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 Min-Soo Kim's research lab specializes in computational modeling and data-driven approaches to solve complex problems in fluid dynamics, drug discovery, and organizational behavior. The lab develops advanced numerical methods—such as VOF-based algorithms for free surface flow simulation—and applies deep generative models, including conditional variational autoencoders, to design novel drug candidates with desired biological activities. Additionally, the lab investigates psychological and social dynamics in the workplace, focusing on job crafting, leader-member relationships, and value alignment in team settings. These interdisciplinary efforts integrate computational science, machine learning, and behavioral research to address challenges in engineering, biomedicine, and human resource management.
Professor Sung Wook Lee's research lab specializes in clinical and diagnostic neuroscience, with a primary focus on vestibular disorders, cerebrovascular diseases of the posterior circulation, and intracranial tumors involving the auditory and vestibular pathways. The lab investigates the pathophysiology of Meniere’s disease, dorsal medullary infarction, and intralabyrinthine schwannoma through advanced neuro-otological testing, including caloric and head-impulse testing, as well as neuroimaging and angiographic analysis. Key research directions include the characterization of vestibular dysfunction during acute phases of disease, the role of collateral circulation in posterior circulation stroke outcomes, and the differential diagnosis of vestibular and auditory pathologies using quantitative and qualitative clinical assessments.
Professor Hyobin Jeong's research lab focuses on understanding the molecular and cellular mechanisms underlying neurodegenerative diseases, cancer progression, and cellular metabolism through integrative multi-omics approaches. The lab investigates key regulatory networks in neuronal and metabolic homeostasis, with a particular emphasis on protein toxicity, mitochondrial dysfunction, and somatic structural variations in disease. Using advanced single-cell and systems biology techniques, the lab explores disease mechanisms in model organisms and patient-derived models, aiming to identify novel therapeutic targets and strategies.
Professor I Seok Kim's research lab specializes in musculoskeletal and orthopedic imaging, with a focus on applying artificial intelligence and advanced medical imaging techniques to improve diagnostic accuracy and surgical outcomes. The lab investigates musculoskeletal disorders such as osteoporosis, arthritis, and hip fractures, integrating radiology reports and medical imaging data to enhance disease classification and treatment planning. A key research direction involves optimizing regional anesthesia techniques, particularly ultrasound-guided nerve blocks, to improve safety and efficacy in orthopedic surgery. The lab also conducts large-scale observational studies to compare the long-term effectiveness and safety of osteoporosis medications.
Professor Tae Gyun Kim's research spans diverse interdisciplinary domains, including dermatological laser therapy and melanoma treatment, with a focus on clinical outcomes and molecular mechanisms in skin cancer. His work also extends to robotics and control systems, particularly in wall-cleaning robotics using impedance control for stable force tracking. Additionally, he contributes to international development policy, analyzing accountability mechanisms in global development cooperation, especially in multilateral development banks and civil society engagement. His research reflects a strong commitment to both clinical innovation and institutional accountability in global health and development.
Professor Wan Song's research lab specializes in urological oncology, with a primary focus on prostate cancer management, including surgical outcomes, biomarker discovery, and advanced imaging techniques. The lab investigates preoperative and postoperative predictors of urinary continence using high-field MRI, explores molecular biomarkers like ERG and SOX9 for treatment response in metastatic castration-resistant prostate cancer, and evaluates minimally invasive and salvage therapies such as robotic-assisted radical prostatectomy and high-intensity focused ultrasound. The lab also addresses rare urological conditions, such as penile abscesses, emphasizing clinical outcomes and multidisciplinary management.
Professor Seungjin Yoo's research lab specializes in advanced materials and energy-efficient technologies, with a focus on developing novel electron transport materials for organic optoelectronic devices, such as phosphorescent OLEDs. The lab also explores low-power electronics, particularly using amorphous oxide semiconductors like a-IGZO thin-film transistors for next-generation displays. Additionally, the lab investigates intelligent medical imaging solutions, including deep learning-based analysis of chest CT scans and elastography for musculoskeletal diagnostics. A key theme across the research is the integration of smart materials, energy efficiency, and AI-driven diagnostics to address challenges in healthcare and sustainable electronics.
Professor Yoo-Mi Son's research lab specializes in diagnostic radiology, with a focus on improving the accuracy of medical imaging in breast and thyroid diseases. The lab investigates ultrasound and mammographic criteria for differentiating benign from malignant lesions, evaluates the role of elastography and thyroid function markers in fine-needle aspiration, and explores long-term outcomes of image-guided interventions. A key emphasis is on reducing diagnostic discrepancies between radiologic assessments and histopathologic findings through quantitative imaging and clinical correlation.
Professor Myung Jae Park's research lab focuses on respiratory and inflammatory diseases, with a primary emphasis on chronic obstructive pulmonary disease (COPD), neutrophilic inflammation, and acute respiratory complications such as tumor lysis syndrome. The lab investigates the pathophysiological roles of neutrophils, including autophagy and NETosis, in sepsis and airway inflammation, as well as the therapeutic potential of CXCR2 antagonists in modulating neutrophilic responses. Additionally, the lab explores biomarkers and molecular mechanisms underlying lung tissue remodeling, particularly involving matrix metalloproteinases (MMPs) and their inhibitors in smoking-related lung damage.
Professor So Won Oh's research lab specializes in molecular imaging and targeted radionuclide therapy, with a primary focus on prostate cancer and neuroendocrine neoplasms. The lab investigates novel radiotracers—particularly PSMA- and SSTR2-targeted agents—for improved diagnosis and treatment monitoring in prostate cancer, including challenging subtypes like neuroendocrine prostate cancer. They also explore theranostic applications of radiohybrid PSMA ligands and evaluate diagnostic accuracy of imaging modalities such as FDG PET/CT in thyroid cancer. Their work bridges molecular biomarker discovery with clinical translation in nuclear medicine.
Professor Juwon Kang's research lab focuses on interdisciplinary biomedical and environmental sciences, with key research directions in cancer pharmacology, nanoscale optical phenomena, environmental health, and water resource recovery. The lab investigates bioactive compounds from natural sources—such as Ginkgo biloba—for their anticancer mechanisms, particularly in oral cancer. It also explores nanoplasmnic effects for advanced optical applications and examines environmental factors, including air pollutants and vitamin D status, in relation to chronic diseases like atopic dermatitis and respiratory conditions. Additionally, the lab develops sustainable water treatment technologies, such as ozone-UV systems, for efficient reuse of sewage effluent.
Professor TaeKyun Kim's research lab specializes in advanced data analysis and pattern recognition, with a strong focus on multilinear algebra, tensor-based methods, and statistical learning for complex data structures. The lab develops innovative techniques such as tensor canonical correlation analysis (TCCA) and locally linear discriminant analysis (LLDA) to address challenges in image and video recognition, particularly in modeling spatiotemporal variations and nonlinear manifolds. Research also extends to number theory, including p-adic q-special functions and Euler-type numbers, reflecting a unique interdisciplinary approach combining applied mathematics with machine learning. The lab emphasizes robust, efficient, and principled methods for real-world applications in computer vision, action recognition, and data-driven modeling.
Professor Haejin Park's research lab specializes in radiation oncology, with a strong focus on stereotactic body radiotherapy (SBRT) for recurrent and metastatic cancers, particularly in uterine cervical cancer and spinal metastases. The lab investigates advanced radiotherapy techniques to improve local control and survival while minimizing toxicity, with an emphasis on functional imaging for personalized treatment planning. They also explore prognostic factors and treatment optimization in breast cancer, especially in the context of post-mastectomy radiotherapy and hypofractionated regimens.
Professor Kyunghee So's research lab focuses on curriculum development and reform in comparative and international education contexts, with a central emphasis on competency-based education frameworks. The lab explores how subject-specific competencies are conceptualized and implemented in national curricula, drawing on international case studies from countries such as Canada, the UK, Germany, New Zealand, and Australia. Research directions include the transformation of traditional subject-centered curricula into competency-oriented models, the practical implementation of these reforms in classrooms, and the role of pedagogical knowledge in shaping effective teaching practices. The lab also investigates the systemic challenges and innovations involved in national curriculum reforms, particularly in knowledge-based societies.
Professor Hoon Choi's research lab focuses on interdisciplinary biomedical and engineering research, spanning tissue engineering, drug delivery systems, and environmental toxicology. The lab investigates advanced hydrogels for regenerative medicine and smart delivery applications, while also exploring exposure risks of agricultural pesticides in occupational settings. Additionally, the lab contributes to understanding immune-microbiota interactions in inflammatory diseases, particularly through molecular regulators like Ninjurin1 in colonic homeostasis. The integration of materials science, biomedical engineering, and environmental health defines the lab’s innovative approach to translational research.
Professor Donghee Choi's research lab specializes in synthetic biology and microbial engineering, focusing on designing and optimizing minimal and genome-reduced bacterial systems for improved biotechnological applications. The lab investigates how genome reduction and adaptive laboratory evolution reshape microbial metabolism and phenotypes, aiming to overcome intrinsic limitations in recombinant protein production and synthetic pathway efficiency. By integrating multi-omics approaches such as RNA-Seq and ChIP-Seq, the lab uncovers molecular mechanisms underlying cellular fitness and metabolic rewiring, with translational goals in healthy aging and microbiome-based therapeutics.
Professor Minjeong Kim's research lab specializes in psychological and behavioral sciences, with a primary focus on self-concept, leadership, and well-being in sports and educational contexts. The lab investigates the interplay between self-leadership, servant leadership, and psychological outcomes such as self-esteem, life satisfaction, and mental health. It also explores the role of perceived value and service environment in sports spectatorship and fan loyalty. The research employs advanced statistical methods, including structural equation modeling and cluster analysis, to examine mediating and moderating effects in psychological and behavioral relationships.
Professor Yong Wook Kim's research lab specializes in electrochemical energy conversion and sustainable chemical synthesis, with a focus on carbon dioxide reduction and advanced electrocatalysis. The lab develops novel electrocatalysts and electrode architectures—such as immobilized molecular catalysts and electrospun fibrous materials—for efficient CO2RR and redox flow batteries. Key research directions include understanding the role of catalyst morphology and aggregation in electrocatalytic performance, designing high-surface-area yet permeable electrodes for high-current-density operation, and integrating electrochemical CO2 capture and conversion into closed-loop systems. The lab also explores the application of advanced imaging and spectroscopy techniques to probe reaction mechanisms in real time.
Professor Dong Joon Ko's research lab specializes in environmental catalysis and advanced materials for air pollution control, with a strong focus on the removal of hazardous pollutants such as NOx, elemental mercury (Hg⁰), and carbon monoxide (CO). The lab develops innovative catalysts and adsorbents—ranging from modified zeolites and transition metal oxides to novel CuCl/θ-Al₂O₃ systems—designed for high efficiency and stability under real flue gas conditions. Key research directions include low-temperature NOx abatement using V₂O₅/TiO₂ and H-Y zeolite composites, plasma-catalysis integration for enhanced oxidation, and sustainable synthesis of functional materials for selective pollutant capture and conversion.
Professor Shin Hyunsook's research lab specializes in nursing education and evidence-based practice, with a strong focus on enhancing clinical competencies through innovative teaching methods. The lab investigates the effectiveness of active learning strategies—particularly high-fidelity simulation and case-based learning—on nursing students’ clinical decision-making, self-confidence, and critical thinking. It also conducts rigorous validation of educational tools and evaluates trends in nursing research to strengthen the evidence base in nursing science. The lab’s work consistently emphasizes student-centered learning, patient safety, and the integration of simulation in clinical training.