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 Jung Ryeol Lee's research lab specializes in reproductive medicine and fertility preservation, with a primary focus on optimizing ovarian tissue cryopreservation and transplantation techniques. The lab investigates protective agents such as antifreeze proteins (AFPs) and bioactive factors like angiopoietin-2 and VEGF to mitigate ischemic damage during xenotransplantation and improve graft survival. Their work also explores hormonal regulation of anti-Müllerian hormone (AMH) as a predictor of ovarian response, contributing to personalized fertility preservation strategies. The lab integrates experimental models, including xenotransplantation in nude mice, to evaluate novel approaches for enhancing fertility outcomes after cryopreservation.
Professor Songhwai Oh's research lab specializes in autonomous multi-target tracking and real-time decision-making systems for wireless sensor networks. The lab focuses on developing scalable, efficient, and robust algorithms for data association, state estimation, and control in dynamic, cluttered environments—particularly under constraints of limited computational resources and unreliable sensor data. Key research directions include Markov chain Monte Carlo methods for approximate Bayesian inference, hierarchical control architectures for pursuit-evasion games, and real-time sensor network systems that can autonomously detect, track, and respond to multiple moving targets. The lab emphasizes practical deployment of these algorithms in challenging scenarios involving sensor noise, packet loss, and unknown target counts.
Professor Eunice Kim's research lab specializes in digital marketing communication, with a focus on branded content, influencer marketing, and native advertising in digital and gaming environments. The lab investigates how credibility, disclosure practices, cognitive processing, and user engagement shape consumer perceptions and behaviors in social media and interactive platforms. Key research directions include the psychological mechanisms behind persuasion knowledge, the impact of sponsorship transparency, and the effectiveness of branded content across mobile apps, social networks, and video games. The lab bridges theory and practice by addressing emerging challenges in digital advertising regulation and consumer experience.
Professor Dong Kyu Kim's research lab specializes in medical imaging and molecular diagnostics, with a focus on improving the accuracy of radiological diagnosis for oncological and hepatobiliary conditions. The lab investigates advanced MRI techniques, including hepatobiliary contrast agents and elastography, to enhance early detection and prognosis of hepatocellular carcinoma. Additionally, the lab explores novel contrast agents, such as polymer-coated gold nanoparticles, for molecular imaging using X-ray computed tomography, aiming to develop safer and more effective diagnostic tools. Their work bridges diagnostic radiology, oncology, and nanotechnology to improve patient outcomes through precision imaging.
Professor Gyu-Seong Choi's research lab specializes in advanced laparoscopic and robotic liver surgery, with a strong focus on improving surgical outcomes in living donor liver transplantation and anatomical liver resection. The lab investigates surgical techniques, vascular and biliary anatomy variations, and their impact on complications and long-term graft survival. Key research directions include optimizing the transition from open to laparoscopic surgery, evaluating the feasibility of laparoscopic right hemihepatectomy in complex anatomical variants, and comparing surgical approaches like 'cut and clip' versus 'clip and cut' for biliary integrity. The lab also emphasizes oncological outcomes in hepatocellular carcinoma, particularly in the context of minimally invasive liver resection.
Professor Jidong Sung's research lab focuses on cardiovascular health, with a strong emphasis on vascular function, hypertension management, and the impact of lifestyle and natural interventions on cardiovascular risk. The lab investigates physiological responses to exercise, autonomic nervous system function (particularly heart rate recovery), and arterial stiffness, especially in preclinical and early stages of hypertension. It also explores the therapeutic potential of traditional Korean medicine, such as Korean red ginseng, in improving endothelial function. The lab is committed to developing culturally adapted, valid clinical assessment tools, such as the Korean version of the Duke Activity Status Index, to enhance functional status measurement in cardiovascular patients.
Professor Haigun Lee's research lab specializes in the development of advanced nanomaterials for energy conversion and storage applications, with a strong focus on supercapacitors and superconducting magnets. The lab pioneers innovative synthesis strategies for nanostructured electrode materials, such as cobalt phosphide and cobalt nanoparticles embedded in nitrogen-doped carbon matrices, to enhance ion transport and electrochemical performance. Additionally, the lab is actively involved in the design and fabrication of high-temperature superconducting (HTS) inserts for NMR magnets, emphasizing critical current optimization, mechanical splicing, and field homogeneity. These multidisciplinary efforts bridge materials science, electrochemistry, and applied superconductivity.
Professor Bo Kyung Koo's research lab focuses on metabolic liver diseases, particularly non-alcoholic fatty liver disease (NAFLD) and its complications, with an emphasis on identifying novel biomarkers and genetic determinants of fibrosis and disease progression. The lab investigates the interplay between metabolic syndrome components—such as insulin resistance, sarcopenia, and diabetes—and liver and muscle health, aiming to improve risk stratification and early intervention strategies. A key focus is on understanding the roles of genetic variants (e.g., PNPLA3, TM6SF2, KCNJ11) and circulating factors (e.g., GDF15) in disease susceptibility and outcomes.
Professor Jae-Oh Shim's research lab specializes in the design and synthesis of advanced nanomaterials for sustainable energy applications, with a primary focus on catalysis for clean energy conversion. The lab investigates platinum-based and transition metal oxide catalysts—particularly those involving ceria-zirconia solid solutions—for key reactions such as the water-gas shift (WGS) and deoxygenation processes essential for renewable fuel production. Emphasis is placed on optimizing catalyst morphology, metal dispersion, and oxygen vacancy engineering to enhance activity, stability, and resistance to sintering. The lab also explores waste-to-energy conversion and solvent-free processes to improve the efficiency and sustainability of biofuel and hydrogen production technologies.
Professor Won-Jin Kim's research lab specializes in biofabrication and regenerative medicine, focusing on developing advanced bioprinting technologies to engineer complex 3D tissue constructs. The lab integrates functional biomaterials—such as collagen, decellularized extracellular matrix, and nanomaterials like gold nanowires—with electric field stimulation to guide cell alignment, differentiation, and tissue organization. Key research directions include the fabrication of anatomically accurate microfibrillar structures mimicking skeletal muscle, intestinal villi, and vascularized tissues for applications in organ-on-a-chip and regenerative therapy. The lab emphasizes enhancing printability, mechanical stability, and biological functionality of composite bioinks to support high cell viability and tissue maturation.
Professor Hyun Su Kim's research lab specializes in medical imaging and diagnostic radiology, with a focus on improving the accuracy and clinical utility of advanced imaging techniques such as PET/CT, MRI, and DWI in oncology and infectious diseases. The lab investigates the role of imaging in early disease detection, treatment response assessment, and personalized screening programs, particularly in lung cancer, cervical cancer, and infectious conditions like pandemic influenza and mycobacterial infections. Research also emphasizes optimizing national screening strategies by integrating age-specific and risk-adapted approaches to enhance health outcomes across diverse populations.
Professor Eun Sook Ko's research lab specializes in radiological and medical imaging research, focusing on the application of advanced MRI techniques—particularly dynamic contrast-enhanced and abbreviated breast MRI—to improve breast cancer diagnosis, prognosis prediction, and treatment response assessment. The lab investigates radiomics, perfusion heterogeneity, and texture analysis to correlate imaging features with histopathological and clinical outcomes, aiming to enhance personalized treatment strategies. A key focus is on optimizing MRI protocols for broader clinical use while maintaining diagnostic accuracy in both high-risk and average-risk populations.
Professor Eun Sook Ko's research lab specializes in breast imaging and oncology, focusing on the radiological characterization of breast pathologies, including rare conditions like charcoal granuloma and young-onset breast cancer. The lab investigates clinical and imaging features to improve diagnostic accuracy, differentiate benign from malignant lesions, and assess patient distress related to MRI screening. They also develop predictive models for regional recurrence and survival outcomes in breast cancer, emphasizing early detection and personalized follow-up strategies.
Professor Eunji Sim's research lab specializes in developing and applying advanced quantum mechanical methods to accurately model electronic structures and noncovalent interactions in complex molecular and materials systems. The lab focuses on density-corrected density functional theory (DC-DFT), path integral simulations, and quantum dynamics to address challenges in predicting spin-state energetics, weak interactions, and charge transfer processes. Their work bridges theoretical chemistry and materials science, with particular emphasis on transition metal complexes, biological charge separation, and the systematic error analysis of DFT functionals. They also explore the interplay between electron correlation, density errors, and dispersion corrections in weakly bound systems.
Professor Seung-Baik Kang's research lab specializes in orthopedic biomaterials and regenerative medicine, focusing on the development and evaluation of advanced implant materials such as porous titanium-nickel shape memory alloys for bone regeneration and orthopedic applications. The lab investigates disease-modifying osteoarthritis drugs (DMOADs) targeting key pathological pathways including inflammation, cartilage degradation, and pain signaling. It also explores novel nutraceutical formulations, such as FlexPro MD®, to provide non-pharmacological alternatives for managing osteoarthritis symptoms. The lab integrates preclinical and clinical research to translate innovative solutions for musculoskeletal disorders, particularly in pediatric and adult patients with bone defects or joint degeneration.
Professor Kyoung Soo Kim's research lab focuses on metabolic and inflammatory diseases, particularly those associated with aging, diabetes, and autoimmune disorders. The lab investigates molecular mechanisms underlying insulin resistance, sarcopenic obesity, and chronic inflammation, with a strong emphasis on cellular signaling pathways such as AMPK and PGC-1α. It also explores therapeutic potential of natural compounds—including taurine, taurine chloramine, and herbal extracts like RAH13—for treating diabetic complications and inflammatory conditions. The lab integrates preclinical models and molecular techniques to identify novel biomarkers and treatment strategies for metabolic and autoimmune diseases.
Professor Myoung Hee Kim's research lab focuses on molecular mechanisms underlying cancer progression and stress responses, with a particular emphasis on transcriptional regulation, extracellular matrix remodeling, and non-coding RNA functions in disease. The lab investigates the roles of HOX genes, matrix metalloproteinases, and long non-coding RNAs in breast cancer pathogenesis and therapy resistance, as well as stress-responsive proteins like cold shock domain proteins in abiotic stress tolerance. Their work integrates molecular biology, cell biology, and translational research to uncover novel therapeutic targets in cancer and plant stress adaptation.
Professor Yongseok Choi's research lab specializes in medicinal chemistry and synthetic organic chemistry, with a primary focus on the design and synthesis of biologically active heterocyclic compounds for therapeutic applications. The lab develops novel nucleoside analogues and heterocyclic scaffolds—such as benzoxazoles, pyrroles, and modified nucleosides—targeting antiviral and anticancer agents, particularly against HIV and hepatitis viruses. A key research direction involves creating conformationally restricted nucleoside mimics to enhance drug efficacy and metabolic stability. The lab also explores the application of these compounds in biological systems, including in vitro models for ammonia detoxification using hepatocyte cell lines.
Professor Sung-il Kim's research lab focuses on the neuroscience of motivation, integrating neuroimaging, cognitive psychology, and educational psychology to explore the neural mechanisms underlying motivation, learning, and decision-making. The lab investigates how reward processing, value-based decision-making, and goal-directed control shape student engagement and academic performance, particularly in mathematics and science education. Using interdisciplinary approaches, including behavioral experiments and neuroscientific modeling, the lab examines individual differences such as cognitive traits and gender in motivation and learning outcomes. The lab also contributes to educational technology by studying the impact of multimedia presentation formats—like animations—on student motivation and comprehension.
Professor Yoon Jung Park's research lab focuses on the molecular mechanisms of natural compounds in cancer therapy, particularly exploring bioactive molecules like cordycepin and isoquinoline alkaloids in inducing apoptosis and autophagy in cancer cells. The lab investigates epigenetic regulators such as EHMT2 in non-small cell lung cancer, emphasizing histone methylation's role in tumorigenesis. Additionally, the lab examines sociocultural dimensions of migration, especially the identity, race, and social mobility of Chinese communities in South Africa, integrating biological and social science perspectives.