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 Dong-Jin Lim's research lab specializes in cardiovascular imaging, with a focus on advancing non-invasive diagnostic techniques for cardiomyopathies using cutting-edge medical imaging modalities. The lab investigates the clinical applications of cardiac magnetic resonance (CMR) and dual-energy computed tomography (DECT), particularly in quantifying myocardial tissue characteristics such as extracellular volume fraction (ECV), T1 and T2 mapping, and delayed enhancement. Key research directions include improving diagnostic accuracy, risk stratification, and treatment monitoring in non-ischemic cardiomyopathies, including hypertrophic, dilated, amyloidotic, and sarcoidotic cardiomyopathies. The lab also explores functional and metabolic imaging biomarkers, such as glycolysis-related markers in lung cancer, to bridge imaging with molecular pathology.
Professor Kwon Joong Na's research lab specializes in cancer systems biology, focusing on the interplay between tumor metabolism, immune microenvironment, and clinical outcomes. The lab integrates multi-omics data—including transcriptomics, PET imaging, and single-cell RNA sequencing—to decode the molecular mechanisms underlying immune evasion and therapeutic resistance in solid tumors. Key research directions include constructing gene coexpression networks to identify prognostic biomarkers and developing machine learning-based models for risk stratification in lung and thyroid cancers. The lab also investigates metabolic reprogramming in the tumor microenvironment to inform immunotherapy and precision oncology strategies.
Professor Jong Hwan Ko's research lab specializes in energy-efficient computing and intelligent sensing systems, focusing on low-power neuromorphic hardware, advanced memory architectures, and integrated sensor systems. The lab develops innovative solutions for energy harvesting, weight compression in neural networks, and adaptive learning in resistive memory devices, with applications in wireless video sensing, wearable electronics, and edge AI. Key research directions include frequency-domain deep learning accelerators, content-aware image processing, and bio-inspired sensing using silicon-based piezoresistive sensors with deep learning integration. The lab emphasizes hardware-software co-design to enable compact, high-performance, and energy-efficient systems for real-world deployment.
Professor Jeong Yee's research lab specializes in pharmacogenomics and environmental health, focusing on the genetic and environmental factors influencing drug response and disease outcomes. The lab conducts systematic reviews and meta-analyses to evaluate the impact of genetic polymorphisms—such as those in CYP3A5, POR, NAT2, and ephedrine metabolism—on drug efficacy and adverse effects. It also investigates the health impacts of environmental exposures, including air pollution and infectious diseases like COVID-19, particularly in vulnerable populations such as pregnant women and transplant recipients. The lab’s work bridges clinical pharmacology, epidemiology, and public health through rigorous evidence synthesis.
Professor Young Yong Kim's research lab specializes in the development and characterization of advanced functional materials, particularly conjugated polymers and block copolymers, with a focus on their self-assembly behavior, thermal stability, and electronic properties in nanostructured thin films. The lab integrates advanced synchrotron-based X-ray scattering techniques—such as grazing incidence X-ray scattering (GIXS)—to investigate the nanoscale morphology and phase behavior of these materials under various processing conditions. A key research direction involves linking molecular architecture and self-assembly dynamics to device-relevant properties, including n-type semiconductor behavior and memory characteristics, for applications in flexible and printed electronics. The lab also explores the intersection of wireless communication dynamics and network performance by modeling fading channels at the packet level, offering novel insights into high-layer network behavior through physical-layer statistics.
Professor Soo Hyuk Choi's research lab specializes in the design, synthesis, and structural characterization of foldamers—particularly α/β-peptides and β-peptides—focusing on their unique helical secondary structures. The lab investigates how backbone topology, residue stereochemistry, and ring constraints (such as in cyclopentane and cyclohexane derivatives) govern conformational stability and folding behavior. Using advanced techniques like X-ray crystallography and NMR spectroscopy, the group explores the structural diversity of helices such as the 11-helix, 14/15-helix, 12-helix, and 12/10-helix, aiming to understand and control their folding patterns for potential applications in biomimetic materials and functional peptides.
Professor Minchul Cho's research lab specializes in biomedical engineering and urological interventions, with a primary focus on improving surgical outcomes for benign prostatic hyperplasia (BPH) through advanced laser therapies such as photovaporization (PVP) and holmium laser enucleation (HoLEP). The lab investigates long-term urological outcomes, including lower urinary tract symptoms (LUTS) improvement, quality of life, and the impact of preoperative factors like detrusor underactivity. Additionally, the lab explores molecular mechanisms in urogenital function, particularly the role of LIM kinases and actin cytoskeleton regulation in smooth muscle contraction and cellular dynamics. The integration of clinical urology with molecular biology and surgical innovation defines the lab’s interdisciplinary approach.
Professor Yoon Jang Chung's research lab specializes in the development and characterization of advanced semiconductor materials and heterostructures for next-generation electronic and optoelectronic devices. The lab focuses on achieving high-mobility two-dimensional electron systems (2DESs) through innovative heterostructure engineering, including modulation doping and doping-well structures, with applications in valleytronics and quantum phenomena. Key research directions include the atomic-layer deposition (ALD) of high-k and transparent oxide semiconductors (e.g., ITO, Al:ZnO, TiO2) for thin-film transistors and DRAM capacitors, with an emphasis on interface control and defect suppression. The lab also investigates optoelectronic stability and charge transport mechanisms in complex oxide systems to enable high-performance, reliable devices.
Professor Hyunseung Kim's research lab specializes in advanced interface engineering for next-generation batteries, focusing on solid electrolyte interphase (SEI) formation, electrolyte design, and surface modification strategies to enhance the stability, safety, and performance of lithium-ion and sodium-ion batteries. The lab develops novel electrolyte additives—such as organosilanes, ionic liquids, and rare-earth-based compounds—to tailor electrode work functions, suppress side reactions, and enable fast-charging, long-cycling, and thermally stable battery systems. Key research directions include interfacial charge transfer control, viscoelastic SEI formation, and flame-retardant separators for lithium metal batteries.
Professor Hwang Jin-Young's research lab specializes in clinical anesthesiology and critical care, with a focus on optimizing airway management, reducing postoperative complications, and improving patient outcomes during surgical procedures. Key research directions include evaluating novel airway devices (such as the i-gel™ and LMA-Protector™), enhancing the safety and efficacy of endotracheal intubation techniques, and investigating pharmacological strategies for effective sedation and neuroprotection. The lab also explores interventions to minimize postoperative sore throat and to protect spinal cord function during high-risk vascular surgeries.
Professor Kee Yeol Lee's research lab specializes in medical imaging and diagnostic radiology, with a focus on advanced cross-sectional imaging techniques such as CT, MRI, and PET-CT for the characterization of complex diseases. The lab investigates the radiological features of rare and challenging conditions—including paragangliomas, Kikuchi disease, pyogenic liver abscess, and cystic lung diseases—aiming to improve early diagnosis and clinical management. Recent work also explores the application of deep learning in medical image analysis, particularly in optimizing transfer learning for COVID-19 screening using chest X-rays. The lab integrates clinical findings with advanced imaging biomarkers to enhance diagnostic accuracy and patient outcomes.
Professor Heedeuk Shin's research lab specializes in integrated photonics, with a focus on hybrid photonic-phononic systems, nonlinear optical phenomena in nanoscale waveguides, and on-chip optical signal processing. The lab pioneers the integration of light and sound at the nanoscale, enabling breakthroughs in stimulated Brillouin scattering, ultra-compact optical devices, and high-efficiency quantum optical technologies. Key research directions include the development of tunable, broadband, and low-loss photonic components such as power splitters and nonlinear waveguides for applications in quantum information and optical communications.
Professor Gawon Kim's research lab specializes in consumer behavior and service management within hospitality and tourism, with a strong focus on customer satisfaction, service quality, and customer value. The lab investigates the psychological and communicative dynamics underlying customer–employee interactions, online review behaviors, and the role of tangible cues in shaping perceptions of authenticity and trust. Using mixed-methods and experimental designs, the lab explores how individual dispositions, language use, and service provider attributes influence customer perceptions and behavioral intentions. The research also extends to the impact of peer interactions and service failures in service contexts, offering practical insights for service innovation and management.
Professor Hee-Joon Ahn's research focuses on market microstructure, particularly the dynamics of liquidity, informed trading, and information asymmetry in financial markets. His work examines how limit orders and market orders interact under varying volatility conditions, and investigates the information content of trades in derivative markets such as the KOSPI 200 options and German Bund futures. He employs advanced econometric models to analyze price impact, bid-ask spreads, and the role of informed traders, with a strong emphasis on emerging and developed market contexts. His research contributes significantly to understanding the mechanisms of price discovery and market efficiency in both equity and fixed-income derivatives.
Professor Sung Yang's research lab focuses on translational and clinical studies in pediatric and metabolic health, with a strong emphasis on early-life determinants of chronic disease. Key research directions include the impact of environmental factors—such as climate change and air pollution—on childhood allergic sensitization and cardiovascular risk, as well as the hormonal and metabolic mechanisms underlying precocious puberty and type 2 diabetes in children and adolescents. The lab also investigates novel diagnostic and therapeutic approaches for rare genetic conditions like Turner syndrome, integrating advanced genetic techniques and personalized hormone therapy.
Professor Kyu Young Lee's research lab focuses on interdisciplinary studies at the intersection of biomedical sciences, materials engineering, and psychological factors in health and performance. The lab investigates neurogenesis and neurodegenerative disease mechanisms, particularly the role of molecular pathways like PI3K and nutraceuticals such as CoQ10 in neuroprotection. It also explores materials science applications in advanced manufacturing and energy systems, including phase shift mask etching and friction welding of high-performance alloys. Additionally, the lab examines psychological and organizational factors influencing learning, empowerment, and service quality in healthcare and educational settings.
Professor Eun-kyung Moon's research lab focuses on the molecular mechanisms underlying encystation and pathogenesis in *Acanthamoeba*, a free-living protozoan parasite responsible for severe infections such as granulomatous amoebic encephalitis and amoebic keratitis. The lab investigates key biological processes including autophagy, cyst wall formation, and the role of specific proteinases and enzymes in cyst development. Using molecular and cellular approaches such as gene expression profiling, RNA interference, and functional characterization of autophagy-related and cell wall-synthesizing proteins, the lab aims to identify novel therapeutic targets for treating drug-resistant *Acanthamoeba* infections. Their work highlights the importance of understanding parasite differentiation and stress resistance mechanisms to develop effective interventions.
Professor Suk-Chang Hong's research lab specializes in the development of sustainable and enantioselective synthetic methodologies, with a strong focus on transition-metal-catalyzed C–H functionalization, phase-transfer catalysis, and iron-catalyzed redox processes. The lab pioneers atom-economical and eco-friendly strategies for the synthesis of complex nitrogen-containing heterocycles—such as benzoxazoles, benzimidazoles, quinazolinones, and pyrroloquinoxalines—using earth-abundant iron catalysts and redox-neutral or acceptorless transformations. Key innovations include enantioselective alkylation of malonates and direct C–H amination, enabling efficient access to chiral building blocks and bioactive natural products with high enantioselectivity and functional group tolerance.
Professor Michelle Minseon Kim's research lab specializes in cross-cultural psychology and intercultural communication, with a focus on the interplay between cultural identity, personality traits such as perfectionism and self-determination, and psychological outcomes including social anxiety and decision-making behaviors. The lab investigates how cultural values—particularly Confucian and Western individualistic influences—affect interpersonal dynamics, communication strategies, and mental health across diverse populations in Asia and the West. Research directions include the psychological mechanisms underlying perfectionism, the role of self-construal in medical decision-making preferences, and the cultural dimensions of deception and motivation.
Professor Hyun-Kuk Lee's research lab specializes in surgical oncology and gastrointestinal surgery, with a focus on the molecular mechanisms of gastric carcinoma and the clinical outcomes of minimally invasive surgical techniques. The lab investigates tumor suppressor genes and biomarkers in gastric cancer, aiming to improve diagnostic and prognostic accuracy. It also conducts long-term clinical studies on laparoscopic common bile duct exploration, evaluating surgical outcomes, stone recurrence, and bile duct complications. Additionally, the lab contributes to the validation of cancer staging systems, particularly for pancreatic neuroendocrine tumors.