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 Heejeong Ko's research lab specializes in syntactic theory, particularly focusing on syntactic linearization, scrambling, and floating quantifiers within the framework of generative grammar. The lab investigates the interface between syntax and phonology, emphasizing cyclic linearization as a driving force in word order variation. It also explores cross-linguistic phenomena such as possesser-raising and the acquisition of articles in second language learners, especially in the context of Korean-English L2 acquisition. The lab combines theoretical analysis with experimental methods to examine syntactic constraints and processing mechanisms.
Professor Jaeha Kung's research lab specializes in energy-efficient and scalable neuromorphic computing architectures, focusing on 3D integrated systems that combine high-density memory with logic processing for AI workloads. The lab explores approximate computing techniques—particularly in multiplier design and bit-precision reduction—to minimize power consumption while maintaining acceptable accuracy in deep learning inference and training. Key research directions include memory-centric computing, hardware-software co-design for low-power neural network accelerators, and the application of dynamic fixed-point arithmetic in recurrent neural network training. The lab emphasizes practical, scalable solutions for real-world deployment of energy-aware AI systems.
Professor Chris Changwha Chung's research lab focuses on strategic management and international business in emerging markets, with a particular emphasis on institutional dynamics, foreign direct investment (FDI) policy reforms, and the strategic alignment of human capital in multinational enterprises (MNEs). The lab investigates how institutional volatility and complexity—especially in the aftermath of economic crises—impact the survival and performance of foreign subsidiaries, and explores adaptive and dysfunctional responses such as repeated ownership restructuring in international joint ventures. It also examines the role of global staffing strategies (e.g., parent and host country nationals) and real options implementation in enhancing subsidiary performance through experience and strategic alignment.
Professor Sang-woong Moon's research lab specializes in developing advanced nanomaterial-based biosensors and therapeutic strategies for ocular diseases, with a strong focus on diabetic retinopathy, age-related macular degeneration, and infectious diseases like COVID-19. The lab integrates nanotechnology, surface-enhanced Raman scattering (SERS), and deep learning to create highly sensitive, label-free detection platforms using 3D nanoarchitectures such as ZnO nanorods and molybdenum disulfide-supported gold nanoparticles. They also conduct clinical trials to evaluate novel therapeutics, including grape seed proanthocyanidin extract, for retinal diseases. Their interdisciplinary approach bridges materials science, ophthalmology, and biomedical engineering to enable early diagnosis and personalized treatment.
Professor Ji-ha Choi's research lab focuses on molecular mechanisms underlying human diseases, particularly those involving membrane transport proteins and their genetic variants. The lab investigates the functional impacts of genetic polymorphisms and mutations in genes such as CFTR, ABCB4 (MDR3), and MATE1, with a strong emphasis on their roles in cystic fibrosis, cholestatic liver diseases, and drug disposition. Using molecular, cellular, and in vivo models, the lab explores regulatory pathways involving transcription factors (e.g., AP-1, AP-2, STAT6) and post-translational mechanisms like autophagy-mediated protein clearance, especially in metabolic and inflammatory diseases. A central theme is translating genetic and biochemical findings into novel therapeutic strategies for complex disorders such as obesity-related cardiomyopathy and chronic inflammatory conditions.
Professor Jaeyong Lee's research lab specializes in Bayesian nonparametric statistics, with a focus on developing flexible statistical models for complex data structures such as censored, truncated, and ordinal data. The lab emphasizes the creation of computationally efficient Markov chain Monte Carlo (MCMC) algorithms and the use of nonparametric priors—particularly neutral to the right (NTR) processes, Dirichlet processes, and related stochastic processes—for modeling baseline distributions and selection mechanisms. The lab also applies these methods to real-world problems in biostatistics, environmental science, and pharmaceutical research, integrating semiparametric modeling and robust inference. A key strength lies in the development of interpretable, scalable Bayesian methods that balance flexibility with computational feasibility.
Professor Sung-Joo Hwang's research lab specializes in the design and synthesis of advanced nanomaterials for energy and biomedical applications. Key research directions include the development of quantum dot-semiconductor heterostructures for efficient solar energy conversion, particularly hydrogen production under visible light, and the engineering of 2D/3D hybrid systems for stem cell culture and regenerative medicine. The lab also focuses on creating high-surface-area, stable photocatalysts and electrocatalysts using layered titanate and graphene-based nanocomposites, with applications in environmental remediation and clean energy technologies.
Professor Jungjae Park's research lab specializes in paleoclimatology and climate modeling, focusing on Holocene climate dynamics, particularly abrupt climate changes and the Holocene Climate Optimum in East Asia. The lab employs high-resolution multi-proxy records—such as pollen, grain size, and geochemical indicators—from coastal and terrestrial archives to reconstruct past climate variability and understand the role of large-scale oceanic and atmospheric systems like the Atlantic Meridional Overturning Circulation. The lab also contributes to global climate data synthesis through large-scale datasets like LegacyClimate 1.0, enhancing model-data comparisons and addressing the 'Holocene conundrum'.
Professor Dae-ryong Cha's research lab focuses on the molecular mechanisms underlying diabetic complications, particularly diabetic nephropathy and fibrotic diseases. The lab investigates inflammatory and fibrotic pathways involving key mediators such as MCP-1, NF-κB, and retinoic acid signaling, with a strong emphasis on identifying therapeutic targets. Current research explores the renoprotective and antifibrotic effects of drugs like spironolactone, PPARγ agonists, and albumin-derived fusion proteins in preclinical models. The lab also examines the role of immune cell infiltration and cellular signaling in organ fibrosis, aiming to translate findings into clinical applications for diabetic and renal diseases.
Professor Jun Sung Kim's research lab specializes in biomedical engineering and regenerative medicine, focusing on innovative solutions for clinical challenges. The lab investigates tissue engineering using bioactive extracellular matrix hydrogels for in situ regeneration, particularly in adipose tissue repair. It also explores advanced monitoring techniques such as near-infrared spectroscopy (NIRS) for early detection of complications in critical care, including limb ischemia in ECMO patients. Additionally, the lab examines the impact of technological and policy interventions—such as innovation districts and public institution relocations—on regional economic and industrial development.
Professor Kim Gon's research lab specializes in sustainable building design and environmental performance, with a strong focus on indoor environmental quality, energy efficiency, and light pollution mitigation. The lab investigates advanced machine learning applications for optimizing daylighting and thermal performance in buildings, while also exploring innovative façade systems such as double-skin façades to balance aesthetics, energy use, and occupant comfort. A key research direction involves the development and analysis of regulatory frameworks for artificial lighting, particularly in urban environments like Seoul, to reduce light pollution and its impacts on human health and ecosystems.
Professor Sung Ho Lee's research lab specializes in cardiovascular disease research, with a focus on arrhythmias, structural heart disease, and vascular pathologies such as abdominal aortic aneurysms and stent graft infections. The lab investigates diagnostic strategies, risk factors, and hemodynamic mechanisms underlying conditions like lone atrial fibrillation, neurally mediated syncope, and post-implantation complications. Using noninvasive hemodynamic monitoring, ECG analysis, and advanced imaging techniques like CT and PET, the lab aims to improve early detection and risk stratification in cardiac patients. Their work bridges clinical cardiology with advanced diagnostic imaging and physiological monitoring to enhance patient outcomes in complex cardiovascular conditions.
Professor Jihun Lee's research lab specializes in next-generation neural interface systems and implantable biomedical microsystems, focusing on wireless, scalable, and miniaturized solutions for brain-computer interfaces. The lab develops autonomous, sub-millimeter-sized sensor chips—'Neurograins'—that enable bidirectional neural communication through advanced wireless power and data transmission. Key research directions include electromagnetic coupling for efficient transcutaneous power transfer, code-division multiple-access networking for sparse event-driven data collection, and advanced packaging technologies for high-performance integration. The lab also explores applications in high-performance computing and energy-efficient interposers, demonstrating a strong interdisciplinary focus on microelectronics and biomedical engineering.
Professor Gwang-Hum Bae's research lab specializes in neurosurgical disorders, with a focus on intracranial hemorrhage, traumatic brain injuries, and spinal surgery. The lab investigates clinical outcomes, prognostic markers, and surgical techniques for conditions such as chronic subdural hematoma, pectoralis major ruptures, and basal ganglia hemorrhage. Key research directions include the impact of brain atrophy on stroke recovery, the role of biomarkers like copeptin in predicting stroke outcomes, and innovative surgical approaches such as the transsphenoidal supradiaphragmatic intradural technique for pituitary lesions. The lab emphasizes evidence-based surgical strategies and patient-centered outcomes in neurosurgical practice.
Professor Jin-Young Bak's research lab specializes in computational social science and natural language processing, focusing on understanding human behavior through large-scale textual data. The lab investigates self-disclosure, emotional expression, and interpersonal relationships in online conversations using machine learning and text mining techniques. It also explores applications in occupational safety through computer vision and deep learning, particularly in monitoring worker behavior on construction sites. Additionally, the lab engages in historical and literary studies, analyzing translation practices and cultural impacts in early 20th-century Korea.
Professor Soo-hyuk Hwang's research lab focuses on the molecular mechanisms regulating T cell differentiation and immune homeostasis, with a particular emphasis on transcriptional and post-transcriptional regulation of T helper cell subsets. The lab investigates key regulatory factors such as BTG1/2, YY1, and the Th2 locus control region in maintaining T cell quiescence and orchestrating coordinated cytokine gene expression. Additionally, the lab explores how microbial metabolites and signaling molecules modulate innate and adaptive immune responses, contributing to inflammation and autoimmunity. Their work integrates molecular immunology, epigenetics, and in vivo disease models to uncover therapeutic targets for immune disorders.
Professor Keun Yong Eom's research lab focuses on translational oncology, particularly in breast and gynecologic cancers, with an emphasis on identifying molecular prognostic markers and improving treatment outcomes. The lab investigates key signaling pathways such as MAPK and PI3K/AKT in invasive breast cancer, explores biomarkers like PTEN, CA9, and CA12 for lymph node metastasis, and evaluates novel radiotherapy strategies including SABR and chemoradiotherapy. A strong focus is placed on clinical applications, including breast-conserving therapy outcomes and the impact of surgical techniques on patient prognosis.
Professor Yu Jin Lee's research lab focuses on mental health and psychological resilience among marginalized populations, particularly North Korean refugees, with an emphasis on insomnia, trauma, and attentional functioning. The lab also investigates public health interventions, such as cardiopulmonary resuscitation (CPR) programs, and explores the sociopolitical dimensions of social welfare policies, including childbirth incentive programs. Additionally, the lab engages in cultural studies, notably the literary and artistic analysis of Korean traditional and contemporary art forms such as pansori, especially creative works like *Yeosujeon*.
Professor Kwon-Duk Seo's research lab specializes in cerebrovascular diseases, with a focus on the pathophysiology and clinical implications of cerebral ischemia, particularly in the posterior circulation. The lab investigates imaging biomarkers such as fluid-attenuated inversion recovery hyperintense vessels (FHVs) and their role in predicting stroke severity and outcomes. Research also extends to risk factors like anemia and their impact on ischemic stroke incidence and mortality, utilizing large-scale national health insurance data. Additionally, the lab explores neurovascular repair mechanisms, including the role of nerve growth factor in angiogenesis, suggesting translational potential in stroke recovery.
Professor Hyun Chul Lim's research lab focuses on gastrointestinal motility disorders and the development of novel therapeutic strategies for functional dyspepsia and Helicobacter pylori-related diseases. The lab investigates the efficacy and safety of prokinetic agents such as itopride and mosapride in modulating gastrointestinal motility and improving symptoms. Additionally, the lab explores innovative medical technologies, including wireless drone charging stations, reflecting a multidisciplinary approach to improving clinical and technological healthcare solutions.