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 Su-Jin Shin's research lab specializes in oncology and translational medicine, with a focus on identifying predictive and prognostic biomarkers in cancer patients, particularly in renal cell carcinoma and breast cancer. The lab investigates molecular pathways such as VEGF and IGF-1R signaling, and explores immune-related markers like PD-L1 to improve treatment outcomes. Additionally, the lab contributes to nursing education research, emphasizing critical reflection and competency development in healthcare professionals. Their work bridges clinical oncology, biomarker discovery, and healthcare education innovation.
Professor Kyoungmin Min's research lab specializes in computational and materials science-driven investigations into high-performance cathode materials for lithium-ion batteries. The lab focuses on understanding and mitigating degradation mechanisms—such as oxygen loss, cation disordering, mechanical cracking, and residual lithium reactivity—in nickel-rich layered oxide cathodes. By integrating first-principles calculations, density functional theory, and machine learning, the lab develops advanced doping and surface modification strategies to enhance structural stability and electrochemical performance. The research also extends to predictive modeling of solubility and material screening for battery components.
Professor Hee Seung Lee's research lab focuses on advancing therapeutic strategies and improving outcomes in pancreatic cancer, with a strong emphasis on overcoming drug resistance and enhancing treatment efficacy. The lab investigates novel agents such as HDAC inhibitors and repurposed drugs like statins to sensitize pancreatic tumors to standard chemotherapy. It also explores biomarkers—such as CEMIP and CA 19-9—for earlier and more accurate diagnosis. Additionally, the lab examines end-of-life care practices, particularly the use of chemotherapy in advanced pancreatic cancer, to balance clinical benefit with patient quality of life.
Professor Hak Jae Kim's research lab specializes in thoracic oncology, with a primary focus on the diagnosis, treatment, and prognosis of patients with soft tissue sarcoma (STS), particularly those with primary sarcoma of the lung. The lab investigates the role of adjuvant radiotherapy in improving local control and survival outcomes, and identifies key pathological predictors—such as high mitotic activity—for disease progression. Their work emphasizes optimizing treatment strategies through integrated multimodal approaches and personalized risk assessment.
Professor Jungwoo Oh's research lab specializes in the design and synthesis of advanced nanomaterials for energy conversion and electronic applications. The lab focuses on developing 3D carbon-based aerogels, transition metal oxide–graphene composites, and group IV semiconductors (like Ge) for high-performance supercapacitors, electrocatalysts, and high-speed transistors. Key research directions include enhancing electrical conductivity and catalytic activity through nitrogen doping and heterostructure engineering, as well as integrating flexible, free-standing electrodes for sustainable energy technologies.
Professor Eosu Kim's research lab focuses on neurometabolic and neuroimaging mechanisms underlying psychiatric and neurodegenerative disorders, with a particular emphasis on identifying novel therapeutic targets and biomarkers. The lab investigates the role of metabolic regulators such as AMPK/PGC-1α in brain energy metabolism and neuroprotection, especially in Alzheimer’s disease and schizophrenia. Using advanced neuroimaging techniques like resting-state fMRI and virtual reality-based social interaction paradigms, the lab explores neural circuitry and behavioral phenotypes in conditions such as Wernicke’s encephalopathy, bipolar disorder, and schizophrenia. A key translational goal is to discover peripheral metabolic biomarkers through metabolomics for early diagnosis and treatment monitoring.
Professor Seungeun Oh's research lab specializes in communication-efficient and privacy-preserving distributed machine learning, with a focus on enabling scalable, low-latency AI collaboration across resource-constrained devices. The lab develops innovative frameworks such as Split Learning, Mix2FLD, and hybrid language modeling architectures that balance model accuracy, data privacy, and system efficiency in wireless and mobile environments. Key research directions include optimizing uplink-downlink communication asymmetry, enhancing model scalability through novel aggregation and mixing techniques, and integrating small and large language models for edge intelligence. The lab also explores physical-layer protocols for high-mobility wireless networks, particularly in mmWave V2X communications.
Professor Chul-Sung Huh's research lab focuses on the host-microbiome interactions, particularly in the context of metabolic and inflammatory diseases. The lab investigates the roles of gut and skin microbiomes in health and disease, with an emphasis on ethnic, age, and gender differences in microbial composition. A key research direction involves developing and evaluating probiotics—especially host-specific strains like *Lactobacillus salivarius* and *Lactobacillus rhamnosus*—as therapeutic agents for conditions such as diet-induced obesity, inflammatory bowel disease (IBD), and gut barrier dysfunction. The lab also develops advanced delivery systems, such as pH-sensitive tablets using phthalyl inulin, to enhance probiotic survival through the gastrointestinal tract.
Professor Mona Choi's research lab focuses on improving health outcomes in chronic disease management and aging populations through innovative digital health interventions and public health nursing practices. The lab specializes in mobile health (mHealth) technologies, ecological momentary assessment (EMA) using mobile devices, and the integration of environmental health assessments into community nursing. A key emphasis is on enhancing self-management, quality of life, and social support for older adults and patients with chronic conditions such as peripheral artery disease.
Professor Doh Kwan Kim's research lab focuses on the genetic, environmental, and neurobiological underpinnings of mood disorders and dementia, with a strong emphasis on translational psychiatry. The lab investigates gene-environment interactions, including serotonin transporter polymorphisms and air pollution, in relation to depression and suicide. It also explores the role of white matter hyperintensities in dementia pathogenesis and leverages big data from social media for population-level mental health prediction. The lab integrates molecular genetics, neuroimaging, and epidemiological data to identify biomarkers and risk factors for psychiatric and neurodegenerative disorders.
Professor Hak-Sung Kim's research lab specializes in atmospheric aerosol science and nuclear materials engineering, focusing on the characterization and modeling of airborne particulate matter across East Asia and the development of advanced neutron irradiation techniques for semiconductor materials. The lab investigates the optical and microphysical properties of aerosols using satellite remote sensing data (e.g., MODIS) to understand regional pollution transport, sources, and climatic impacts, particularly during seasonal events like dust storms and monsoon-related haze. In parallel, the lab conducts computational simulations using Monte Carlo methods (e.g., MCNP) to optimize neutron transmutation doping processes in silicon crystals for high-performance semiconductor applications.
Professor Jee Suk Chang's research lab specializes in radiation oncology and medical physics, with a strong focus on improving the precision and safety of radiation therapy. The lab investigates advanced image-guided treatment techniques, including atlas-based segmentation and auto-contouring for head and neck structures, to enhance treatment planning efficiency. It also explores patient-specific anatomical changes—such as bladder volume variations in rectal cancer patients—aimed at optimizing treatment outcomes through personalized interventions. Additionally, the lab contributes to the clinical application and evaluation of intensity-modulated radiation therapy (IMRT) in breast cancer, emphasizing treatment planning optimization and quality assurance.
Professor Sangwoo Lim's research lab specializes in advanced functional materials and thin film technologies for next-generation electronic and optoelectronic applications. The lab focuses on developing low-dielectric-constant materials—particularly fluorine-doped silicon dioxide films—through plasma-enhanced chemical vapor deposition for use in ultralarge-scale integrated (ULSI) circuits, aiming to reduce signal delay and improve device performance. Another key research direction involves the synthesis and magnetic characterization of diluted magnetic semiconductors, such as Zn1-xMnO, achieving room-temperature ferromagnetism via hole-mediated mechanisms. The lab combines advanced characterization techniques, including SQUID, AGM, ellipsometry, and spectroscopic analysis, to understand polarization mechanisms and growth kinetics at the nanoscale.
Professor Jin Tae Kwak's research lab specializes in advancing computational and molecular imaging techniques for precision oncology, with a primary focus on prostate cancer. The lab integrates multiparametric MRI, digital histopathology, and Fourier transform infrared (FT-IR) spectroscopic imaging to enable non-invasive, accurate diagnosis and outcome prediction. Key research directions include developing AI-driven computer-aided diagnosis systems, analyzing tumor microenvironment features, and leveraging high-throughput imaging and statistical modeling to understand biological variability and improve diagnostic reliability. The lab emphasizes translational research that bridges imaging, pathology, and data science to enhance clinical decision-making.
Professor Jung-Im Na's research lab specializes in dermatological therapeutics, focusing on the development and evaluation of innovative topical treatments for pigmentary and inflammatory skin disorders. Key research directions include the investigation of hypopigmenting agents—such as hydroquinone alternatives, liposome-encapsulated compounds, and growth factors—for melasma, as well as the application of platelet-rich plasma (PRP) and photodynamic therapy (PDT) to enhance wound healing and treat acne. The lab emphasizes safe, effective, and cosmetically acceptable interventions with minimal adverse effects.
Professor Hyeran Byun's research lab specializes in computer vision and pattern recognition, with a focus on real-time and robust visual understanding in dynamic environments. The lab develops advanced deep learning and GPU-accelerated methods for applications such as traffic sign detection, action recognition, and object-aware video analysis. Key research directions include multimodal feature learning, illumination-invariant perception, and hierarchical modeling for complex visual recognition tasks. The lab emphasizes practical deployment of intelligent vision systems under real-world challenges such as low light and variable scene conditions.
Professor Young-Gyu Eun's research lab focuses on head and neck oncology, with a strong emphasis on the molecular and microbial mechanisms underlying oral squamous cell carcinoma (OSCC) and thyroid cancer. The lab investigates the role of the oral microbiome in modulating cancer progression and metastasis, particularly lymph node involvement, and explores genomic drivers such as YAP1 activation in head and neck squamous cell carcinoma (HNSCC). Additionally, the lab contributes to clinical innovation through minimally invasive surgical techniques, such as intraoral removal of submandibular stones and evidence-based tonsillectomy strategies for recurrent peritonsillar abscess. Their work integrates multi-omics analysis with clinical validation to improve diagnostic prediction and therapeutic outcomes.
Professor Junho K. Hur's research lab focuses on molecular mechanisms underlying gene regulation, RNA biology, and genome editing technologies. The lab investigates the roles of conserved protein complexes like TREX in non-coding RNA biogenesis and genome stability, particularly in germline development and transposable element control. It also pioneers safe and precise genome-editing strategies using CRISPR systems—especially Cpf1-based tools—aimed at regenerative medicine and disease modeling without inducing double-strand DNA breaks. Additionally, the lab explores therapeutic targeting of signaling pathways, such as TGF-β, in degenerative diseases like spinal stenosis.
Professor Hong Koh's research lab specializes in pediatric gastroenterology and hepatology, with a strong focus on liver fibrosis assessment, biliary atresia management, and gastrointestinal infections in children. The lab investigates clinical biomarkers such as APRI and Leech score for non-invasive diagnosis, explores infectious etiologies like viral and bacterial causes of diarrhea, and examines the links between metabolic health, muscle strength, and gastrointestinal pathology. Their work emphasizes practical, patient-friendly diagnostic tools and evidence-based clinical interventions in pediatric populations.
Professor Moo Whan Shin's research lab specializes in advanced semiconductor devices and energy storage systems, with a strong focus on gallium nitride (GaN)-based high-power electronics and lithium-air batteries. The lab investigates microwave GaN HEMTs for high-power and high-temperature applications, leveraging advanced simulation and characterization techniques to optimize device performance. In parallel, the lab explores novel nanomaterials for energy conversion and storage, particularly cobalt-based porous carbon composites for efficient air cathodes in lithium-air batteries. The integration of materials engineering with device physics enables the development of next-generation electronic and electrochemical systems.