世界の主要大学の研究室を探索 — 研究分野と主要論文を一目で確認できます。
Professor Ji Hyeong Choi's research lab specializes in media effects, political communication, and digital news consumption, with a strong focus on how emotions, social media use, and online engagement influence civic participation and information processing. The lab investigates the interplay between digital news experiences—such as reading, sharing, and endorsing content—and political behavior, particularly through the lens of social networking sites (SNS). Key research directions include the emotional impact of news visuals, the role of risk perception in misinformation, and the mediating role of political social capital in online political engagement. The lab also examines how major events, such as the Iraq War, reshape media coverage quality and diversity in international news.
Professor Chang-Hoon Koo's research lab specializes in perioperative medicine with a focus on enhancing patient outcomes through innovative anesthetic techniques and technologies. The lab investigates the clinical efficacy of virtual reality in reducing preoperative anxiety, regional anesthesia techniques like the erector spinae plane block for postoperative pain control, and optimal anesthetic strategies such as oxygen concentration management and extubation techniques in pediatric and adult patients. Their work emphasizes evidence-based approaches to minimize complications and improve recovery in surgical populations, particularly in the elderly and pediatric cohorts.
Professor Si Un Lee's research lab specializes in neurocritical care and interventional neuroradiology, with a primary focus on intracranial hemorrhage and intracranial pressure management. The lab investigates innovative endovascular interventions such as middle meningeal artery embolization for chronic subdural hematoma and evaluates non-invasive monitoring techniques like optic nerve sheath diameter ultrasonography for detecting increased intracranial pressure. Their work emphasizes translational research, integrating clinical imaging, hemodynamic monitoring, and patient outcomes to improve diagnosis and treatment strategies in cerebrovascular diseases.
Professor Hye Won Kim's research lab focuses on the intersection of immunometabolism, microbiome dynamics, and inflammatory diseases, with a particular emphasis on gout, rheumatoid arthritis, and sepsis. The lab investigates how gut microbiota and epigenetic modifications—such as DNA methylation and IGF-2 expression—contribute to disease pathogenesis and progression, especially in the context of metabolic and immune dysregulation. Additionally, the lab explores clinical biomarkers like the delta neutrophil index (DN) for early sepsis prediction and evaluates healthcare interventions, such as pharmacist-led medication reconciliation, to improve patient outcomes. Their work bridges molecular mechanisms with translational applications in rheumatology, infectious diseases, and clinical pharmacology.
Professor Young I Han's research lab specializes in advancing radiation oncology through innovative medical physics and artificial intelligence applications. The lab focuses on improving the accuracy and efficiency of proton therapy, particularly in addressing range uncertainties and motion management in lung cancer treatment. It also develops AI-driven solutions for medical image analysis and survival prediction in glioblastoma, integrating deep learning with medical imaging and clinical data. Additionally, the lab contributes to image-guided radiation therapy by enhancing imaging quality through advanced image reconstruction techniques.
Professor Chang-Geon Han's research lab focuses on asset-based social policies, financial inclusion, and the longitudinal impacts of economic resources on individual and family well-being. The lab investigates how policies such as Individual Development Accounts (IDAs), wealth accumulation, and asset ownership influence financial stability, family functioning, and psychological outcomes like self-esteem and marital satisfaction across the life course. Research spans diverse populations in Asia, particularly in Korea, Singapore, and Taiwan, with a strong emphasis on equity, inclusiveness, and the dynamic interplay between economic resources and social outcomes.
Professor Seung Yoon Hong's research lab specializes in the development of innovative transition metal-catalyzed reactions for efficient and selective synthesis of nitrogen-containing heterocycles and complex organic molecules. The lab focuses on mechanistic understanding and catalyst design, particularly using early transition metals like rhodium and iridium, to control reaction pathways and suppress side reactions. By integrating computational methods such as DFT calculations with experimental studies, the group tailors ligand frameworks to modulate electronic and steric properties, enabling new reactivity patterns in C–H functionalization and annulation processes. The lab also explores functional ionic liquids for gas capture, particularly SO₂, highlighting a multidisciplinary approach bridging catalysis and materials science.
Professor Seung Young Oh's research lab specializes in clinical and translational research focused on gastrointestinal oncology, critical care medicine, and advanced medical data analytics. The lab investigates minimally invasive surgical techniques such as pylorus-preserving gastrectomy and endoscopic resection for early gastric cancer, while also exploring prognostic biomarkers like lactate levels and sepsis outcomes in surgical populations. A key focus is leveraging national healthcare databases to evaluate real-world clinical outcomes, particularly in liver transplantation and postoperative complications.
Professor Sungcheol Kim's research lab specializes in post-foundational discourse theory, with a focus on populism, hegemony, and the discursive construction of authoritarianism in contemporary European politics. The lab examines how political movements in countries such as Hungary, Poland, the Czech Republic, and Germany articulate power through populist and non-populist discursive logics, particularly in relation to nationalism, institutionalism, and social welfarism. It also engages critically with theoretical frameworks from the Essex School of discourse analysis, exploring the normative and ideological dimensions of populism and its intersections with identity, representation, and social order.
Professor Myeong Hyeon Cho's research lab focuses on behavioral and organizational economics, with a strong emphasis on managerial decision-making, agency costs, and corporate divestitures. The lab also explores psychological well-being in aging populations, particularly the role of social engagement and emotional regulation in reducing depression, anxiety, and psychological distress. Additionally, the lab investigates mental health in adolescents, examining the impact of self-awareness and dark triad traits such as schadenfreude on cyberbullying behaviors. A growing interest in electrochemical desalination technologies further expands the lab’s interdisciplinary scope into environmental and materials engineering.
Professor Suhyun Kim's research lab focuses on interdisciplinary research at the intersection of materials science and healthcare innovation. The lab investigates the stability and electrical properties of two-dimensional nanomaterials such as black phosphorus, aiming to develop reliable fabrication and recovery techniques for next-generation electronic devices. Concurrently, the lab is dedicated to advancing nursing education through evidence-based simulation programs and preceptor training models that enhance clinical reasoning and professional competence in healthcare professionals. These efforts reflect a dual commitment to cutting-edge materials research and transformative health education.
Professor Jeongyoun Ahn's research lab specializes in statistical methodology for complex, high-dimensional data, with a focus on functional data analysis, multivariate and interval-valued data modeling, and high-dimensional clustering and outlier detection. The lab develops innovative approaches to address challenges such as phase variation in functional data, batch effects in gene expression studies, and sample integrity in high-dimensional, low-sample-size (HDLSS) settings. A central theme is the integration of structural assumptions—such as sparsity, subspace geometry, and ordinal relationships—into robust statistical inference and machine learning frameworks. The lab’s work bridges theoretical statistics with practical applications in genomics, biomedicine, and data science.
Professor Hae Yeon Kang's research lab specializes in gastrointestinal endoscopy and digestive disease prevention, with a strong focus on early cancer detection, risk stratification, and improving endoscopic techniques. The lab investigates factors influencing the malignancy of gallbladder polyps, the efficacy of advanced imaging modalities like narrow band imaging and virtual chromoendoscopy in colonoscopy, and the impact of regular endoscopic screening on gastric cancer outcomes. Additionally, the lab explores the clinical management of complications from endoscopic procedures and examines the links between metabolic disorders such as nonalcoholic fatty liver disease and sarcopenia.
Professor Yoon Jong Hyun's research lab focuses on translational biomedical research with a strong emphasis on aging-related muscle disorders, regenerative medicine, and metabolic regulation. The lab investigates molecular mechanisms underlying sarcopenia, particularly the role of lipid metabolism and stress responses in aged skeletal muscle, while also exploring the therapeutic potential of stem cells and growth factors from sources like Wharton’s jelly. Additionally, the lab contributes to biotechnology innovation through the development of biosensors and tunable laser systems, as well as metabolic engineering for sustainable production of bio-based chemicals. These diverse yet interconnected research directions reflect a commitment to advancing both fundamental biology and applied biotechnological solutions.
Professor Ju-Hee Oh's research lab focuses on translational pharmacology and drug delivery, with a strong emphasis on oncology and bone metabolism. The lab investigates targeted cancer therapies, particularly antibody-drug conjugates (ADCs) like Depatux-M for glioblastoma, and explores mechanisms of drug resistance and delivery efficiency to the brain. It also examines the role of endogenous signaling pathways—such as RANKL-RANK and insulin signaling—in osteoclastogenesis and bone homeostasis. Additionally, the lab studies pharmacokinetic interactions of natural compounds (e.g., quercetin) with drug transporters, and develops advanced drug delivery systems for chronic disease management, such as fixed-dose combination gastroretentive tablets for diabetes and dyslipidemia.
Professor Young Dae Kwon's research lab focuses on molecular and cellular mechanisms underlying stress response and protein homeostasis, particularly the dynamics of stress granules and their role in neurodegenerative diseases. The lab also investigates public health determinants, including socioeconomic disparities and health information access, in maternal and child health outcomes in low- and middle-income settings such as Sindh, Pakistan. Additionally, the lab explores the complex interplay between mental health, body weight, and self-rated health across East Asian populations, emphasizing population-level health disparities and quality of life. These interdisciplinary efforts bridge molecular biology with population health sciences to address both biological mechanisms and social determinants of health.
Professor Ji-Hoon Kim's research lab specializes in the design, synthesis, and application of novel conjugated polymers for organic electronics, with a primary focus on organic photovoltaics (OPVs) and field-effect transistors. The lab develops low-bandgap donor–acceptor copolymers using advanced coupling reactions such as Stille and Suzuki cross-coupling, emphasizing molecular engineering to tune optoelectronic properties, energy levels, and film morphology. Key research directions include enhancing power conversion efficiency through strategic π-bridge and side-chain engineering, improving charge transport via terpolymerization and crystallinity control, and utilizing advanced characterization techniques like grazing-incidence X-ray scattering to understand structure–property relationships.
Professor Kang-Sik Park's research lab specializes in molecular and cellular neuroscience, focusing on the regulation of ion channels and synaptic adhesion molecules in neuronal plasticity and synapse formation. The lab investigates how post-translational modifications—particularly phosphorylation and dephosphorylation—modulate ion channel function to control neuronal excitability and homeostasis. Additionally, the lab explores the secretome profiles of mesenchymal stem cells to understand their therapeutic potential in disease modulation. A central theme is the molecular mechanisms underlying synaptic connectivity and neuronal circuit regulation through cell adhesion molecules and scaffolding proteins.
Professor Geonho Lee's research lab specializes in cloud computing, distributed systems, and media analytics. The lab focuses on optimizing resource allocation and job scheduling in heterogeneous cloud environments to enhance performance and cost-efficiency for data-intensive workloads. It also investigates media dynamics, including media agenda-setting, source utilization, and newsgathering practices across traditional and digital news platforms.
Professor Young Jun Park's research lab specializes in heterogeneous computing systems, with a focus on optimizing GPU and CPU workloads through dynamic resource management and innovative architectural designs. The lab explores efficient multitasking on GPUs, including dynamic scheduling and runtime adaptation to improve throughput and reduce latency in real-time applications. It also investigates the integration of advanced materials—such as cobalt thin films via atomic layer deposition—for next-generation semiconductor devices and energy-efficient computing platforms. The lab's work bridges computer architecture, system software, and materials science to enable high-performance, scalable, and energy-efficient computing systems.