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 Eun-kyung Lee's research lab focuses on developmental psychology and behavioral health, with a primary emphasis on the impact of parenting styles—particularly psychological control—on adolescent mental health, self-esteem, and identity development. The lab also investigates the biological mechanisms underlying aggressive cancers, such as triple-negative breast cancer, with a focus on molecular pathways involving glutathione peroxidase-1 and cell adhesion signaling. Additionally, the lab engages in interdisciplinary research in 3D imaging and medical technology, including multi-view video generation and cataract surgery practices. These diverse research directions reflect a strong commitment to understanding both psychological and biological factors in human health and disease.
Professor Sok-Jin Yoon's research lab specializes in theoretical and computational astrophysics, focusing on the formation, evolution, and observational signatures of globular clusters in early-type galaxies. The lab investigates the nonlinear relationships between stellar population properties—such as metallicity, color, and horizontal branch morphology—and their implications for galaxy formation and cluster dynamics. A central theme is the role of nonlinearity in color-metallicity transformations, which can explain observed bimodal color distributions in clusters without requiring multiple formation episodes. The lab also explores the dynamical evolution of black hole binaries and intermediate-mass black holes in dense stellar environments, linking cluster properties to gravitational wave source populations.
Professor Sukho Kang's research lab specializes in data-driven molecular design and machine learning for chemical and materials science applications. The lab focuses on developing deep generative models, graph neural networks, and uncertainty-aware prediction frameworks to accelerate molecular property prediction, reaction yield estimation, and NMR chemical shift prediction. Key research directions include conditional molecular generation, robust k-nearest neighbor learning, and predictive modeling for semiconductor manufacturing yield optimization using graph-based representations. The lab integrates graph representation learning with variational inference and reinforcement learning to enable efficient and accurate exploration of complex chemical and process spaces.
Professor So Young Kim's research lab specializes in the development of advanced functional materials and wearable sensors for human health monitoring and human-machine interaction. The lab focuses on designing hierarchical nanomaterials—particularly carbon nanotube-based microyarns and ionic conductive textiles—for highly sensitive, multimodal, and self-powered mechanical sensors. Key research directions include piezocapacitive and triboelectric-fexoelectric sensing, nanoscale thermal transitions in polymers, and bioactive compound enhancement in plants through phytohormone modulation. The lab integrates materials science, nanotechnology, and biomedical engineering to create next-generation smart wearable systems and sustainable energy solutions.
Professor Jae Sang Lee's research lab specializes in advanced optoelectronic materials and devices, with a primary focus on organic light-emitting diodes (OLEDs) and phosphorescent materials for next-generation displays and solid-state lighting. The lab investigates fundamental degradation mechanisms in OLEDs and develops innovative strategies—such as molecular hot excited state management and interface engineering using atomic layer deposition—to enhance device stability and operational lifetime. Additionally, the lab explores intelligent sensing systems, including vision-based navigation for unmanned vehicles, integrating computer vision and machine learning algorithms for real-time terrain analysis and autonomous navigation.
Professor Ji-Eun Jeon's research lab focuses on the interplay between metabolic dysregulation, body composition, and long-term complications in diabetes and cardiometabolic diseases. Key research directions include the role of glycemic variability—both short- and long-term—in the development of diabetic cardiovascular autonomic neuropathy, the impact of serum albumin and sarcopenia on prediabetes and diabetes progression, and the interaction between low muscle mass and abdominal obesity in driving metabolic and cardiovascular risk. The lab employs longitudinal, population-based studies with advanced monitoring techniques such as continuous glucose monitoring and bioelectrical impedance analysis to identify early biomarkers and risk modifiers.
Professor Jae Hwa Cho's research lab specializes in respiratory and critical care medicine, with a focus on interstitial lung diseases, pneumothorax, and pulmonary complications in systemic autoimmune conditions. The lab investigates the clinical management and outcomes of patients with acute respiratory conditions such as pulmonary embolism and influenza A/H1N1, particularly in intensive care settings. It also explores molecular mechanisms in gastric carcinoma, especially p53 mutations and their implications in tumor heterogeneity and invasiveness. The lab integrates clinical epidemiology with molecular pathology to improve diagnostic and therapeutic strategies in pulmonary and critical care medicine.
Professor Seungguk Baek's research lab specializes in translational biomedical research with a focus on head and neck cancers, particularly thyroid and tongue cancers, and neurological disorders such as gliomas and hearing loss. The lab investigates molecular mechanisms underlying disease progression, including lymph node metastasis, blood-brain barrier penetration, and epithelial barrier dysfunction. Using clinical data, genomics, and nanotechnology, the lab develops targeted therapeutic strategies, including nanoparticle-based drug delivery and laser-activated nanoshells for tumor ablation.
Professor Hyunjung Shim's research lab specializes in computational imaging and computer vision, with a focus on advancing 3D reconstruction, image denoising, and face relighting using deep learning and sensor modeling. The lab develops innovative neural network architectures and loss functions to enhance image quality in medical and consumer imaging, particularly in low-dose CT and time-of-flight (ToF) depth sensing. Key research directions include perceptual image restoration, material-aware 3D acquisition, and efficient model observers for medical imaging tasks. The lab also pioneers techniques for realistic face synthesis without explicit 3D reconstruction, leveraging probabilistic models for diffuse and specular reflectance.
Professor Namjo Kim's research lab specializes in tourism and hospitality studies with a focus on socio-psychological and environmental dimensions of tourism development. The lab investigates resident and tourist attitudes, motivations, and behavioral responses in tourism contexts, particularly in relation to social exchange, perceived impacts, and sustainability. Key research directions include green tourism, climate change adaptation in tourism, adventure recreation behavior, and the role of public sector attitudes in tourism policy implementation. The lab employs mixed-methods approaches, including surveys, structural equation modeling, and content analysis, to explore tourism dynamics in East Asia, especially South Korea and North Korea.
Professor Seabeom Hur's research lab specializes in diagnostic and interventional radiology, with a focus on optimizing computed tomography protocols for improved lesion detection in liver cancer, particularly hepatocellular carcinoma (HCC). The lab investigates low-dose, low-tube-voltage CT techniques combined with advanced image reconstruction algorithms like IRIS to enhance lesion-to-liver contrast while minimizing radiation exposure. Additional research interests include perfusion imaging for peripheral vascular disease, endovascular interventions for gastrointestinal bleeding, and advanced imaging of post-surgical complications such as lymphatic leakage. The lab integrates clinical radiology with interventional techniques to improve diagnostic accuracy and patient outcomes.
Professor Hyun-Sang Jo's research lab focuses on the intersection of metabolic health, neurological disorders, and smart energy systems. The lab investigates molecular mechanisms underlying metabolic disturbances induced by psychotropic medications, with a particular emphasis on targeting energy homeostasis pathways such as AMP-activated protein kinase. It also explores the application of advanced metering infrastructure and smart technologies for real-time monitoring and management of energy consumption in residential settings. Additionally, the lab examines the role of genetic factors, such as APOE ε2, in stress-related psychiatric disorders and mitochondrial dysfunction in conditions like obstructive sleep apnea.
Professor Chunghun Lim's research lab focuses on the molecular mechanisms of viral persistence and host-virus interactions, particularly in Kaposi's sarcoma-associated herpesvirus (KSHV). The lab investigates how viral proteins such as latency-associated nuclear antigen (LANA) manipulate host cellular machinery to maintain viral episomes, regulate transcription, and evade immune surveillance. A central theme is the identification of host factors and viral proteins that interact to control viral latency and reactivation, with a strong emphasis on transcriptional and translational regulation. The lab also explores conserved regulatory mechanisms in circadian rhythms, revealing evolutionary insights into sleep-regulatory components across metazoans.
Professor Kyung Jae Yoon's research lab focuses on the intersection of biomedical engineering, clinical physiology, and precision health, with a primary emphasis on understanding the relationships between body composition, muscle function, and systemic health outcomes. The lab investigates how skeletal muscle mass, sarcopenia, and body composition—assessed through bioelectrical impedance analysis and advanced imaging—impact pulmonary function, inflammation, and metabolic health in both clinical and asymptomatic populations. Using large-scale population data and cutting-edge technologies such as sEMG-based gesture recognition and gut microbiome analysis, the lab explores sex-specific and biomarker-driven mechanisms linking muscle health to chronic disease risk. The research also extends into developing AI-driven diagnostic tools and wearable sensors for early detection of neuromuscular and respiratory disorders.
Professor Ryul Kim's research lab specializes in translational oncology and neurology, focusing on the tumor microenvironment in lung and esophageal cancers, particularly the role of immune checkpoint pathways such as PD-1/PD-L1 in treatment response and disease progression. The lab also investigates the long-term efficacy of deep brain stimulation in Parkinson’s disease, especially regarding motor symptoms like freezing of gait, and employs advanced imaging techniques such as FDG-PET/CT to predict treatment outcomes in head and neck squamous cell carcinoma. Their work bridges clinical oncology, neurology, and molecular imaging to improve patient stratification and therapeutic strategies.
Professor Gyeong-Chul Moon's research lab focuses on regenerative medicine and translational biomedicine, with a strong emphasis on stem cell therapies for chronic wounds and microcirculatory disorders, particularly in diabetic patients. The lab investigates the clinical application of adipose-derived stem cells (ASCs) and stromal vascular fraction (SVF) cells to enhance tissue repair and perfusion in ischemic conditions. Additionally, the lab explores molecular mechanisms in rare and aggressive cancers, such as extrapulmonary neuroendocrine carcinomas and primary renal neuroendocrine tumors, using immunohistochemical and molecular profiling approaches. These diverse research directions converge on improving patient outcomes through innovative cellular therapies and precision oncology.
Professor Myoung-Hwan Kim's research lab specializes in cellular and molecular neuroscience, with a focus on synaptic transmission, calcium signaling, and the molecular mechanisms underlying neuronal function and neurodevelopmental disorders. The lab investigates key regulators of synaptic plasticity, such as IRSp53 and NCKX exchangers, to understand their roles in dendritic spine dynamics, neurotransmitter release, and Ca2+ homeostasis. Additionally, the lab explores the pathophysiological impact of metabolic enzymes like aminopeptidase P1 on brain development and behavior, linking molecular dysfunction to neurological and behavioral deficits. The research integrates in vivo genetics, electrophysiology, and live imaging to dissect neural circuit mechanisms in health and disease.
Professor Seung Ho Baek's research lab specializes in the discovery and mechanistic investigation of bioactive natural compounds derived from plants and traditional medicinal sources, with a focus on their anti-cancer and anti-inflammatory properties. The lab explores the molecular mechanisms of these compounds, particularly their modulation of key signaling pathways such as STAT3, MAPK, and TGF-β/EMT, in various cancer types including lung, multiple myeloma, and head and neck cancers. Innovative point-of-care diagnostic platforms, such as 3D paper-based microfluidic devices, are also developed to support biomarker detection and therapeutic monitoring. The lab integrates molecular pharmacology with translational technologies to advance novel therapeutic strategies.
Professor Youngik Son's research lab specializes in nuclear medicine and head and neck oncology, focusing on improving diagnostic accuracy and treatment outcomes in patients with head and neck squamous cell carcinomas. The lab investigates metabolic and molecular imaging biomarkers—such as FDG-PET/CT-derived metabolic tumor volume and PD-L1 expression—to predict treatment response and survival. It also explores the role of immunotherapy, radiotherapy toxicity mitigation (e.g., xerostomia), and artificial intelligence in personalized prognosis modeling. The lab integrates advanced imaging, molecular pathology, and clinical data to enhance precision oncology in head and neck cancers.
Professor Gi-Hyeon Lee's research lab specializes in the therapeutic potential of animal venoms, particularly bee venom and its bioactive components such as melittin and group III secretory phospholipase A2 (sPLA2), for treating inflammatory, neurodegenerative, and immune-related diseases. The lab investigates the immunomodulatory, anti-inflammatory, and neuroprotective mechanisms of these venoms in both in vitro and in vivo models, with a focus on conditions like arthritis, Parkinson’s disease, depression, and skin disorders. The research also explores the clinical application of venom-based pharmacopuncture in Korean medicine, emphasizing safety and efficacy in chronic and relapsing diseases.