首尔大学、KAIST、延世大学等韩国QS前10名大学的研究室信息。
Professor Wooju Lee's research lab specializes in statistical methodology and data science applications in health and biomedical research, with a strong focus on developing and refining analytical techniques for complex, high-dimensional, and dependent data structures. The lab's work spans statistical inference in diagnostic test evaluation, machine learning for clinical prediction modeling in cardiovascular disease, sparse and regularized methods for genomics, and collective risk modeling in actuarial science. A recurring theme is the development of robust, interpretable, and computationally efficient statistical models that address real-world challenges in medicine, public health, and biostatistics.
Professor Joo-Yeon Yoo's research lab focuses on host-pathogen interactions, particularly the molecular mechanisms underlying innate immune responses to viral infections and the role of post-translational modifications in regulating antiviral signaling. The lab also investigates cellular stress responses, including autophagy and protein degradation pathways, in viral pathogenesis and cancer progression. Additionally, they develop advanced 3D in vitro models of human tissues, such as alveolar barriers, to study disease mechanisms and drug responses in physiologically relevant environments. Their work bridges molecular virology, cell biology, and bioengineering to uncover novel therapeutic targets and platforms for infectious and chronic diseases.
Professor Kee-Won Kwon's research lab specializes in advanced materials and device physics for microelectronics and thin-film transistor technologies. Key research directions include the development of high-performance amorphous oxide semiconductors—particularly a-GIZO (amorphous gallium-indium-zinc oxide)—for transparent and flexible electronics, with a focus on optimizing electrical properties, interface engineering, and reliability. The lab also investigates metallization challenges in integrated circuits, such as electromigration in Cu interconnects and interfacial reactions in barrier layers like Ta and Ta₂O₅, aiming to enhance device performance and thermal stability. Their work bridges fundamental materials science with practical applications in next-generation semiconductor devices.
Professor Song Mi Moon's research lab specializes in clinical infectious diseases, with a primary focus on bacterial and viral pneumonia, particularly in critically ill adult patients. The lab investigates the impact of various pathogens—including *Staphylococcus aureus*, *Pseudomonas aeruginosa*, and *Streptococcus pneumoniae*—on disease severity and treatment outcomes in intensive care settings. Key research directions include optimizing antibiotic therapy duration, evaluating the role of empirical combination therapy, and assessing adjunctive treatments such as corticosteroids in severe infections. The lab also explores antimicrobial resistance, including heteroresistant vancomycin-intermediate *S. aureus* (hVISA), and the clinical significance of low-virulence pathogens like *Propionibacterium acnes* bacteremia.
Professor Sung Soo Ahn's research lab specializes in diagnostic and prognostic radiology, with a focus on advanced medical imaging techniques and radiomics for accurate tumor characterization. The lab investigates the role of molecular imaging biomarkers—such as Ktrans and gadoxetic acid-enhanced MRI—in predicting tumor behavior and treatment response, particularly in glioblastoma and hepatocellular carcinoma. A key direction involves integrating machine learning and deep learning models with radiomic features to differentiate brain tumors and improve diagnostic precision. The lab also emphasizes the clinical translation of imaging findings in alignment with modern molecular tumor classifications, such as the 2021 WHO classification of central nervous system tumors.
Professor Donghan Kim's research spans diverse fields including biomedical engineering, robotics, smart grid technologies, and gerontological health sciences. His lab focuses on innovative solutions in orthopedic surgery outcomes for pediatric cerebral palsy, developing intelligent robot-soccer systems using multi-agent control and machine learning, advancing power line inspection robotics with predictive tracking algorithms, and exploring psychosocial determinants of travel behavior in older adults. The lab integrates clinical research, robotics, and data-driven modeling to address real-world challenges in healthcare and energy infrastructure.
Professor Jihyung Lee's research lab specializes in intelligent systems and data-driven optimization, focusing on real-world applications of machine learning, particularly in traffic control, energy management, and industrial scheduling. The lab develops advanced algorithms such as fuzzy logic controllers, federated learning with privacy preservation, and reinforcement learning for complex decision-making in dynamic environments. A key emphasis is placed on integrating domain expertise and practical constraints to ensure that clustering and optimization results are not only statistically sound but also applicable in real-world systems like smart cities and smart factories. The lab combines theoretical innovation with simulation-based performance evaluation to address challenges in scalability, data privacy, and system adaptability.
Professor Eul-Geol Im's research lab specializes in cybersecurity and malware analysis, with a focus on developing advanced detection techniques for evolving cyber threats. The lab explores dynamic and static analysis methods to identify malware, particularly ransomware and packed executables, using innovative approaches such as malware visualization and AI-driven traffic analysis. Research also extends to detecting malicious web crawlers by leveraging traffic pattern analysis based on power-law distributions. The lab emphasizes real-time, efficient, and accurate detection in complex, high-volume network environments.
Professor Dum-Sik Hwang's research lab specializes in biogeochemistry and marine organic matter cycling, with a focus on understanding the sources, transformations, and fate of particulate and sedimentary organic carbon in marine environments. The lab investigates the isotopic signatures (particularly radiocarbon and stable carbon isotopes) of organic matter fractions to trace the origins and diagenetic processing of oceanic particulate organic carbon, especially the uncharacterized or acid-insoluble fraction. Key research directions include the role of lithogenic particles in transporting aged organic carbon, the dynamics of carbon export in polar and deep-sea systems such as the Arctic and Southern Oceans, and the interplay between biological productivity, particle flux, and carbon sequestration. The lab also explores the fundamental properties of biomolecules, such as DNA, through nanoscale electrical transport measurements, bridging marine biogeochemistry with molecular-scale physical chemistry.
Professor Junhong Park's research lab specializes in sustainable materials and systems engineering, with a focus on advanced manufacturing processes, smart functional materials, and eco-friendly water treatment technologies. The lab investigates hot forming quenching for high-strength automotive materials, shape memory alloy actuators for freeze-protection in infrastructure, and low-cost, natural-based water purification systems for underserved regions. Additionally, the lab develops intelligent control frameworks for water treatment processes and energy-efficient RF circuits for wireless power transfer applications.
Professor Heejung Son's research lab specializes in gastrointestinal and metabolic diseases, with a focus on the interplay between liver disorders, inflammatory bowel disease (IBD), and colorectal neoplasia. The lab investigates molecular mechanisms underlying gastric carcinogenesis, such as COX-2 and iNOS expression, and explores physiological and environmental factors—like acid hypersensitivity and ambient temperature—contributing to functional gastrointestinal disorders and IBD exacerbations. Additionally, the lab examines nutritional and exercise interventions, such as β-alanine supplementation, to modulate muscle carnosine levels and enhance athletic performance.
Professor Kim Hong-joon's research lab specializes in translational oncology and molecular therapeutics, focusing on identifying and validating novel biomarkers and signaling pathways involved in cancer progression and metastasis. The lab investigates key regulators such as Romo1 in colorectal, non-small cell lung, and gastric cancers, with an emphasis on mechanisms driving lymphatic metastasis, oxidative stress, and therapeutic resistance. Additionally, the lab explores innovative drug delivery systems, such as microneedles, to overcome biological barriers in cancer therapy. Their work bridges molecular oncology with clinical applications, aiming to improve patient prognosis through precision medicine approaches.
Professor Donguk Nam's research lab specializes in nanoscale photonics and optoelectronics, focusing on strain engineering and novel heterostructure design to advance group IV semiconductors—particularly germanium and silicon—for next-generation integrated photonic devices. The lab pioneers methods to achieve high biaxial and uniaxial strain in Ge and GeSn to enhance light emission and laser performance, while developing silicon-compatible light sources and high-quality nanophotonic cavities. A key innovation is the use of strain to create pseudoheterostructures in single-material nanowires, enabling custom-tailored electronic band profiles without complex epitaxial growth. The lab also explores symmetry-breaking in 2D materials like graphene through strain to unlock nonlinear optical effects such as second harmonic generation.
Professor Kay-Hyun Park's research lab specializes in vascular and endovascular interventions, with a focus on aortic aneurysm management, peripheral vascular disease, and the application of advanced imaging techniques such as CT angiography and near-infrared spectroscopy (NIRS) in critical care settings. The lab investigates patient-specific anatomical factors affecting endovascular aneurysm repair (EVAR) suitability, particularly in Asian populations, and explores hemodynamic monitoring for early detection of limb ischemia in extracorporeal life support. Their work bridges diagnostic imaging, interventional radiology, and surgical decision-making to improve outcomes in cardiovascular patients.
Professor Sang Min Kim's research spans interdisciplinary domains, focusing on media history, geographic information systems (GIS), Korean grammar and semantics, urban spatial data management, and digital platform studies. His lab investigates the historical and cultural impact of early cinema in colonial Korea, particularly the interplay between Hollywood influences and nationalist cinema discourse. It also explores the development and application of international geospatial standards such as LADM (Land Administration Domain Model) for national land information systems. Additionally, the lab examines linguistic phenomena—especially the modal and epistemic functions of Korean particles like '까지'—and addresses contemporary challenges in urban digital mapping through LiDAR-based data integration. The lab further engages with critical platform studies, analyzing the socio-political dynamics of dominant internet platforms like Naver in South Korea’s digital ecosystem.
Professor Seung Beom Han's research lab specializes in orthopedic biomechanics and regenerative medicine, with a primary focus on knee osteoarthritis and lower limb alignment correction. The lab investigates surgical interventions such as high tibial osteotomy (HTO) and unicompartmental knee arthroplasty (UKA), emphasizing alignment accuracy, soft tissue laxity, and long-term outcomes. It also explores regenerative therapies, including hyaluronic acid, platelet-rich plasma, and mesenchymal stem cell injections, for osteoarthritis treatment. Additionally, the lab examines metabolic and developmental impacts of environmental toxins, such as lead, on maternal and fetal health.
Professor Chang-Wook Jeong's research lab focuses on the molecular and synaptic mechanisms underlying neurodevelopmental and psychiatric disorders, with a central emphasis on the roles of postsynaptic scaffolding proteins such as Shank2 and Shank3 in synapse development, function, and behavior. The lab investigates how genetic mutations, synaptic zinc dynamics, and somatic mosaicism contribute to autism spectrum disorders and related conditions, using advanced mouse models, behavioral analyses, and high-depth whole-genome sequencing in human brains. Their work bridges molecular neuroscience with translational insights, aiming to uncover novel therapeutic targets and mechanisms, including the potential of zinc modulation in rescuing social deficits.
Professor Sung-Tak Kim's research lab specializes in the clinical and translational applications of botulinum toxin type A (BoNT-A) in orofacial pain, aesthetics, and neuromuscular disorders. The lab focuses on optimizing injection techniques—particularly ultrasound-guided delivery—for enhanced precision and safety in treating conditions like bruxism, masseter muscle hypertrophy, and neuropathic facial pain. Key research directions include evaluating the efficacy and long-term outcomes of BoNT-A in sleep-related bruxism, facial asymmetry, and chronic orofacial pain, with a strong emphasis on imaging-guided assessment using ultrasonography and 3D facial scanning. The lab also investigates the use of validated screening tools, such as the ID Migraine questionnaire, in specialized pain clinics to improve diagnostic accuracy and patient management.
Professor Jinho Kim's research lab specializes in the development of advanced microfluidic systems and intelligent control algorithms for biomedical and aerospace applications. The lab focuses on cutting-edge technologies such as single-cell isolation, circulating tumor cell detection, and high-efficiency particle sorting using microfluidic devices, while also advancing control systems for unmanned aerial vehicles (UAVs) through adaptive and interference-aware algorithms. A key strength lies in integrating microfluidics with machine learning for precision diagnostics in cancer research, particularly using transcriptomic data from normal-adjacent tissues. The lab bridges engineering innovation with clinical impact, emphasizing real-world performance and system robustness.
Professor Jinyoung Song's research lab specializes in pediatric and congenital cardiovascular diseases, with a focus on hemodynamic and organ dysfunction in patients with complex congenital heart disease. The lab investigates the pathophysiology and long-term outcomes of conditions such as hepatopulmonary syndrome, single ventricle physiology, and post-Fontan hepatic dysfunction. Research spans interstage mortality, necrotizing enterocolitis in duct-dependent lesions, and the safety and efficacy of transcatheter and surgical interventions for ventricular septal defects. The lab emphasizes multimodal imaging and diagnostic tools to monitor and improve outcomes in pediatric cardiac patients.