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 Ji-Seok Jang's research lab specializes in radiation oncology and medical physics, focusing on improving treatment accuracy and outcomes in cancer patients through advanced imaging, treatment planning, and artificial intelligence. The lab investigates risk factors for treatment-related complications such as lymphedema and explores the integration of deep learning for automated contouring in radiotherapy. A key focus is on optimizing radiotherapy for rare and aggressive cancers, including mucosal melanoma and rectal cancer, particularly through combined modality approaches involving immunotherapy and stereotactic radiotherapy.
Professor Kang Seong Ho's research lab specializes in advanced fluorescence imaging and nanomaterial-based biosensing, focusing on single-molecule dynamics at liquid-solid interfaces. The lab investigates the conformational behavior of biomolecules such as DNA and proteins under varying environmental conditions, leveraging techniques like total internal reflection fluorescence microscopy and capillary electrophoresis for high-resolution analysis. A key focus is on developing novel photochromic probes and metal-enhanced fluorescence systems for live-cell imaging and sensitive biosensing applications. The lab also explores the biophysical properties of stem cells, particularly in relation to their viability and function during storage, integrating molecular, biochemical, and biophysical approaches.
Professor Ee Kyung Kim's research lab focuses on neonatal health, particularly the impact of early-life inflammation, neurodevelopmental outcomes, and brain injury in preterm infants. The lab investigates immune modulation through maternal colostrum, the role of pro-inflammatory cytokines like TNF-α in white matter injury, and the long-term effects of postnatal growth on brain development. Key research directions include identifying biomarkers of brain injury, evaluating neuroprotective interventions, and assessing the efficacy of early preventive nursing programs in improving developmental outcomes.
Professor Seung Hyun Oh's research lab focuses on identifying bioactive natural compounds and elucidating their molecular mechanisms in treating inflammatory and malignant diseases. The lab investigates the therapeutic potential of plant-derived molecules, such as deguelin, farnesyltransferase inhibitors, sweet potato components, and allyl isothiocyanate, in cancer and inflammatory bowel disease (IBD). Key research directions include targeting molecular chaperones like Hsp90, modulating signaling pathways such as IGF-IR and IL-6/STAT3, and exploring the role of gut microbiota and intestinal barrier integrity in disease progression. The lab employs integrative approaches combining molecular biology, cell culture, animal models, and bioactivity-guided compound isolation to develop novel, natural-based therapeutics with reduced side effects.
Professor Yong Seok Hwang's research lab specializes in low-temperature and fusion plasmas, focusing on plasma confinement, transport, and heating mechanisms in magnetic fields. Key research directions include electron cyclotron heating (ECH)-assisted plasma start-up in spherical tokamaks, helicon wave-driven high-density plasma sources for ion beam applications, and the study of magnetohydrodynamic (MHD) instabilities such as internal reconnection events and MHD-correlated blobs. The lab also investigates thermodynamic and electrical properties of high-density plasmas, particularly water plasma, for pulsed discharge applications.
Professor Yong-Jin Kim's research lab focuses on aging and musculoskeletal health, particularly the impact of environmental and biological factors on physical and mental well-being in older adults. The lab investigates how urban physical environments—such as walkability and public transportation—affect elderly individuals’ physical activity, social engagement, and overall health outcomes. Additionally, the lab explores the molecular mechanisms of sex steroid hormones in muscle function and degeneration, contributing to understanding sarcopenia and related age-related conditions. The research integrates environmental gerontology with molecular biology to develop holistic strategies for healthy aging.
Professor Byungin Kim's research lab specializes in intelligent scheduling and control systems for automated manufacturing and material handling environments, with a strong focus on industrial applications in semiconductor fabrication and warehouse logistics. The lab develops hybrid intelligent agent-based architectures that integrate hierarchical and heterarchical control principles to optimize dynamic decision-making in real time. Key research directions include vehicle dispatching, order picking optimization, and efficient resource allocation using advanced algorithms such as the Hungarian algorithm and heuristic-based methods. The lab emphasizes practical implementation through simulation and real-world system analysis to enhance system efficiency and utilization.
Professor Kwon Yong-Dae's research lab specializes in oral and maxillofacial regenerative medicine, with a primary focus on improving dental implant integration and treating jaw bone disorders. The lab investigates biomaterials such as hydroxyapatite-coated titanium, biphasic calcium phosphate, and growth factors like rhBMP-2 to enhance bone regeneration. Key research directions include osseointegration mechanisms, osteonecrosis risk markers (e.g., s-CTX and osteocalcin), and the application of osteogenic agents such as teriparatide and simvastatin in clinical settings. The lab combines in vitro, in vivo, and clinical studies using advanced imaging techniques like 3D CBCT for longitudinal evaluation of bone volume and healing outcomes.
Professor Yong Sun Choi's research lab specializes in perioperative medicine, with a primary focus on optimizing postoperative pain management and improving surgical outcomes through multimodal analgesia and anesthetic strategies. The lab investigates pharmacological interventions—such as pregabalin, dexamethasone, and ramosetron—alongside regional anesthetic techniques like PENG and FICB blocks to reduce opioid use and enhance recovery after orthopedic and spinal surgeries. Additional research explores the impact of anesthetic agents and fluid management on systemic inflammation, coagulation, and outcomes in elderly and high-risk surgical patients. The lab emphasizes evidence-based, patient-centered approaches to minimize postoperative complications and improve functional recovery.
Professor Lee Seunghwan's research lab focuses on interdisciplinary biomedical and materials science research, with key strengths in spinal cord injury repair, musculoskeletal modeling and control, and the physical properties of functional materials. The lab investigates neuroprotective agents like minocycline for functional recovery after spinal cord injury, develops advanced computational models for human movement simulation using deep reinforcement learning, and explores magnetoresistive phenomena in half-metallic ferromagnets. Additionally, the lab examines biolubrication mechanisms of mucin proteins and the taxonomic complexity of insect pests using molecular genetics.
Professor Ji-eun Kim's research lab specializes in consumer behavior, luxury brand management, and design thinking, with a strong emphasis on understanding human–computer interaction, customer relationships in luxury markets, and the psychological and perceptual drivers of consumer loyalty. The lab explores how individuals perceive value, make decisions, and form emotional connections with brands, particularly in high-end and service-oriented contexts. It also investigates the role of personal relationships, cultural adaptation, and cognitive processes in shaping consumer behavior and design innovation. The research integrates qualitative and quantitative methods, including surveys, focus groups, and experimental designs, to develop practical tools for brand assessment and consumer insight.
Professor Seong-Doo Hong's research lab specializes in oral and maxillofacial oncology, focusing on the molecular mechanisms underlying odontogenic tumors and oral squamous cell carcinoma (OSCC). The lab investigates key signaling pathways—particularly the MAPK/ERK pathway—through the identification of driver mutations such as BRAF V600E, and explores targeted therapeutic strategies using agents like norcantharidin (NCTD). Research also emphasizes tumor suppressor genes like SOX7 and their prognostic implications in OSCC. The lab integrates molecular pathology, immunohistochemistry, and in vitro/in vivo functional assays to translate basic findings into clinical applications.
Professor Park Yoonseok's research lab specializes in the development of advanced micro- and nanoscale devices for biomedical applications, with a focus on neuromodulation, wearable sensing, and implantable or implant-like systems. The lab pioneers multifunctional, flexible, and biocompatible interfaces for neural systems, including 3D cortical spheroids and assembloids, integrating electrical, optical, and chemical functionalities. A key direction involves creating smart, wireless, and environmentally responsive sensors for real-time monitoring of physiological and environmental parameters, particularly in clinical and neurodegenerative disease contexts. The lab also explores bioactive materials and molecular modulation strategies, such as enzyme inhibition for therapeutic applications.
Professor Tae Min Rhee's research lab focuses on cardiovascular and metabolic diseases, with a strong emphasis on understanding the interplay between genetic susceptibility, environmental exposures (such as air pollution), and clinical outcomes. The lab investigates risk prediction using advanced machine learning models in conditions like hypertrophic cardiomyopathy and atrial fibrillation, while also exploring the impact of comorbidities—such as psoriasis—on thromboembolic and arrhythmic events. A key research direction involves optimizing treatment strategies, including hyperbaric oxygen therapy for sudden sensorineural hearing loss and anticoagulation in patients with renal impairment. The lab integrates clinical data, biomarkers, and omics data to improve patient stratification and personalized treatment approaches.
Professor Jaeyeol Im's research lab specializes in regenerative medicine and tissue engineering, with a primary focus on salivary gland regeneration and radiation-induced tissue damage. The lab investigates the therapeutic potential of mesenchymal stem cells (MSCs), particularly human adipose-derived MSCs (hAdMSCs), in promoting tissue repair through paracrine signaling and secretome-mediated mechanisms. Key research directions include the development of injectable hydrogel scaffolds for vocal fold and salivary gland repair, the establishment of long-term salivary gland organoid cultures, and the use of hypoxia-preconditioned MSCs to enhance regenerative outcomes in irradiated tissues. The lab integrates preclinical models, 3D organoid systems, and molecular analyses to advance regenerative therapies for head and neck cancers and related side effects such as xerostomia.
Professor June Dong Park's research lab specializes in the fundamental understanding of structure-rheology relationships in soft materials, particularly colloidal gels and soft glassy systems. The lab employs advanced simulation techniques such as Brownian dynamics and the fully quantitative sequence of physical processes (SPP) method to investigate microstructural evolution and nonlinear rheological behavior under oscillatory and start-up shear flows. Key research directions include the dynamics of network rupture, structural recovery, and the quantification of elastic recovery and viscoplastic transitions in complex fluids. The lab also explores how local structural heterogeneities and strain distribution govern macroscopic rheological responses.
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 computer-aided diagnosis systems using texture analysis and deep learning, correlating imaging phenotypes with tissue microenvironment features, and leveraging high-throughput data to understand biological variability in cancer. The lab emphasizes translational applications, aiming to improve clinical decision-making through robust, data-driven tools.
Professor Dongki Lee's research lab specializes in the development of nucleic acid-based biosensors and gene-silencing technologies, with a focus on aptamers and RNA interference (RNAi) for diagnostic and therapeutic applications. The lab pioneers innovative SELEX-based methods to identify high-affinity aptamers targeting environmental toxins, pathogenic bacteria, and human cells, enabling sensitive and specific detection. Additionally, the lab develops advanced RNAi tools—such as bulge-siRNAs and multi-targeted T-tiRNAs—to enhance gene silencing specificity and efficacy, particularly for cancer and antiviral therapies. Their work bridges molecular diagnostics, synthetic biology, and precision medicine.
Professor Hee Seung Lee's research lab focuses on advancing therapeutic strategies for pancreatic cancer, with a primary emphasis on overcoming drug resistance and improving treatment efficacy. The lab investigates novel agents such as HDAC inhibitors and repurposed drugs like statins to enhance the response to standard chemotherapy, including gemcitabine. Additionally, the lab explores biomarkers—such as CEMIP and CA 19-9—for early and accurate diagnosis of pancreatic cancer. The research also extends to optimizing supportive care and endoscopic interventions in acute pancreatitis, reflecting a comprehensive approach to improving patient outcomes across the disease spectrum.
Professor Jisung Park's research lab focuses on interdisciplinary research at the intersection of materials science, environmental economics, and social psychology. The lab explores the development of advanced nanomaterials for sustainable energy applications—particularly nitrogen-doped mesoporous carbon for efficient electrochemical hydrogen peroxide production—while also investigating the socioeconomic impacts of climate change, including temperature-related effects on health, labor productivity, and economic performance. Additionally, the lab examines human behavioral dynamics in organizational settings, especially the role of status motivation in proactive knowledge sharing among employees. These diverse yet interconnected research directions reflect a commitment to addressing global challenges through innovative materials, economic modeling, and behavioral insights.