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 Choi Sung-ho's research lab specializes in interdisciplinary studies at the intersection of law, philosophy, and linguistics. The lab explores foundational questions in legal and ethical theory—particularly around conscience, victimhood in sexual violence cases, and conscientious objection—while also conducting rigorous philosophical and linguistic analysis of language use, such as the sociolinguistic phenomenon of 'our wife' (우리 마누라) in Korean. The lab emphasizes conceptual clarity, critical engagement with philosophical traditions, and the application of theoretical insights to real-world legal and social issues.
Professor Sun-woo Lee's research lab specializes in comparative politics, institutional design, and the interplay between political institutions, economic conditions, and regime stability in post-Soviet and East Asian contexts. The lab focuses on presidential and semi-presidential systems, examining institutional legitimacy, elite cohesion, and the impact of economic fluctuations on political support. It also explores civil society engagement, including social work in public institutions and political participation across democratic and authoritarian regimes.
Professor So Jeong Han's research lab focuses on translational hepatology and gastrointestinal oncology, with a strong emphasis on hepatocellular carcinoma (HCC) pathogenesis, drug delivery mechanisms, and novel therapeutic strategies. The lab investigates molecular signaling pathways—particularly YAP/TAZ and galectin-3—involved in liver fibrosis, cirrhosis, and cancer progression, integrating patient-derived models such as organoids and tumor spheroids to evaluate targeted therapies. They also explore minimally invasive endoscopic interventions for GI complications, including fistula and perforation repair using biomaterials like PGA sheets and fibrin glue. Their work bridges clinical hepatology with experimental therapeutics, aiming to improve outcomes in viral hepatitis, HCC, and cirrhotic cardiomyopathy.
Professor Hye-won Lee's research lab specializes in environmental and cognitive science, focusing on long-term water quality trend analysis in river systems and the cognitive processing of Korean words under varying visual conditions. The lab employs advanced statistical methods such as the Seasonal Mann-Kendall test and LOWESS, combined with spatial-temporal visualization techniques, to assess environmental changes in watersheds like Mangyung and Ssangyong. In parallel, the lab investigates language processing mechanisms, particularly word frequency and contextual priming effects in Korean, under both normal and degraded visual conditions, using behavioral experiments and eye-tracking methodologies. These interdisciplinary efforts aim to inform environmental policy and educational technology design.
Professor Jong-ik Chon's research lab specializes in constitutional law, human rights law, and environmental regulation, with a strong focus on the interplay between international human rights treaties and domestic constitutional interpretation. The lab explores the constitutional validity of legislative frameworks governing school violence prevention, campaign finance regulation, and carbon emission trading systems, emphasizing the balance between fundamental rights, state authority, and institutional accountability. It also investigates the domestic legal status of international treaties and administrative regulations, particularly in relation to constitutional principles such as separation of powers and the rule of law.
Professor Joo Whan Kim's research lab specializes in neurosurgical and neurological research, with a focus on stereotactic radiosurgery for brain metastases, spinal and cranial malformations, and the molecular classification of pediatric brain tumors. The lab investigates innovative surgical techniques—such as arthroscopic scaphoid excision and four-corner arthrodesis—and contributes to seismic monitoring following significant earthquakes in Korea. A key emphasis is on improving clinical outcomes through advanced molecular diagnostics, including NanoString-based subgrouping of medulloblastoma, to guide personalized treatment strategies.
Professor Jong Mi Park's research lab specializes in neurological rehabilitation and regenerative medicine, with a focus on neurodegenerative diseases such as Parkinson’s disease and stroke. The lab conducts systematic reviews and meta-analyses to evaluate the efficacy of emerging therapies, including probiotics, mesenchymal stem cells, robotic-assisted rehabilitation, and ultrasound-guided interventions. Their work emphasizes evidence-based approaches to improve motor function and quality of life in patients with spinal cord injury, Parkinson’s disease, and carpal tunnel syndrome. The lab integrates clinical neuroscience with advanced rehabilitation technologies to explore long-term outcomes and optimize non-invasive and regenerative treatment strategies.
Professor Ihoo Hoo's research lab specializes in the critical analysis of Joseon dynasty literature, particularly sijo poetry, through interdisciplinary lenses combining semiotics, critical theory, and cultural history. The lab explores the emergence of early capitalist consciousness, shifting moral and aesthetic values, and the interplay between power, subjectivity, and representation in 18th–19th century Korea. Key research directions include the semiotic analysis of textual subjectivities (e.g., rational vs. irrational economic actors), the role of desire and sexuality in literary representation, and the rethinking of modernity beyond nationalist binaries. The lab also investigates cross-cultural poetics, comparing Korean sijo with Japanese haiku to uncover shared aesthetic principles and divergent cultural logics.
Professor Amir Rizaan Abdul Rahiman's research lab specializes in Internet of Things (IoT) systems, with a focus on intelligent monitoring, computational offloading, and optimization in resource-constrained environments. The lab explores innovative solutions for real-time environmental monitoring—particularly in agricultural and industrial settings—through embedded IoT systems and edge intelligence. It also investigates high-performance computing applications, especially in simulating complex systems like multi-cultural crowd dynamics in large-scale religious gatherings. A key research direction involves enhancing system efficiency through advanced algorithms, including hybrid metaheuristics and data reduction techniques for minimizing latency in offloading and processing tasks.
Professor Eui-kyoung Seo's research lab specializes in cerebrovascular diseases, with a primary focus on aneurysmal subarachnoid hemorrhage, cerebral vasospasm, and their perioperative management. The lab investigates anesthetic techniques, lumbar drainage, and endovascular interventions to improve neurological outcomes. It also explores rare intracranial pathologies such as distal PICA aneurysms and granular cell tumors, emphasizing surgical outcomes and diagnostic accuracy. The research integrates clinical neurosurgery with advanced imaging and multidisciplinary treatment strategies for complex neurological conditions.
Professor Jaerim Choi's research lab specializes in international trade, industrial organization, and empirical IO with a focus on the microeconomic impacts of trade policy, global value chains, and firm-level labor market dynamics. The lab investigates how trade shocks—particularly from China and the U.S.—affect employment, industrial restructuring, and income distribution, with a strong emphasis on econometric methods for weak instruments and two-sample instrumental variables. Current research also explores the role of multinational enterprises in transferring gender norms and organizational practices across borders.
Professor Chang Hwa Ham's research lab specializes in spinal biomechanics, degenerative spinal disorders, and implant-related complications. The lab investigates the molecular mechanisms underlying intervertebral disc degeneration, focusing on inflammation, extracellular matrix remodeling, and angiogenesis in chronic back pain. It also explores surgical outcomes, implant stability, and complications such as metallosis in spinal instrumentation, particularly in growing rod systems. Additionally, the lab develops innovative biomechanical testing devices to study tissue responses under pathological stress conditions.
Professor Eleanor Jawon Choi's research lab specializes in labor economics, education economics, and family economics, with a strong focus on gender disparities, parental investment, and the long-term impacts of labor market conditions on life outcomes. The lab investigates how social preferences—particularly son preference—shape fertility decisions and parental investments, using rigorous quasi-experimental methods such as random assignment in school placement and natural experiments. It also explores the effects of macroeconomic shocks, such as financial crises, on individual welfare, family formation, and intergenerational mobility. The lab emphasizes empirical methods that address endogeneity and selection bias, particularly in educational and labor market settings.
Professor Sangchul Park's research lab focuses on host-microbe interactions, particularly the role of the human microbiome and microbial extracellular vesicles in metabolic diseases such as type 2 diabetes. The lab also investigates microbial pathogenesis in honeybees, especially foulbrood diseases caused by *Paenibacillus larvae* and *Melissococcus plutonius*, with an emphasis on discovering novel antimicrobial agents. Using integrative 'omics' and bioinformatic approaches—including phylogenetic tree-based microbiome association tests and genomic prediction models—the lab advances precision medicine and sustainable apiculture solutions.
Professor Hyejoo Chung's research lab specializes in the development and characterization of advanced thin films and nanostructured materials for electronic and biomedical applications. The lab focuses on physical vapor deposition techniques—such as magnetron sputtering and ion-beam deposition—to fabricate high-quality ferroelectric, conductive, and functional thin films with controlled crystallographic orientation and microstructure. Research spans materials for microelectronics (e.g., SrBi2Ta2O9), laser mirror coatings (e.g., Cu films), and the structural analysis of rare diseases like chronic neutrophilic leukemia, reflecting a multidisciplinary approach combining materials science, physics, and biomedicine. The lab also contributes to fundamental materials characterization through crystallographic data and ion source development for precision deposition systems.
Professor Sue Ryung Chang's research lab specializes in consumer behavior, digital marketing, and the impact of social and technological interactions on decision-making. The lab investigates how online social interactions, parasocial relationships in live streaming, brand influence on attribute weighting, and digital engagement through apps shape consumer loyalty, purchase intentions, and behavioral outcomes. A key focus is on understanding the psychological and behavioral drivers behind repeat usage, stickiness, and long-term engagement in digital and wellness platforms.
Professor Soo-young Kwon's research lab specializes in pastoral and clinical counseling within multicultural and trauma-informed contexts, integrating theological reflection, psychological science, and cultural hermeneutics. The lab focuses on the intersection of mental health, religious practice, and societal transformation, particularly in post-disaster recovery, immigrant integration, and the ethical implications of positive psychology in Korean Christian communities. Key research directions include the development of culturally responsive counseling models, the theological and psychological dimensions of trauma and memory, and the critical application of counseling theories to real-world pastoral challenges.
Professor Bae-Sun Seo's research lab specializes in medical artificial intelligence, focusing on the integration of deep learning and large language models (LLMs) into radiology and neurology for improved diagnostic accuracy and clinical decision support. The lab investigates multimodal AI applications—particularly using medical images and clinical text—to enhance the detection and quantification of neurological and reproductive health conditions, such as temporal lobe epilepsy, Parkinson’s disease, and early menopause. Key research directions include automated intracranial volume segmentation, AI-driven assessment of brain abnormalities, and the optimization of AI performance across varying input modalities and clinical contexts. The lab also emphasizes translational validation of AI models in real-world clinical settings to support personalized medicine and precision diagnostics.
Professor Joosung Song's research lab specializes in advanced functional materials and microelectromechanical systems (MEMS), with a focus on ferroelectric and piezoelectric thin films for next-generation electronic and energy applications. The lab investigates the integration of materials like PZT (lead zirconate titanate) and LiNbO₃ in tunable microwave devices, such as microstrip patch antennas and film bulk acoustic wave resonators (FBARs), enabling dynamic frequency control through electric fields. A parallel research direction explores the economic sustainability of fair trade models, analyzing how bundled product-donation systems can create market efficiencies when supplier investments enhance product quality or reduce costs. The lab combines materials science, device physics, and behavioral economics to develop smart, efficient, and socially responsible technologies.
Professor Ji-Hoon Song's research lab specializes in interdisciplinary studies spanning educational policy, open-source software evaluation, evolutionary biology of subterranean organisms, and acoustic analysis in marine engineering. The lab focuses on institutional reform in education, particularly through the lens of social equity and policy implementation, while also advancing methodological frameworks for software assessment and biodiversity research. Additionally, the lab conducts advanced computational and experimental research on noise control in ship HVAC systems, emphasizing structural acoustics and fluid-structure interaction. These diverse research directions reflect a strong commitment to addressing real-world challenges through evidence-based analysis and innovative technical modeling.