世界の主要大学の研究室を探索 — 研究分野と主要論文を一目で確認できます。
Professor Namkung Young's research lab specializes in consumer behavior and service management within the hospitality and restaurant industries, with a strong focus on food quality, service fairness, customer satisfaction, and sustainable practices. The lab investigates key drivers of customer loyalty, behavioral intentions, and brand equity through empirical studies using advanced statistical methods such as structural equation modeling and logistic regression. Recent work also explores the role of digital marketing—particularly Instagram—in shaping brand perception and consumer engagement. The lab’s research bridges theoretical insights with practical applications to enhance service quality and sustainability in the foodservice sector.
Professor Doyoung Byun's research lab specializes in advanced micro- and nanofabrication techniques, focusing on functional materials and devices for next-generation applications in flexible electronics, energy, and fluidic systems. The lab pioneers hybrid manufacturing methods—such as electrohydrodynamic (EHD) jet printing combined with 3D printing and conventional microfabrication—to create high-resolution, transparent, and flexible conductive films, patterned nanowire networks, and tailored surface structures. Key research directions include the development of superhydrophobic surfaces for enhanced fluidic performance, printable strain sensors using silver nanowires, and the integration of carbon-based materials like graphene and CNTs as alternatives to traditional transparent conductors. The lab also employs computational fluid dynamics to explore bio-inspired fluid dynamics, particularly in insect flight, to inform the design of efficient micro-aero systems.
Professor Eun-Sook Kang's research lab specializes in translational immunology and infectious disease diagnostics, with a focus on host immune responses to viral infections such as SARS-CoV-2 and autoimmune disorders like neuromyelitis optica (NMO). The lab investigates antibody responses, T cell immunity, and immune cell subsets—including Tregs and MDSCs—in cancer and infectious diseases, while also evaluating the performance of serological assays and vaccine immunogenicity. A key emphasis is on developing and validating sensitive, clinically relevant immunoassays for accurate diagnosis and prognosis.
Professor Ik Jae Lee's research lab focuses on oncology and neuromuscular disorders, with a strong emphasis on identifying prognostic biomarkers and improving patient outcomes. The lab investigates the role of systemic inflammation, sarcopenia, and immune markers—such as neutrophil/lymphocyte ratio and growth arrest-specific protein 6—in cancer patients undergoing radiotherapy or chemoradiotherapy. Additionally, the lab explores quality of life and treatment outcomes in patients with myasthenia gravis, particularly focusing on gender differences and the impact of corticosteroid therapy. Their work bridges clinical oncology and neuroimmunology, aiming to personalize treatment strategies based on biological and inflammatory markers.
Professor Kang-Yun Lee's research lab specializes in biomedical engineering and integrated circuit design, with a strong focus on developing advanced electronic systems for healthcare and sensing applications. The lab pioneers intelligent biomedical informatics solutions, including deep learning-based biomedical entity recognition for electronic health records, and designs low-power, high-efficiency integrated circuits for medical and automotive sensors. Key research directions include implantable and wearable sensors, RF-to-DC power conversion for energy harvesting, and temperature-compensated piezoresistive pressure sensors for real-time physiological monitoring. The lab also explores artificial intelligence applications in healthcare to address information overload and support clinical decision-making.
Professor Yunjeong Choi's research lab focuses on interdisciplinary biomedical and health sciences, with a strong emphasis on clinical oncology, particularly in thyroid cancer diagnosis and prognosis. The lab integrates medical imaging, cytological analysis, and clinical risk factor evaluation to improve preoperative detection and management of lymph node metastasis. In parallel, the lab explores advanced nanomaterials for biomedical applications, such as plasmonic gold-silver nanoshells with tunable optical properties. Additionally, the lab investigates health behaviors and psychological well-being in healthcare professionals, as well as societal perceptions of emerging technologies like big data and social viewing in media consumption.
Professor Ok-hee Jeon's research lab focuses on cellular senescence and its role in age-related diseases, particularly osteoarthritis and neurodegenerative disorders. The lab investigates the senescence-associated secretory phenotype (SASP) and extracellular vesicles (EVs) as key mediators of intercellular communication that drive tissue dysfunction and inflammation. Using human primary cells and patient-derived samples, the lab develops translational strategies targeting senescent cells and their secreted factors for regenerative medicine and therapeutic intervention. A central theme is the development of biomaterials and microenvironments that support bone and immune cell crosstalk for tissue repair.
Professor Jong Sun Park's research lab specializes in respiratory medicine and interstitial lung diseases, with a strong focus on idiopathic pulmonary fibrosis (IPF) and related conditions. The lab investigates the clinical and molecular aspects of pulmonary fibrosis, including the roles of key signaling proteins such as mTOR, ZEB1, and ROCK1, as well as the impact of psychological factors like depression and anxiety on patient quality of life. Additionally, the lab conducts clinical pharmacology studies, particularly in tuberculosis treatment monitoring, and explores diagnostic imaging applications in carcinoma of unknown primary (CUP).
Professor Jahyun Koo's research lab specializes in the development of biodegradable and bio-integrated electronic systems for advanced medical applications. The lab focuses on creating implantable and wearable devices that enable real-time, wireless monitoring and controlled therapeutic interventions—such as programmable drug release and nerve stimulation—while ensuring complete biological resorption after use. Key research directions include soft microfluidics for sweat analysis, biodegradable conductive materials, and ultra-low-power bioelectronic circuits for chronic physiological monitoring.
Professor Yonghwan Park's research lab focuses on the pathogenesis of autoinflammatory diseases, particularly those driven by dysregulation of the innate immune system, with a strong emphasis on inflammasome activation and cytokine signaling (e.g., IL-1β and IL-18). The lab investigates genetic mutations in key immune regulators such as OTULIN and Wdr1, linking them to systemic inflammation and tissue-specific manifestations like hearing loss and skin disease. Using translational approaches, including patient-derived cells and mouse models, the lab explores the role of lipid mediators like PGE2 in modulating inflammasome activity and immune homeostasis. The work also extends to interventional cardiology, examining optimal antiplatelet strategies post-percutaneous coronary intervention.
Professor Chang Won Yoon's research lab specializes in the development of advanced nanomaterials and heterogeneous catalysts for sustainable energy applications, with a primary focus on chemical hydrogen storage and hydrogen release. The lab investigates novel materials such as Pd nanoparticles supported on carbon nitride and mesoporous silica, as well as borane-based compounds like ammonia triborane, to enable efficient, ambient-condition hydrogen generation from formic acid and other hydrogen carriers. Key research directions include understanding the role of surface basicity, metal-support interactions, and molecular-level mechanisms through combined experimental and DFT computational studies. The lab also explores the stability and reactivity of boron-nitrogen hydrides in aqueous and biphasic environments for safe and controllable hydrogen delivery.
Professor Kihun Son's research lab specializes in circadian biology and neuroendocrinology, focusing on the molecular mechanisms underlying circadian rhythms in glucocorticoid secretion and their impact on brain function and behavior. The lab investigates how central and peripheral clocks—particularly in the adrenal gland—coordinate daily hormone oscillations and regulate physiological and cognitive processes. A key focus is the interplay between maternal stress during pregnancy and long-term neurodevelopmental outcomes in offspring, including deficits in learning and memory linked to NMDA receptor dysfunction. The lab also explores postmortem molecular changes for forensic applications, particularly RNA degradation patterns as biomarkers for postmortem interval estimation.
Professor Sung-Joon Park's research lab focuses on the molecular mechanisms underlying metabolic regulation, immune tolerance, and aging, with a particular emphasis on cAMP signaling, Sirt1, and transcriptional regulators like Capicua (CIC). The lab investigates how small molecules such as resveratrol and SRT1720 modulate cellular metabolism and immunity through non-canonical pathways involving phosphodiesterase inhibition and AMPK activation. A central theme is the interplay between metabolic sensors (e.g., Sirt1, AMPK) and immune cell differentiation, especially in T follicular helper cells and tissue-resident memory T cells. The lab also explores translational applications in aging, autoimmunity, and critical care, including optimal cardiopulmonary resuscitation duration and smart-home technologies for aging-in-place.
Professor Young Sun Ro's research lab specializes in emergency medicine and trauma care, with a focus on improving diagnostic accuracy and clinical outcomes in traumatic brain injury through evidence-based clinical decision rules. The lab also investigates peritoneal fibrosis and dialysis-related complications, exploring molecular mechanisms and potential therapeutic interventions such as matrix metalloproteinase inhibitors. Additionally, the lab examines cancer-related emergency department visits, aiming to understand epidemiological trends and optimize care for oncology patients in acute settings. Their work bridges clinical emergency care with translational research in critical conditions.
Professor Jong Min Park's research lab specializes in developing innovative bioanalytical platforms and molecular tools for precision medicine, with a focus on extracellular vesicles (EVs), targeted protein degradation, and fluorescent probes for disease detection and drug discovery. The lab pioneers technologies such as iKEA for non-invasive kidney transplant rejection monitoring, iNPS for intravesicular protein analysis in EVs, and novel fluorescent glucose analogues for cancer cell metabolism studies. Additionally, the lab advances chemical biology tools, including photoaffinity probes and PROTAC-based degradation systems, to enable precise target identification and therapeutic development. Their interdisciplinary work bridges nanotechnology, analytical chemistry, and biomedical research to address critical challenges in diagnostics and drug discovery.
Professor Jeongyeol Cha's research lab specializes in digital orthodontics, implant biomechanics, and advanced dental materials. The lab focuses on developing and evaluating digital technologies such as deep learning for automated tooth segmentation, micro-CT and spectrophotometry for aligner characterization, and finite element analysis for implant stability and stress distribution. Key research directions include optimizing orthodontic treatment outcomes through precision digital modeling, improving the mechanical and optical properties of clear aligners, and assessing the long-term performance of orthodontic mini-implants and ceramic brackets.
Professor Soo Jun Hong's research lab specializes in cardiovascular and metabolic diseases, with a focus on interventional cardiology, vascular biology, and regenerative medicine. The lab investigates mechanisms underlying myocardial dysfunction in critical conditions such as sepsis and hypertension, evaluates interventional therapies like drug-eluting stents and minimally invasive bypass surgery, and explores the role of adipokines and metabolic factors in cardiovascular risk. The research integrates clinical cardiology with translational approaches, including stem cell therapy and lipid-modifying therapies, to improve outcomes in patients with diabetes and coronary artery disease.
Professor Sang Min Kim's research lab focuses on molecular mechanisms underlying cancer progression, particularly the role of inflammatory cytokines and natural compounds in regulating tumor cell migration and invasion. The lab also investigates bone metabolism and regenerative processes, including the effects of osteoporosis treatments and surgical techniques on orthopedic outcomes. Additionally, the lab explores cellular responses to environmental stressors such as UV radiation, with a focus on signaling pathways involving ceramide and matrix metalloproteinases in skin aging and fibrosis. These interdisciplinary efforts span cancer biology, orthopedic surgery, and dermatology, emphasizing translational research.
Professor Jeon Byung-woo's research lab specializes in advanced image processing and signal restoration, with a strong focus on multitemporal and hyperspectral image analysis, contextual classification, and artifact reduction. The lab develops innovative algorithms that leverage spatiotemporal dependencies, prior structural constraints such as low-rank and total variation, and decision fusion techniques to improve classification accuracy and image quality. Key research directions include robust classification under limited training data, noise and artifact suppression in compressed images, and efficient restoration of hyperspectral data using combined optimization constraints. The lab emphasizes practical applicability in remote sensing, medical imaging, and multimedia systems.
Professor Hyun-Moo Shin's research lab specializes in the development of high-efficiency organic optoelectronic devices, with a primary focus on organic light-emitting diodes (OLEDs) for next-generation display and lighting technologies. The lab pioneers advanced materials and device architectures—such as exciplex-forming co-host systems, fluorescent emitters with reverse intersystem crossing (RISC), and horizontally oriented emitters—to achieve near-theoretical external quantum efficiencies. A key research direction involves engineering molecular structures and interfacial layers to control dipole orientation and enhance light outcoupling, significantly boosting device performance. Additionally, the lab explores the fundamental mechanisms of T cell signaling and transcriptional regulation in immune responses, particularly in CD8+ T cell differentiation during viral infections.