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 Ran Heo's research lab focuses on cardiovascular imaging and clinical outcomes, particularly in atrial fibrillation and heart failure. The lab investigates advanced echocardiographic techniques for left atrial assessment, symptom burden in arrhythmias, and the integration of imaging with hemodynamic and clinical phenotyping. A key emphasis is on translating novel imaging technologies—such as 3D echocardiography and CCTA—into practical tools for improved diagnosis and personalized treatment.
Professor Park Jin-Kyung's research lab focuses on translational biomedical research with a strong emphasis on adolescent health, neurocognitive assessment, and environmental health risks. The lab investigates metabolic syndrome and obesity in adolescents across different populations, evaluates the diagnostic accuracy of screening tools like the Beck Depression Inventory and clock drawing test for mental health conditions, and explores the health impacts of environmental exposures such as extremely low frequency magnetic fields. The lab also engages in materials science, particularly in the development of functional nanomaterials and biomaterials for biomedical applications, including cryoprotectants and silver nanoparticles. These interdisciplinary efforts reflect a commitment to improving early diagnosis, prevention, and treatment strategies for chronic and mental health conditions in youth.
Professor Hoeil Jeong's research lab specializes in advanced spectroscopic techniques and nanomaterials for analytical and environmental applications. The lab focuses on developing and optimizing near-infrared (NIR) and Raman spectroscopy for real-time, non-destructive analysis in complex systems such as bioreactors, petroleum products, and pharmaceuticals. A key research direction involves designing functional nanomaterials—particularly nitrogen-doped graphene and gold nanoparticle-embedded hydrogels—for enhanced sensing performance, including improved selectivity, sensitivity, and reproducibility. The lab also emphasizes innovative sample preparation and spectral acquisition strategies to enhance measurement reliability in heterogeneous or challenging matrices.
Professor Yoo-ri Lee's research lab focuses on plant cell signaling and membrane dynamics, with a central emphasis on phosphoinositides and their roles in regulating cellular processes such as tip growth, cell wall remodeling, and stomatal regulation. The lab investigates how lipid second messengers like PtdIns(3)P and PtdIns(4,5)P2 modulate cytoskeletal organization, vesicular trafficking, and stress responses in plants. Using genetic, cell biological, and live-imaging approaches in *Arabidopsis thaliana*, the lab explores the molecular mechanisms underlying cell polarity, growth, and environmental adaptation. Recent work also highlights the interplay between phosphoinositides, actin cytoskeleton, and pectin-mediated cell wall plasticity.
Professor Dong Won Lee's research lab specializes in clinical and translational studies focused on inflammation in acute kidney injury, reconstructive surgery outcomes in head and neck oncology, and advanced microsurgical techniques in breast and craniofacial reconstruction. The lab investigates molecular mechanisms of inflammatory mediators such as IL-33 in organ injury and explores innovative surgical approaches—including robotic and free flap techniques—for improved functional and aesthetic outcomes. Long-term patient-reported outcomes, biomarker evaluation in immune-mediated diseases like atopic dermatitis, and the application of biomaterials in facial contouring are also key research directions.
Professor Gihong Choi's research lab specializes in interventional cardiology and structural heart disease, with a strong focus on mechanical circulatory support, peripheral arterial disease, and acute coronary syndromes. The lab investigates clinical outcomes and prognostic factors in patients with cardiogenic shock, particularly in the context of acute myocardial infarction and left ventricular assist device therapy. Key research directions include optimizing percutaneous interventions—such as stenting in bifurcation and peripheral artery disease—using advanced hemodynamic scoring systems and personalized treatment strategies.
Professor Yumi Kim's research lab focuses on host-pathogen interactions, particularly the innate immune response to viral infections such as SARS-CoV-2, with an emphasis on interferon evasion mechanisms. The lab also investigates cellular signaling pathways involving G protein-coupled receptors (GPCRs) and arrestins, as well as the molecular mechanics of mitotic kinesins like CENP-E in chromosome segregation. Additionally, the lab explores antigen presentation in B cells and the regulation of circadian rhythms in plants, highlighting a broad interest in cellular and molecular mechanisms underlying immunity, intracellular trafficking, and biological timing.
Professor Geon Ha Kim's research lab focuses on the neurobiological mechanisms underlying cognitive aging and neurodegenerative diseases, with a particular emphasis on the role of oxidative stress, vascular risk factors, and brain structural integrity in mild cognitive impairment and dementia. The lab investigates cortical atrophy, white matter hyperintensities, and neuroimaging biomarkers to understand disease progression and identify early predictors of Alzheimer’s disease and subcortical vascular dementia. A key focus is on identifying resilient aging phenotypes, such as 'SuperAgers,' to uncover protective factors related to brain structure and lifestyle. The lab integrates advanced MRI techniques, neuropsychological assessments, and clinical data to advance precision approaches in cognitive health and neurodegeneration.
Professor Jungkyu Choi's research lab specializes in the design, synthesis, and application of advanced zeolite-based membranes and porous materials for high-performance separation processes. The lab focuses on developing defect-engineered, oriented, and highly selective molecular sieve membranes—particularly MFI, CHA, and DDR-type zeolites—targeting critical applications in carbon capture (CO₂/N₂ and CO₂/CH₄ separation), natural gas/biogas upgrading, and energy-efficient membrane separations. Innovative fabrication techniques such as rapid thermal processing, seeded secondary growth, and hetero-epitaxial thin film growth are central to enhancing membrane performance by minimizing grain boundary defects and improving crystallinity and orientation.
Professor Yong Hwan Kim's research lab specializes in bioinspired materials and biocatalysis, focusing on the development of sustainable biotechnologies for environmental remediation, cosmetic applications, and renewable energy conversion. Key research directions include the engineering of stable and efficient enzymes—such as lignin peroxidase and formate dehydrogenase—for industrial use, the design of advanced biosensors using carbon nanotubes and nanomaterials, and the integration of biological systems with photoelectrochemical platforms to produce value-added chemicals from CO2. The lab also investigates the physiological impacts of metabolic health in obesity, linking molecular mechanisms to cardiovascular outcomes.
Professor Young Soo Yun's research lab specializes in the design and synthesis of advanced carbon-based nanomaterials for sustainable energy applications, with a primary focus on energy storage devices such as supercapacitors and rechargeable batteries. The lab emphasizes the development of hierarchical porous carbons, heteroatom-doped carbon nanostructures, and 3D-architected electrodes derived from renewable or waste-based precursors like silk fibroin and coffee grounds. Key research directions include understanding ion storage mechanisms in hard carbon anodes, optimizing interfacial engineering for alkali-metal batteries, and correlating nanostructure with electrochemical performance through advanced spectroscopic and electrochemical characterization.
Professor Jun Won Kim's research lab focuses on translational oncology and molecular pharmacology, with a strong emphasis on improving cancer treatment outcomes through innovative radiotherapy techniques, systemic therapies, and biomarker discovery. The lab investigates organ-preserving strategies in head and neck cancers, explores adjuvant therapies for metastatic colorectal and rectal cancers, and delves into the biological mechanisms of sarcopenia and treatment-related toxicity. Additionally, the lab contributes to antiviral drug discovery, particularly in the development of novel non-nucleoside reverse transcriptase inhibitors for HIV. These multidisciplinary efforts reflect a commitment to enhancing patient survival and quality of life through precision medicine and targeted therapeutic interventions.
Professor Dong-Min Kang's research lab specializes in molecular and cellular biology, with a focus on redox signaling, cell cycle regulation, and the development of advanced biosensors. The lab investigates key regulatory proteins such as Chfr in mitotic checkpoint control and explores the dual roles of reactive oxygen species like hydrogen peroxide in both cellular damage and signaling. A significant part of the lab’s work involves designing and applying functional nanomaterials—such as fluorescent silica and gold nanoparticles—for the selective detection of metal ions, particularly Cu²⁺, in biological systems. The lab integrates molecular biology, biochemistry, and nanotechnology to understand fundamental cellular processes and develop innovative tools for live-cell imaging and diagnostics.
Professor Wooseok Yang's research lab specializes in the development and application of two-dimensional nanomaterials, particularly graphene and vanadium dioxide (VO2), for next-generation flexible and smart electronic devices. The lab focuses on scalable fabrication techniques such as chemical vapor deposition and self-assembly processes to create high-quality, large-area graphene and VO2 films with tailored electrical, optical, and mechanical properties. Key research directions include flexible transparent electrodes, thermochromic smart windows, and graphene-based field-effect transistors for low-power electronics. The lab also explores the biological mechanisms of bioactive compounds like caffeic acid, integrating materials science with biomedical applications.
Professor Yong Ahn's research lab specializes in minimally invasive spinal endoscopy, focusing on advancing percutaneous endoscopic techniques for lumbar spine disorders. The lab investigates innovative applications of endoscopic discectomy and foraminotomy in treating complex spinal pathologies such as recurrent disc herniation, lumbar spinal stenosis, and bony foraminal stenosis. A key research direction involves optimizing surgical safety, technique refinement, and radiation protection in endoscopic spine surgery. The lab also emphasizes clinical outcomes and long-term follow-up to validate emerging techniques like endoscopic transforaminal lumbar interbody fusion (TLIF).
Professor Beom-Suk Kim's research lab specializes in biomedical engineering and materials science, focusing on developing advanced technologies for healthcare applications. Key research directions include telecardiology systems with low-delay ECG compression for real-time wireless monitoring, optimizing donor kidney exchange algorithms to improve transplant outcomes, and exploring novel 2D semiconductors like MX₂ for optoelectronic applications. The lab also applies machine learning to predict clinical outcomes in hemodialysis patients, aiming to enhance treatment efficacy and patient survival.
Professor Dong Woog Lee's research lab specializes in bio-inspired materials and interfacial phenomena, focusing on the tribological behavior of biological systems such as articular cartilage and the development of advanced functional coatings for biomedical and energy applications. The lab investigates complex lubrication mechanisms in natural tissues, surface interactions of biopolymers like chitosan and hyaluronic acid, and innovative strategies for bubble management in (photo)electrochemical systems. A central theme is the design of smart, multifunctional surfaces—particularly through polymer-based coatings and hydrogels—that enable superior performance in biocompatibility, antifouling, and catalytic efficiency.
Professor Hyun Ju Lee's research lab specializes in translational and public health research, with a focus on improving health outcomes through culturally adapted health assessment tools, infectious disease management in pediatric populations, and the impact of public health interventions on infectious disease dynamics. The lab investigates clinical and behavioral determinants of health, particularly in aging populations and children, integrating epidemiological, clinical, and health services research. Key areas include the validation of patient-reported outcome measures, antimicrobial resistance in pediatric pneumonia, and the role of lifestyle factors in geriatric mental health.
Professor Min Kim's research lab focuses on translational biomedical research, with a primary emphasis on understanding the pathophysiology of ocular diseases such as uveitis and retinal disorders through advanced imaging techniques like enhanced-depth imaging optical coherence tomography (EDI-OCT). The lab investigates the role of choroidal thickness and ocular perfusion in disease activity and progression, particularly in conditions like Behcet’s uveitis. Additionally, the lab explores metabolic biomarkers—especially lipid species such as ceramides and phosphatidylcholines—in neurodegenerative diseases like Alzheimer’s disease, using mass spectrometry to identify plasma-based signatures linked to disease status and neurodegeneration. The integration of clinical imaging, molecular biomarkers, and systemic disease mechanisms defines the lab’s interdisciplinary approach.
Professor Sung Jin Kim's research lab specializes in thermal management and heat transfer optimization in electronic cooling systems, with a focus on microchannel heat sinks, finned heat sinks, and advanced thermal modeling. The lab investigates fluid flow and thermal performance using experimental, analytical, and numerical methods to minimize thermal resistance and enhance cooling efficiency. Key research directions include the development of predictive correlations for friction factor and Nusselt number, and the application of innovative modeling techniques such as porous medium and numerical optimization approaches. The lab's work supports the design of high-performance thermal solutions for electronics and power systems.