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 Hyun-mi Kim's research spans biomedical sciences and atmospheric dynamics, with a focus on probiotic mechanisms in skin health and UV-induced photoaging, as well as the mathematical and physical analysis of atmospheric instabilities using singular vectors and adjoint models. Her work in dermatology explores how *Lactobacillus plantarum* HY7714 modulates collagen synthesis and extracellular matrix degradation under UVB stress, while her atmospheric research investigates the evolution of singular vectors and sensitivity analysis in cyclone and typhoon development using quasigeostrophic and mesoscale models. She integrates computational modeling with empirical data to understand both biological and meteorological system sensitivities to initial conditions. The lab bridges molecular biology and fluid dynamics through rigorous diagnostic techniques such as PV inversion and Eliassen-Palm flux analysis.
Professor Kunwoon No's research lab specializes in computational biomechanics and personalized medical device design, focusing on the development of patient-specific implants, mandibular advancement devices (MADs), and customized osteosynthesis plates. The lab employs advanced finite element analysis and topology optimization to enhance surgical stability, reduce patient discomfort, and ensure long-term implant success in craniofacial and maxillofacial applications. Their work bridges clinical needs with computational innovation, particularly in treating obstructive sleep apnea and mandibular reconstruction.
Professor Mi A Jang's research lab focuses on cellular and molecular mechanisms underlying neurological function, muscle cell metabolism, and clinical microbiology, with a strong emphasis on translational applications. The lab investigates neuron-glia interactions in synaptic plasticity and auditory processing, explores serum-free cell culture systems for regenerative medicine and lab-grown meat, and applies multi-gene sequencing to improve species identification and clinical interpretation of nontuberculous mycobacteria. Additionally, the lab contributes to forensic science by examining the reliability of drug detection in fingerprints, particularly distinguishing between dermal contact and ingestion.
Professor Chae Un Kim's research lab specializes in high-resolution structural biology, particularly using advanced X-ray crystallography techniques to investigate enzyme mechanisms at the atomic level. The lab focuses on metalloenzymes such as human carbonic anhydrase II, exploring how metal ion identity and coordination geometry influence catalytic activity and substrate binding. A key innovation in the lab is the development of high-pressure cryocooling methods that enable radiation-damage-free imaging of transient enzyme intermediates without traditional cryoprotectants. The lab also investigates the behavior of water under extreme conditions in protein crystals, revealing insights into amorphous ice phases and their implications for structural biology and biophysics.
Professor Dong Sup Lee's research lab focuses on infectious diseases, particularly antibiotic-resistant urinary tract infections caused by *Escherichia coli*, with an emphasis on understanding resistance mechanisms, clinical management, and prevention strategies. The lab also investigates the impact of lifestyle and physiological factors—such as sleep deprivation and hormonal changes—on urological and sexual health. Additionally, the lab applies econometric methods, including hedonic pricing models, to study the economic value of urban environmental features like access to parks on housing prices. Overall, the lab bridges clinical microbiology, urology, endocrinology, and health economics to address public health challenges.
Professor Sung Soo Cho's research lab specializes in cardiovascular disease prediction, biomarker discovery, and interventional management of acute cardiac conditions. The lab focuses on improving diagnostic accuracy through machine learning models and clinical biomarkers for obstructive coronary artery disease, particularly in high-risk populations such as those with cardiogenic shock or acute myocardial infarction. Key research directions include evaluating the prognostic value of inflammatory and metabolic biomarkers (e.g., hs-CRP, IL-6) and exploring innovative hemodynamic support strategies like ECMO and REBOA in critical cardiac care. The lab also investigates lifestyle factors—such as breakfast consumption—on long-term cardiometabolic health outcomes.
Professor Sujung Choi's research lab focuses on population health and preventive medicine, with a strong emphasis on metabolic syndrome, sleep disorders, and their interrelationships in adult and clinical populations. The lab investigates lifestyle, occupational, and behavioral factors—including shift work, alcohol consumption, and sleep patterns—that influence metabolic and mental health outcomes. A significant portion of the research also explores non-pharmacological interventions, such as breast milk olfactory stimulation, to improve health outcomes in vulnerable populations like premature infants. The lab employs large-scale national survey data and clinical cohort studies to inform public health policy and preventive strategies.
Professor Jeong Ho Han's research lab specializes in translational oncology and molecular cancer biology, focusing on the integrative analysis of genomic and radiological features in cancer to improve diagnosis and treatment. The lab investigates the molecular mechanisms of tumorigenesis using high-throughput sequencing technologies, particularly in lung adenocarcinoma among never-smoking female patients, and explores novel immunotherapeutic strategies such as IL-12 gene therapy for advanced cancers. Additionally, the lab contributes to medical imaging research, especially in the radiological characterization of thymic epithelial tumors and mechanical ventilation-induced lung injury. The work bridges genomics, immunotherapy, and clinical imaging to advance precision oncology.
Professor Hai-ryong Yun's research lab focuses on chronic disease epidemiology and predictive modeling, with a strong emphasis on kidney disease, metabolic disorders, and cardiovascular risk factors. The lab investigates the long-term progression of chronic kidney disease (CKD), particularly in relation to coronary artery calcification, obesity, and metabolic health, using large-scale cohort studies. A key research direction involves developing machine learning models to predict clinical outcomes such as non-curative resection in early gastric cancer and incident chronic kidney disease. The lab also explores the interplay between systemic conditions like periodontal disease and inflammatory arthritides or neurodegenerative diseases such as Parkinson’s disease.
Professor Woo Yul Choi's research lab specializes in advanced wireless communication systems, with a focus on physical layer signal processing, multi-user detection, and energy-efficient network architectures. The lab explores cutting-edge topics such as multi-packet reception, in-band full-duplex communications, cloud radio access networks (C-RAN), flying ad-hoc networks (FANET), and high-frequency RF CMOS modeling. Key research directions include interference management, beamforming, power control, and the design of reconfigurable transceivers for next-generation wireless systems. The lab combines theoretical innovation with practical hardware implementation, particularly in millimeter-wave and sub-THz bands, to address real-world challenges in IoT, UAV networks, and 6G wireless systems.
Professor SungBin Lee's research lab specializes in strongly correlated electron systems, with a focus on quantum magnetism, topological quantum matter, and emergent phenomena in low-dimensional and frustrated materials. The lab investigates exotic quantum phases such as spin liquids, multipolar order, and unconventional superconductivity in rare-earth pyrochlores, perovskite nickelates, and 5d iridates, using advanced theoretical frameworks including gauge mean-field theory, Landau theory, and many-body techniques. A central theme is understanding the interplay between electron correlation, spin-orbit coupling, lattice distortions, and gauge fields in determining complex ground states and phase transitions.
Professor Soo Chan Kim's research lab specializes in advanced energy storage technologies, with a primary focus on next-generation batteries such as lithium-sulfur, lithium-selenium, and anode-free lithium-ion batteries. The lab develops innovative materials and structural designs—including multifunctional binders, solid electrolyte separators, and functional interlayers—to address critical challenges like polysulfide shuttling, lithium dendrite formation, and poor cycle life. By integrating nanomaterials and scalable fabrication techniques, the lab aims to enhance the performance, safety, and commercial viability of high-energy-density batteries.
Professor Hee Yeon Woo's research lab specializes in molecular diagnostics and clinical biomarker discovery, with a focus on infectious diseases, reproductive endocrinology, and oncology. The lab develops and validates sensitive molecular assays—such as DPO-PCR and mass spectrometry-based methods—for detecting antimicrobial resistance, hepatitis B virus mutations, and hormone-related biomarkers like anti-Müllerian hormone. Their work bridges laboratory innovation with clinical application, particularly in early diagnosis and personalized medicine for conditions like *H. pylori* infection, polycystic ovary syndrome, and paraneoplastic syndromes. The lab also evaluates point-of-care testing devices for renal function markers, emphasizing accuracy and practicality in routine clinical settings.
Professor Myungseop Im's research lab specializes in the advanced design, analysis, and optimization of high-speed and high-efficiency electric machines, particularly permanent magnet synchronous motors (PMSMs) and wound field synchronous motors (WFSMs). The lab focuses on innovative motor topologies, including surface-mounted and interior PMSMs with concentrated windings, emphasizing sensorless control feasibility, loss reduction, and electromagnetic-thermal-mechanical co-design. Key research directions include high-speed machine design, loss evaluation using combined FEA and experimental validation, and the impact of manufacturing-induced core properties on motor performance.
Professor Eunmi Chang's research lab specializes in organizational behavior, with a focus on employee commitment, human resource management practices, and cross-cultural dynamics in multinational corporations. The lab investigates how individual-level factors such as career commitment and performance appraisal systems interact with organizational practices—particularly in Korean and East Asian contexts—to influence outcomes like organizational commitment, turnover intention, and perceptions of justice. Drawing on theories such as agency theory and comparative national culture frameworks, the lab explores control mechanisms in multinational subsidiaries and the impact of HR bundles on employee perceptions.
Professor In-Hyang Kim's research lab specializes in environmental health and neurodevelopmental disorders, focusing on the impact of developmental exposure to endocrine-disrupting chemicals—such as bisphenols, phthalates, PFAS, and pyrethroids—on childhood behavior and cognition. The lab investigates critical windows of susceptibility during prenatal and early postnatal life, with an emphasis on ADHD and autistic traits. Using longitudinal birth cohort studies in South Korea, the lab integrates biomonitoring, epigenetic analysis (e.g., mtDNA copy number and gene methylation), and behavioral assessments to uncover biological mechanisms linking environmental exposures to neurodevelopmental outcomes.
Professor Jung-Hyun Kim's research lab focuses on translational biomedical research, particularly in neurorehabilitation, immunology, and cancer biology. The lab investigates neuromuscular modulation through targeted interventions such as focal vibration therapy to improve motor function in neurological disorders, explores the role of chronic inflammation and oxidative stress in metabolic and autoimmune conditions like rheumatoid arthritis and obesity, and examines cellular and molecular mechanisms in cancer immunotherapy—especially telomerase activity and cytokine-induced killer (CIK) cell therapy in glioblastoma. The lab integrates preclinical models with clinical data to identify biomarkers and develop novel therapeutic strategies.
Professor Hyun-Ill Kim's research lab specializes in public health and social epidemiology, focusing on the intersection of child maltreatment, social determinants of health, and structural inequities. The lab employs large-scale national administrative data to examine the prevalence, risk factors, and long-term consequences of child maltreatment, with particular attention to race/ethnicity, poverty, and food insecurity. Research directions include longitudinal trends in child welfare reports, the impact of poverty-related program duration, and community-level environmental factors influencing child protection system involvement. The lab also investigates the role of systemic and structural factors in shaping child welfare outcomes across diverse U.S. populations.
Professor Hyeon-Jung Lee's research lab specializes in digital dentistry and implant prosthesis biomechanics, focusing on improving clinical outcomes through advanced 3D imaging, finite element analysis, and surgical guidance systems. The lab investigates implant stability, prosthesis design, and digital feedback systems to enhance precision and efficiency in restorative and orthopedic dental procedures. Key research directions include the development and evaluation of implant-supported appliances for sleep apnea, digital tooth preparation feedback, and 3D-printed surgical guides for complex dental surgeries.
Professor Hyoun Woo Kang's research lab focuses on the interplay between body composition, metabolic health, and gastrointestinal diseases. The lab investigates how visceral adiposity, insulin resistance, and sarcopenia contribute to the development of metabolic syndrome, colorectal neoplasms, and functional gastrointestinal disorders such as irritable bowel syndrome and functional dyspepsia. Using advanced imaging techniques like CT and clinical epidemiological approaches, the lab explores the pathophysiological links between obesity-related parameters and chronic diseases, including diabetes, cardiovascular disease, and cancer. The research also extends to endoscopic interventions, particularly self-expandable metal stents in benign and malignant upper GI strictures, and vaccine safety, particularly regarding adverse events following COVID-19 vaccination.