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 Yongjin Yoon's research lab specializes in the psychological and behavioral aspects of sport and physical activity participation, with a strong focus on motivation, flow experience, and well-being. The lab investigates how factors such as self-regulation, social relationships (e.g., leader-member and team-member exchange), and cognitive processes (e.g., self-efficacy, outcome expectations) influence engagement, satisfaction, and performance in sports and exercise contexts. Research spans diverse populations including golfers, taekwondo athletes, and general adult exercisers, often employing structural equation modeling and advanced statistical techniques to explore mediating and moderating effects.
Professor Yung San Kim's research lab specializes in corporate finance, industrial organization, and competition policy, with a strong focus on market structure, corporate governance, and regulatory economics. The lab investigates how firm-level financial decisions—such as capital structure, trade credit, and executive turnover—are shaped by market dynamics, industrial organization, and institutional frameworks like leniency programs and spectrum allocation. It also explores the economic impacts of regulatory interventions, including antitrust enforcement, energy market reforms, and telecommunications policy. The lab employs advanced econometric methods and structural modeling to analyze real-world data and inform policy design.
Professor Huiwon Yoo's research lab specializes in pulmonary and neuromuscular rehabilitation, with a focus on respiratory function assessment and noninvasive ventilation in patients with neuromuscular diseases, burns, and post-stroke cognitive impairment. The lab investigates the efficacy of noninvasive interventions such as transcranial direct current stimulation (tDCS), mechanical insufflation-exsufflation (MI-E), and cardiopulmonary exercise testing for optimizing respiratory and cognitive outcomes. Key research directions include validating predictive equations for VO₂max, evaluating respiratory muscle strength, and advancing home-based and remotely supervised rehabilitation strategies for chronic conditions.
Professor Hong, Soon Beom's research lab focuses on the neurobiological and environmental underpinnings of attention-deficit/hyperactivity disorder (ADHD), with a particular emphasis on the interplay between environmental exposures—such as lead and phthalates—and neurodevelopmental outcomes. The lab employs advanced neuroimaging techniques, including diffusion tensor imaging and resting-state fMRI, to investigate brain connectivity, functional networks, and structural maturation in children with ADHD. Genetic factors, especially polymorphisms in dopamine-related genes (e.g., COMT, DAT1, ADRA2A), are also central to their research, exploring how these interact with environmental toxins to influence cognitive and behavioral phenotypes. The lab aims to identify biomarkers and intermediate phenotypes that can improve early diagnosis and personalized treatment strategies for ADHD.
Professor Mi Hyun Bae's research lab specializes in clinical immunology and hematological malignancies, with a focus on applying flow cytometry to understand immune cell dysfunction and tumor microenvironment in diseases such as plasma cell myeloma, systemic mastocytosis, and sepsis. The lab investigates prognostic biomarkers, including circulating plasma cells, myeloid-derived suppressor cells (MDSCs), and neutrophil phenotypes, to improve diagnosis, risk stratification, and treatment monitoring. A key direction involves translational research linking immunophenotypic abnormalities to clinical outcomes in hematologic disorders.
Professor Sang Hyun Park's research lab specializes in social and behavioral sciences within the domains of sports management, organizational behavior, and gender studies. The lab focuses on understanding consumer behavior in sports technology adoption, the psychological and social dynamics of student-athletes during career transitions, and the role of gender in political representation and organizational outcomes. Key research directions include the impact of innovation and perceived usability on technology acceptance, the formation and recovery of social networks among athletes, and the influence of corporate sponsorship strategies on advertising attitudes and brand perception.
Professor Dong-Hyuk Cho's research lab specializes in cardiovascular and metabolic health, with a focus on the pathophysiology of heart failure, particularly the role of organ-specific adiposity such as epicardial adipose tissue in cardiac remodeling. The lab investigates the impact of lifestyle factors—like physical activity and statin use—on outcomes in infectious diseases (e.g., COVID-19) and postoperative complications. Using large-scale population-based cohorts and advanced imaging techniques (e.g., cardiac MRI and echocardiography), the lab explores biomarkers and risk prediction models for heart failure and cardiovascular events. Their work bridges clinical cardiology with preventive medicine and precision health strategies.
Professor Jeong-yoon Kim's research lab focuses on environmental health and epidemiology, with a strong emphasis on the impact of air pollution and weather conditions on respiratory health, particularly in emergency department settings. The lab investigates the biological mechanisms of disease progression, especially in cancer and inflammatory conditions, through molecular studies on signaling pathways such as Notch. Additionally, the lab examines the health effects of dietary components, including whole grains, on metabolic and liver function. Their work integrates clinical data, environmental monitoring, and molecular biology to address public health challenges in South Korea and beyond.
Professor Seungjoon Yang's research lab specializes in image and video processing, with a focus on enhancing visual quality in compressed and degraded images. Key research directions include artifact removal in compressed video (e.g., ringing artifacts in JPEG2000), contrast enhancement techniques with controllable dynamic range, and advanced interpolation methods for image size conversion. The lab emphasizes robust, computationally efficient algorithms grounded in statistical modeling and optimization, often leveraging techniques like k-means clustering and bilateral filtering.
Professor Hyun-Cheol Kang's research lab specializes in radiation oncology, with a focus on optimizing radiation therapy techniques to improve treatment outcomes while minimizing toxicity. The lab investigates the biological and dosimetric effects of radiation dose rate, fractionation, and energy in various treatment modalities, including total body irradiation (TBI), volumetric arc therapy (VMAT), and brachytherapy. Key research directions include predicting treatment response through biomarkers such as neutrophil-to-lymphocyte ratio (NLR), COX-2, and BFABP, and evaluating long-term complications like pulmonary toxicity and lymphedema. The lab also explores prophylactic strategies, such as EGF-based creams, to mitigate radiation-induced dermatitis.
Professor Chirok Han's research lab specializes in econometric theory and applied microeconometrics, with a focus on panel data models, dynamic econometric methods, and estimation under weak identification. The lab develops robust statistical procedures for models with incidental parameters, many instruments, or near-unit root dynamics, emphasizing consistency, finite-sample performance, and practical implementation. Current work also extends to macroeconomic issues such as current account imbalances, particularly in the context of demographic transitions and long-term economic sustainability. The lab bridges theoretical econometrics with real-world policy-relevant applications, especially in emerging and advanced economies.
Professor Jae-Hyuk Choi's research lab specializes in low-power, adaptive imaging systems and smart sensor technologies for mobile, wearable, and wireless applications. The lab focuses on developing energy-efficient CMOS image sensors with dynamic operating modes, object-adaptive sensing, and illumination or motion-triggered operation to minimize power consumption. Key research directions include spatial-temporal multiresolution imaging, energy harvesting integration, and advanced signal processing for real-time object detection and tracking. The lab also explores nanomaterial-based flexible sensors, particularly silver nanowire-based strain sensors, for next-generation wearable and embedded sensing systems.
Professor Minsu Park's research lab specializes in advanced materials and biomedical technologies, focusing on the development of novel semiconductor devices for infrared detection and the application of bio-inspired strategies in cancer therapy. The lab investigates materials such as InGaAs/InP heterojunction phototransistors and quantum well infrared photodetectors, emphasizing surface passivation and wafer bonding techniques to enhance device stability and performance. Concurrently, the lab explores cancer stem cell targeting through proton modulation and natural compound-based therapeutics, aiming to overcome treatment resistance in oncology. These interdisciplinary efforts bridge materials science and biomedicine to address critical challenges in both electronics and cancer therapy.
Professor Ji-Hye Cho's research lab focuses on molecular mechanisms underlying inflammatory and fibrotic diseases, cancer progression, and metabolic disorders. Key research directions include the role of signaling molecules such as TGF-β, MEIS2, and neuropeptides in cancer (e.g., neuroblastoma) and skin disorders (e.g., psoriasis), as well as the pathophysiology of aspirin-exacerbated respiratory disease and lipid metabolism in coronary artery disease. The lab integrates molecular biology, immunohistochemistry, and clinical correlation to explore therapeutic targets in cancer, inflammation, and cardiovascular disease.
Professor Jong-soo Choi's research lab specializes in environmental remediation and sustainable materials development, focusing on advanced adsorbents and treatment technologies for water and air pollution control. Key research directions include the synthesis and application of nanomaterials—such as zero-valent iron nanoparticles and MXenes—for the removal of hazardous pollutants like dyes, explosives (TNT, RDX), radionuclides (Th(IV), U(VI)), and airborne dust particles. The lab also investigates low-impact urban drainage systems and innovative dust suppression techniques using biopolymers, emphasizing practical environmental engineering solutions. Their work integrates materials science, environmental chemistry, and hydrological modeling to address critical challenges in water safety, air quality, and nuclear waste management.
Professor Kyung-Ho Choi's research lab specializes in advanced materials and biomedical engineering, with a focus on developing innovative solutions for medical training, secure mobile communication, and regenerative medicine. The lab pioneers the application of 3D printing in surgical education using patient-specific spine models to enhance surgical precision and training efficiency. It also explores cutting-edge display technologies, such as auto-stereoscopic 3D displays, and designs secure authentication systems for NFC-based mobile payments. Additionally, the lab investigates bioactive materials, including platelet-rich plasma and novel polyamide-imide polymers, for tissue regeneration and biomedical applications.
Professor Jae-Min Jung's research lab specializes in the development of advanced functional materials for sustainable energy applications, with a strong focus on thermoelectric materials and organic electronics. The lab explores solution-processed thin films, molecular doping strategies, and hybrid nanomaterials to enhance thermoelectric performance in flexible and wearable devices. Key research directions include designing self-healing and stretchable thermoelectric materials, optimizing polymer/carbon nanotube composites, and improving the stability and efficiency of conductive polymers like PEDOT:PSS and P3HT.
Professor Juhwan Woo's research lab specializes in translational oncology and molecular pathology, focusing on the biological mechanisms underlying cancer progression, therapeutic resistance, and prognostic biomarkers. Key research directions include the role of DNA repair and redox regulation proteins—such as APE1—in cancer treatment response, the impact of multifocality and tumor microenvironment features (e.g., biofilms) in thyroid and head and neck cancers, and the modulation of therapy sensitivity in HER2-positive breast cancer through agents like selenium. The lab integrates clinical data with molecular and cellular studies to identify novel therapeutic targets and improve patient outcomes.
Professor Jee Yoon Park's research lab specializes in maternal-fetal medicine and reproductive health, with a focus on understanding the biological mechanisms underlying preterm birth, intra-amniotic inflammation, and fetal microbial colonization. The lab investigates biomarkers such as PGF2α and progesterone in pregnancy complications, explores microbiome dynamics in mother-neonate pairs, and pioneers in vitro models like organ-on-a-chip systems to simulate human pregnancy for drug testing and disease modeling. Their work bridges clinical obstetrics with cutting-edge bioengineering and microbiome science to improve perinatal outcomes.
Professor Jong Won Hong's research lab specializes in regenerative medicine and surgical innovation, with a primary focus on stem cell therapy for tissue repair and wound healing, particularly using mesenchymal stem cells (MSCs) derived from dental pulp and cord blood. The lab investigates the immunomodulatory mechanisms of these cells and their therapeutic potential in promoting tissue regeneration, while also exploring safe and effective clinical applications of biological agents such as human placental extract. Additionally, the lab is actively involved in microsurgical technique development and the management of complications from soft tissue fillers, emphasizing precision and safety in clinical procedures.