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 Sueun Chae's research lab specializes in translational oncology, focusing on identifying predictive and prognostic biomarkers in prostate and breast cancer. The lab integrates artificial intelligence in digital pathology with liquid biopsy technologies, such as circulating tumor DNA (ctDNA), to improve the accuracy and objectivity of cancer prognosis and treatment response prediction. Key research directions include AI-based quantification of tumor-infiltrating lymphocytes (TILs) and the development of non-invasive monitoring strategies for intermittent androgen deprivation therapy in prostate cancer.
Professor Ho-kyung Ryu's research lab specializes in innovation and design thinking, with a strong focus on human-centered design, intellectual property analysis, and competency-based training in healthcare. The lab explores how diverse cognitive styles—such as those observed in individuals with Asperger’s syndrome—can drive innovation in collaborative design processes. It also conducts quantitative analysis of patents, particularly in the areas of design and technology integration, to inform strategic R&D and training program development.
Professor Hyun-Kyeom Park's research lab specializes in surgical oncology and advanced abdominal surgery, with a focus on rare and complex gastrointestinal malignancies, including hepatoid adenocarcinoma, acinar cell carcinoma of the pancreas, and gallbladder tumors. The lab investigates diagnostic challenges, surgical management, and prognostic factors in these rare neoplasms, often emphasizing the role of immunohistochemistry and imaging in accurate diagnosis. Additionally, the lab explores innovative surgical techniques and biomaterials for urological and hepato-biliary reconstruction, such as the use of bovine pericardium in bladder repair and surgical treatment of polycystic liver disease.
Professor Sun-Mi Lee's research lab specializes in mathematical modeling and systems analysis of infectious disease dynamics, with a focus on understanding transmission patterns, intervention effectiveness, and host-pathogen interactions. The lab develops quantitative models to evaluate public health strategies for diseases such as malaria, tuberculosis, HIV, influenza, and COVID-19, integrating epidemiological data with biological mechanisms. Research also extends to bioactive compound discovery, particularly from plant sources, for applications in dermatological and biomedical fields. The lab emphasizes data-driven modeling to inform policy and improve disease control.
Professor Hyunchan Song's research lab focuses on identifying and developing natural compounds from plants as alternative therapeutics for microbial diseases affecting honeybees and human pathogens. The lab investigates antibacterial and antifungal agents targeting major bee pathogens such as *Paenibacillus larvae* (causing American foulbrood) and *Nosema ceranae* (causing nosemosis), with an emphasis on biofilm inhibition, spore disruption, and host-pathogen interactions. Using in vitro models like *Trichoplusia ni* cell lines, the lab evaluates the efficacy and molecular mechanisms of plant-derived compounds, including liriope muscari extract, pimaric acid, honokiol, and *Akebia quinata* extract. The research aims to discover low-toxicity, sustainable alternatives to antibiotics in response to growing antimicrobial resistance.
Professor Jin Sik Beom's research lab specializes in advanced wound healing techniques, particularly in challenging clinical scenarios involving complex soft tissue and bone defects. The lab focuses on innovative, minimally invasive surgical approaches for skin and scalp reconstruction, including the use of vascularized flaps, full-thickness skin grafts, and novel implant management techniques. Key research directions include optimizing outcomes in pediatric and neonatal wound healing, improving cosmetic results in cyst removal, and enhancing the safety and precision of implant-based reconstructions in maxillofacial and orbital surgery.
Professor Chang-Soo Ryu's research lab specializes in advanced signal processing and intelligent system design, with a strong focus on sensor array signal processing, adaptive filtering, and smart device applications. The lab explores innovative algorithms for source localization and target tracking using linear and arbitrary-shaped sensor arrays, particularly in challenging environments such as near-field conditions. It also investigates performance optimization in mobile computing, including audio processing on smartphones and scalable database architectures for real-time online gaming services. The lab bridges theoretical signal processing with practical engineering solutions, emphasizing robustness, efficiency, and real-world deployability.
Professor Sungyeon Seo's research lab specializes in clinical pharmacology and anticoagulation therapy, with a focus on optimizing anticoagulant management in vulnerable patient populations. The lab investigates the pharmacokinetics and safety of direct oral anticoagulants like edoxaban in patients with renal impairment and low body weight, aiming to improve individualized dosing strategies. Additional research directions include the use of time-in-therapeutic-range (TTR) as a predictor for post-discharge anticoagulation outcomes, particularly in patients following acute coronary syndromes. The lab integrates clinical data and real-world evidence to enhance patient safety and treatment efficiency.
Professor Hai-Hoon Choi's research lab specializes in developmental psychology, with a primary focus on early emotional and social development in infants. The lab investigates mother-infant attachment, emotional regulation, and the interplay between caregiving behaviors and infant temperament in Korean cultural contexts. Using standardized observational methods such as the Strange Situation Procedure and the Infant & Caregiver Engagement Phases (ICEP), the lab examines how attachment security and emotional regulation strategies emerge and interact during critical developmental periods. The research emphasizes cross-cultural comparisons and the identification of culturally specific patterns in infant-caregiver relationships.
Professor Ilshang Jin's research lab specializes in German and Korean literature, with a focus on intellectual history, literary theory, and the cultural impact of media transformations. The lab explores Enlightenment thought, particularly its intersections with German Romanticism and key literary figures such as Heinrich von Kleist, examining themes like moral vocation, self-cultivation (Bildung), and the perception of reality through vision and representation. It also investigates the enduring significance of the printed book in the digital age, especially in the context of cultural identity and international literary exchange.
Professor Junoh Ryu's research lab specializes in wearable biometric systems and multimodal authentication, focusing on developing low-power, secure, and user-friendly devices for real-world applications. The lab integrates advanced sensing technologies—such as multispectral skin photomatrix (MSP) and electrocardiogram (ECG)—into compact wearable platforms to enhance biometric collectability, performance, and resistance to spoofing. Key research directions include hardware-software co-design for efficient signal processing, privacy-preserving biometric systems, and the development of next-generation wearable health and security devices. The lab emphasizes practical deployment of biometric systems with strong security and usability, particularly in mobile and continuous authentication scenarios.
Professor Tae-Hoon Kim's research lab specializes in applying advanced deep learning and artificial intelligence techniques to solve complex problems across diverse scientific and social domains. The lab focuses on developing data-driven models for image restoration and enhancement—particularly in astronomy—using innovative transformer architectures and convolutional neural networks. It also explores applications in energy demand forecasting, social science research on international students, and biomedical microfluidics for detecting bacterial chemotaxis. A recurring theme is the integration of domain-specific knowledge with cutting-edge AI to create robust, interpretable, and high-impact solutions.
Professor Chang Yong Sohn's research lab specializes in historical phonology and theoretical phonology, with a primary focus on sound change in the English language, particularly in Old and Middle English. The lab investigates phenomena such as vowel lengthening, diphthongization, vowel deletion, and syllable structure changes using the framework of Optimality Theory, emphasizing constraint interactions and typological compatibility. Key research directions include the phonological motivation behind quantitative changes, the role of prosodic structure in historical sound shifts, and the theoretical unification of seemingly divergent sound changes through constraint-based modeling.
Professor Sin-Woo Lee's research lab specializes in advanced smart materials and electromechanical systems, with a primary focus on developing all-organic ionic polymer actuators for flexible and lightweight robotics and biomedical applications. The lab explores novel conducting polymers, such as polyaniline, as sustainable alternatives to traditional metal electrodes, aiming to enhance actuator performance, durability, and cost-effectiveness. Key research directions include the design of tri-layer actuators using anion exchange membranes, dynamic modeling of smart materials, and the integration of finite element analysis for predicting real-world performance. The lab also investigates rotordynamics and vibration behavior in high-speed systems, particularly in compact generators for hybrid electric vehicles.
Professor Young-Bong Bang's research lab specializes in advanced mechatronic systems and intelligent imaging technologies, focusing on anthropomorphic robotics and next-generation radiation detection. The lab develops bio-inspired oculomotor systems with 3-DOF motion for humanoid robots to enable human-like visual behavior, while also pioneering dual-particle imaging systems using scintillation detectors and rotational modulation collimators for enhanced medical and security applications. Research spans from mechanical design and control systems to real-time data acquisition and simulation-based optimization. The lab emphasizes interdisciplinary innovation, merging robotics, sensor technology, and computational imaging.
Professor Jaewoo Park's research lab specializes in statistical modeling and machine learning for complex spatio-temporal systems, with a focus on public health, environmental science, and biomedical applications. The lab develops advanced Bayesian and deep learning methods to address challenges in data-scarce or computationally intensive settings, such as doubly intractable inference, uncertainty quantification, and dynamic emission modeling. Key research directions include modeling disease spread (e.g., COVID-19), wildfire air quality forecasting, and clinical outcomes in neurovascular interventions. The lab also explores biological resilience mechanisms in hibernating animals to inform human health and countermeasure development for long-duration spaceflight.
Professor Seobin Han's research lab specializes in comparative political economy, with a focus on how economic insecurity—driven by unemployment, globalization, and technological change—influences public preferences for social policy. The lab investigates the psychological and emotional mechanisms, such as anger and fear, that mediate responses to historical trauma and economic threats, particularly in East Asian contexts. Research spans survey experiments and large-scale data analysis to examine the interplay between subjective economic perceptions and demands for redistribution, distinguishing between social consumption and social investment policies. The lab also explores how institutionalized memories of historical violence shape contemporary political attitudes and national identity.
Professor Hohyeon Ryu's research lab specializes in trans-regional cultural studies with a focus on East Asian digital subcultures, particularly Boys' Love (BL) literature and web-based storytelling ecosystems. The lab investigates the evolution of genre landscapes, platform dynamics, and the industrialization of online content—especially in Chinese and East Asian web novels and webtoons—while analyzing shifting representations of gender, sexuality, and family roles in digital media. The research also explores the socio-cultural implications of IP (intellectual property) development in the context of China’s growing influence in global digital content production.
Professor Chihyo In's research lab specializes in human-centered design innovation, focusing on the integration of emerging digital technologies—such as ubiquitous computing, IoT, and additive manufacturing—into product and spatial design. The lab explores conceptual design methodologies, user-driven innovation, and the alignment of brand identity with product identity in future-oriented design systems. It also emphasizes the evolution of design education in response to Industry 4.0, particularly through immersive, technology-integrated curricula that bridge conceptual thinking and hands-on prototyping.
Professor Chae Ri Kim's research lab specializes in medical imaging and artificial intelligence applications in radiology, with a strong focus on advancing AI literacy and education among radiology residents. The lab also explores traditional Korean shamanistic practices—particularly ritual performances like *sinbakkum-gut* and *nokdungbaegi*—through ethnographic fieldwork, examining their cultural significance, intergenerational transmission, and adaptation in contemporary society. Additionally, the lab investigates image reconstruction techniques in low-dose CT imaging to improve diagnostic accuracy in pulmonary disease assessment. These diverse yet interconnected research directions reflect a commitment to bridging medical technology with cultural heritage.