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 Hyun-hye Cho's research lab specializes in medical imaging and diagnostic radiology, with a focus on advancing cardiovascular and abdominal imaging techniques. The lab investigates the accuracy and clinical utility of echocardiography, MRI, CT, and multiparametric MRI in assessing heart function, structural heart disease, and incidental findings in oncology. Key research directions include improving image reconstruction methods—such as virtual non-contrast CT—evaluating imaging biomarkers for heart failure and cancer, and refining diagnostic criteria for conditions like prostate cancer and bowel wall thickening in children.
Professor Min Insik's research lab specializes in econometric modeling and applied microeconomics, with a focus on advanced statistical methods for causal inference and policy analysis. The lab investigates household financial behavior, environmental health impacts, and housing demand using sophisticated econometric techniques such as type II Tobit models, quantile regression, and endogenous switching regression with flexible error distributions. Research directions emphasize methodological innovation—particularly in semiparametric and nonparametric estimation—applied to real-world data from national surveys and environmental monitoring systems.
Professor Heewon Cha's research lab specializes in organizational communication, corporate reputation, and public relations evaluation, with a strong focus on empirical measurement and strategic communication. The lab investigates how dialogue, media coverage, issue salience, and trust influence corporate reputation, particularly within the Korean context. It also develops and validates comprehensive reputation indices and evaluation models for public and policy organizations, integrating communication, ethics, and stakeholder perceptions.
Professor Seong-Jun Oh's research focuses on radio resource allocation and cross-layer optimization in wireless communication networks, particularly in direct-sequence code-division multiple access (DS-CDMA) systems. His work explores dynamic power control, spreading gain adaptation, and quality-of-service (QoS) provisioning for mixed real-time and non-real-time traffic. He investigates distributed algorithms that maximize spectral efficiency and aggregate throughput while ensuring fairness and reliability under peak power constraints. His research bridges theoretical optimization with practical deployment in multiuser wireless networks.
Professor Tae Jun Yoon's research lab specializes in computational and theoretical studies of fluid behavior under extreme conditions, with a focus on supercritical fluids, ion transport in aqueous electrolytes, and structural and dynamic transitions in soft matter. The lab employs advanced molecular dynamics simulations and topological analysis to explore phenomena such as the Frenkel line, Widom line, ion pairing, and percolation transitions, aiming to bridge microscopic structure with macroscopic transport properties. A key strength lies in developing novel classification and geometric frameworks—such as Voronoi tessellation and mean-field classification—to identify phase-like boundaries and transitions in supercritical states.
Professor Haijeon Yoon's research lab specializes in nuclear medicine and molecular imaging, with a focus on improving cancer prognosis and treatment response prediction through advanced medical imaging techniques. The lab investigates tumor heterogeneity using textural analysis of FDG-PET and diffusion-weighted MRI in breast and gastric cancers, explores the clinical implications of physiological FDG uptake in the gut related to microbiota and inflammation, and evaluates lymphoscintigraphy and SPECT/CT for lymphedema staging and surgical outcome prediction. Their work bridges medical imaging, oncology, and molecular biology to enhance personalized cancer care and lymphatic system diagnostics.
Professor Woojin Chang's research lab specializes in statistical modeling and data analysis with a focus on reliability engineering, survival analysis, and statistical learning. The lab develops advanced methodologies for handling incomplete or censored data, particularly in reliability trend analysis using power law processes and wavelet-based classification techniques. Research also extends to econometric applications, such as the impact of financial distress risk on executive compensation, integrating statistical inference with real-world economic decision-making. The lab emphasizes both theoretical rigor and practical implementation across engineering, industrial, and financial domains.
Professor Nam-Hoon Cho's research lab specializes in advanced guidance, navigation, and control (GNC) systems for aerospace and unmanned vehicles. The lab focuses on nonlinear optimal control, autonomous path-following, and real-time obstacle avoidance in complex environments, with applications in UAVs, interceptors, and unpowered glide vehicles. Key research directions include the development of exact analytical solutions for guidance laws, adaptive control with improved parameter convergence, and robust collision avoidance using sensor-based dynamic obstacle estimation. The lab emphasizes practical implementation through integration of advanced estimation techniques, such as Kalman filtering, and sensor data (e.g., LiDAR) for real-time decision-making.
Professor Jeehyun Lee's research lab focuses on the intersection of emerging technologies and human-centered communication, particularly in fashion, healthcare, and education. The lab explores the sensory and emotional dimensions of augmented reality in fashion communication, the pharmacodynamic effects of antiplatelet drugs in East Asian populations, and the development of effective academic writing skills among Korean university students. Additionally, the lab investigates digital media engagement, such as motivation and behavioral intention in golf-related YouTube content, and examines structural and individual factors influencing school violence. These diverse yet interconnected research directions highlight a strong emphasis on technology integration, behavioral outcomes, and socio-cultural contexts in communication and health sciences.
Professor Suk Bin Lee's research lab specializes in advanced materials for next-generation optoelectronic devices, with a primary focus on perovskite-based solar cells and light-emitting diodes (PeLEDs). The lab investigates novel charge transport layers, defect engineering, and morphological control to enhance device efficiency and stability. A key emphasis is placed on mechanical flexibility and shape-compatible device integration, including flexible, semitransparent, and conformal thermoelectric systems. The lab also explores fundamental mechanical properties of perovskite films and grain boundary dynamics in soft materials to guide durable and high-performance device design.
Professor Eunseong Kim's research lab focuses on interdisciplinary studies spanning biomedical sciences, materials science, and clinical health research. The lab investigates metabolic and inflammatory markers in adolescent obesity, exploring the impact of lifestyle interventions like exercise on insulin resistance and cardiometabolic health. It also conducts neuroimaging research on autobiographical memory and its neural correlates, particularly in relation to parent-child relationships and psychological well-being. Additionally, the lab develops advanced amorphous semiconducting polymers for high-performance organic electronics, emphasizing materials design and device performance. These diverse research directions reflect a strong commitment to understanding health mechanisms and advancing functional materials.
Professor Sung-eun Jeong's research lab specializes in health and political communication, with a focus on belief formation, attitude change, and perception biases in response to persuasive messages. The lab investigates how individuals perceive media influence on themselves versus others—particularly through third-person perception and polling effects—using experimental and longitudinal designs. Key research directions include the role of self-efficacy, success expectancy, and message characteristics in shaping behavioral intentions and attitude change. The lab also explores the dynamic time course of belief change in response to persuasive communication, integrating cognitive and social psychological models.
Professor Min Jong Park's research lab specializes in advanced arthroscopic and percutaneous surgical techniques for complex wrist injuries, focusing on minimizing soft tissue trauma while optimizing functional and radiographic outcomes. The lab investigates innovative methods for treating perilunate dislocations, distal radioulnar joint instability, and scaphoid non-union, emphasizing anatomical reduction, minimal invasive fixation, and improved recovery. A key research direction involves comparing arthroscopic and open surgical approaches to evaluate long-term joint preservation, stiffness, and patient-reported outcomes. The lab also explores adjunctive therapies, such as steroid injections, to enhance early postoperative recovery in hand and wrist pathologies.
Professor Soseon Jun Moon's research lab specializes in diabetes mellitus and metabolic disorders, with a strong focus on advancing glucose monitoring technologies and optimizing therapeutic strategies for both type 1 and type 2 diabetes. The lab investigates the clinical impact of medications such as SGLT2 and DPP4 inhibitors, evaluates the efficacy of continuous glucose monitoring systems—including real-time and blinded CGM in non-insulin-treated patients—and explores the implications of drug use (e.g., PPIs) on infectious disease outcomes like COVID-19. The lab also contributes to standardizing glucose monitoring accuracy through international consensus tools like the DTS Error Grid, enhancing patient safety and clinical decision-making.
Professor Hyung-Joon Park's research lab specializes in the genetic and clinical characterization of inherited myopathies, with a focus on identifying disease-causing mutations and understanding disease mechanisms in Korean populations. The lab investigates various forms of muscular dystrophy, including dysferlinopathy, calpainopathy, dystrophinopathy, and distal myopathies, using integrative approaches combining exome sequencing, cellular models, zebrafish models, and advanced imaging. Their work emphasizes genotype-phenotype correlations, pathological mechanisms, and the utility of neuroimaging and biomarkers in diagnosis and prognosis.
Professor Taeho Kim's research lab focuses on clinical and rehabilitative neuroscience, with a strong emphasis on neurological disorder management through advanced sensing, signal processing, and non-invasive neuromodulation. The lab investigates seizure detection and treatment using multimodal physiological signals (EEG, EMG, ECG) and explores innovative applications of non-invasive brain stimulation for epilepsy. Additionally, the lab conducts research on postural control, gait rehabilitation in stroke patients, and musculoskeletal interventions such as scapular and pelvic-focused exercises to improve mobility and body mechanics. Nutritional analysis of functional mushrooms is another emerging area, highlighting interdisciplinary work in health and nutrition.
Professor Young-hoon Yoon's research lab focuses on emergency medicine and critical care, with a strong emphasis on diagnostic accuracy, infection management, and toxicological emergencies in the emergency department. The lab investigates point-of-care testing biomarkers such as procalcitonin and D-dimer for early diagnosis of sepsis and pulmonary embolism, while also exploring adverse effects of herbal medicines like Ganoderma species. Additionally, the lab examines public health challenges such as tetanus immunity gaps and acute toxic exposures, aiming to improve clinical decision-making and patient outcomes in acute care settings. The research integrates clinical diagnostics, pharmacology, and health system data to address urgent medical needs in emergency care.
Professor Yeunju Yoo's research lab specializes in statistical and computational methods for genetic data analysis, with a focus on linkage disequilibrium (LD) block construction, haplotype inference, and gene-based association testing in genome-wide association studies (GWAS). The lab develops innovative R packages such as gpart and methods like Big-LD to efficiently partition high-density SNP data into biologically meaningful blocks, improving statistical power and interpretability. Research also emphasizes addressing challenges in complex genomic regions—such as killer immunoglobulin-like receptor (KIR) genes—where genotype ambiguity complicates haplotype inference. The lab integrates population genetics theory with practical bioinformatics tools to enhance the analysis of next-generation sequencing data in complex disease studies.
Professor Ja-Rim Kim's research lab specializes in health communication and behavioral science, focusing on how message framing, individual differences in future-oriented thinking, and relational dynamics influence health decision-making. The lab investigates persuasive communication strategies—particularly temporal framing and narrative formats—in promoting preventive health behaviors such as HPV vaccination. It also explores the role of social media and organizational reputation in crisis communication and public perception. A central theme is understanding how psychological factors like consideration of future consequences (CFC) shape health beliefs and behaviors.
Professor Dae-hyun Kim's research lab specializes in the intersection of corporate finance, environmental economics, and organizational behavior, with a strong focus on the real effects of financial constraints and corporate social responsibility (CSR) on firm behavior and societal outcomes. The lab investigates how financial conditions influence environmental externalities—such as toxic emissions—and how CSR initiatives impact employee attitudes and organizational performance through psychological and institutional mechanisms. Additionally, the lab explores the macroeconomic implications of public spending on private sector investment and innovation, particularly in the context of fiscal policy shocks and firm-level responses. The research integrates empirical industrial organization with institutional theory and behavioral economics to uncover micro-level mechanisms driving macro-level outcomes.