, particularly in the fields of periodontal disease immunology, fungal pathogenesis, and minimally invasive gynecologic surgery. The lab investigates inflammatory cytokines in periodontitis, antifungal mechanisms of action on *Candida albicans*, and innovative surgical techniques such as single-port laparoscopic hysterectomy. Additionally, the lab explores rare and complex gynecological conditions, including metastatic actinomycosis and retroperitoneal Castleman’s disease, emphasizing diagnostic challenges and advanced interventional strategies.
Professor Il Ki Hong's research lab specializes in nuclear medicine and molecular imaging, with a focus on the diagnostic and prognostic applications of PET/CT in oncology and musculoskeletal disorders. The lab investigates metabolic imaging biomarkers—particularly 18F-FDG uptake—for predicting outcomes in hepatocellular carcinoma and other cancers, aiming to guide personalized treatment strategies. Additional research interests include the use of advanced imaging techniques such as bone scintigraphy and 3'-deoxy-3'-[F]fluorothymidine PET in evaluating conditions like temporomandibular joint osteoarthritis and recurrent brain tumors. The lab emphasizes translational research that bridges clinical imaging with patient outcomes, especially in complex or atypical presentations such as syphilitic bone lesions or treatment-resistant cancers.
Professor Soon Kyoo Choe's research lab specializes in international business and corporate strategy, with a strong focus on multinational enterprises (MNEs), particularly in the context of Korea and East Asia. The lab investigates key issues such as interfirm trust, knowledge transfer across borders, subsidiary performance, and the management of foreign direct investment risks. Research directions include the role of institutional and societal sanctions in sustaining trust, the impact of CEO nationality on subsidiary performance, organizational capabilities in knowledge transfer, and post-crisis corporate governance evolution in Korean business groups.
Professor In-Soo Yoon's research lab specializes in computer security and system-level vulnerability analysis, with a focus on developing high-performance, practical techniques for detecting and mitigating software vulnerabilities. The lab explores hybrid fuzzing, hardware-assisted security mechanisms like data-flow isolation, and efficient debugging in production systems through integrated hardware-software tracing. Their work bridges the gap between theoretical security models and real-world deployment by emphasizing efficiency, scalability, and practical applicability in complex systems such as JavaScript engines, network processors, and cellular baseband firmware.
Professor Hye Bin Lee's research lab focuses on integrating multi-omics technologies, machine learning, and neuroimaging to uncover the biological and clinical underpinnings of cancer and neurological disorders. The lab investigates metabolic reprogramming in cancer—particularly in aggressive subtypes like triple-negative breast cancer—while also exploring the neural correlates of metabolic and cognitive phenotypes, such as BMI-related brain network organization. A key direction involves developing objective, data-driven diagnostic tools using patient-reported symptoms and liquid biopsy proteomics to improve classification and prognosis in complex diseases like bladder cancer and headache disorders. The lab also applies advanced imaging and adaptive radiotherapy metrics to refine treatment personalization in head and neck cancers.
Professor Kim Myung-hee's research lab specializes in clinical microbiology and translational biomarker research, focusing on antimicrobial resistance, particularly extended-spectrum beta-lactamase (ESBL)-producing Enterobacteriaceae and quinolone resistance genes. The lab investigates novel diagnostic biomarkers for infectious diseases, including bacteremia, BK virus-associated nephropathy, and acute ischemic stroke, with an emphasis on improving early diagnosis and guiding antibiotic stewardship. Their work also explores molecular virology aspects, such as occult hepatitis B virus infection in anti-HBc alone individuals, highlighting viral genetic variations and their clinical implications. The lab integrates molecular diagnostics with clinical outcomes to enhance patient management in infectious disease settings.
Professor Man-Gi Joo's research lab specializes in transplant medicine and patient-centered healthcare, with a strong focus on improving long-term outcomes for organ transplant recipients. Key research directions include enhancing treatment adherence and self-management through health literacy, patient motivation, and tailored education programs. The lab also investigates post-transplant complications such as malignancy and graft survival, emphasizing predictive biomarkers like early post-transplant serum creatinine levels. Additionally, the lab contributes to oncology research, particularly in evaluating targeted therapies for advanced colorectal cancer.
Professor Sangjoon Lee's research lab specializes in experimental fluid dynamics and microfluidic flow characterization, with a focus on turbulent flows, particle image velocimetry (PIV) techniques, and hemorheological behavior in microscale systems. The lab investigates complex flow structures in marine vessels, jets with passive control devices, and non-Newtonian blood flows using advanced PIV and holographic particle tracking velocimetry (HPTV) systems. Their work also extends to non-destructive evaluation of historical wooden structures using ultrasonic testing methodologies. The lab emphasizes high-precision measurement techniques to understand flow resistance, turbulence statistics, and fluid-structure interactions at small scales.
Professor Yun Jeong Lee's research lab focuses on interdisciplinary biomedical and engineering research, spanning oral health, pain mechanisms, occupational stress, and low-power electronics. The lab investigates temporomandibular joint disorders and osteoarthritis in relation to age and gender, explores neurobiological mechanisms of pain modulation through fasting and refeeding, examines psychosocial stress factors in female workers, and develops energy-efficient power converters for portable devices. These diverse research directions reflect a strong emphasis on translational health technologies and human-centered engineering solutions.
Professor Jiyoung Kim's research lab focuses on molecular mechanisms underlying age-related diseases, cancer, and metabolic regulation, with a strong emphasis on natural compounds and their therapeutic potential. The lab investigates the roles of dietary phytochemicals—such as green tea polyphenols and n-3 polyunsaturated fatty acids—in modulating key signaling pathways like Wnt and miRNA networks, offering novel strategies for cancer prevention and treatment. Additionally, the lab explores electrochemical sodium storage technologies, advancing sustainable energy solutions through rational design of carbon-based materials for sodium-ion batteries and capacitors. A recurring theme is the interplay between non-coding RNAs, RNA-binding proteins, and post-transcriptional regulation in disease progression and metabolic adaptation.
Professor Byung Jun Yoon's research lab specializes in computational and experimental studies at the intersection of electrostatics, biomolecular interactions, and nanofluidic devices. The lab focuses on developing advanced boundary element and continuum models to simulate electrostatic potentials in complex systems such as proteins in electrolyte solutions and charged surfaces, enabling quantitative prediction of biomolecular interactions. A key innovation is the design of versatile ionic field-effect transistors (IFETs) with all-around-gate structures and zero-surface-charge oxide layers, which allow efficient, polarity-independent molecular manipulation across a wide range of electrolyte concentrations. The lab also investigates electrokinetic phenomena, such as radial electroosmotic flow, for precise control of particle deposition in evaporating droplets, with applications in analytical and diagnostic chemistry.
Professor Hee-Seop Shin's research lab focuses on neurovascular disorders and retinal physiology, with a strong emphasis on the pathophysiology of cerebrovascular diseases such as aneurysmal subarachnoid hemorrhage and intracranial atherosclerosis. The lab investigates the molecular mechanisms underlying calcium channel function in retinal synaptic transmission, particularly in inherited retinal disorders like congenital stationary night blindness. Additionally, the lab explores immune modulation in cancer and neurological disease, especially the role of interleukin-12 family cytokines in tumor immunity and inflammatory regulation. Their work integrates molecular biology, animal models, and clinical neurology to advance understanding of neurological and vascular pathologies.
Professor Yun Park's research lab specializes in nanoscale materials and devices, focusing on advanced 2D materials like graphene, complex oxides such as strontium cobaltite and nickel oxide, and carbon nanotubes. The lab explores fundamental electronic and optoelectronic phenomena, including light-induced doping, resistance switching, and nanoconfined water dynamics, with applications in sensing, memory devices, and quantum nanomechanics. Key research directions include the design of novel heterostructures, manipulation of charge transport at the nanoscale, and the development of high-quality nanomechanical resonators for quantum and low-power electronics.