首尔大学、KAIST、延世大学等韩国QS前10名大学的研究室信息。
Professor Soo-Jin Park's research lab focuses on interdisciplinary biomedical and psychological research, spanning cancer metabolism, fluorescent probe development, regenerative medicine using stem cell-derived conditioned media, emotional recognition in human development, early language acquisition, and the psychological impact of visual aesthetics in photography. The lab integrates molecular biology, clinical applications, and cognitive science to explore metabolic reprogramming in hepatocellular carcinoma, novel fluorophore synthesis for biomedical imaging, and non-invasive therapies for hair loss. It also investigates the development of emotional perception across the lifespan and the role of environmental and sensory factors in early cognitive and linguistic development. The lab emphasizes translational research, bridging molecular mechanisms with clinical outcomes and human behavior.
Professor Soon-Ji Yoo's research lab focuses on the molecular mechanisms of protein quality control, particularly the regulation of proteolytic systems and ubiquitin-dependent pathways in cellular stress responses. The lab investigates ATP-dependent proteases such as HslVU in *E. coli* and explores their catalytic mechanisms and structural functions, with a strong emphasis on how protein degradation maintains proteostasis. Additionally, the lab examines the roles of E3 ubiquitin ligases, such as CHIP and Diap1, in targeting damaged or regulatory proteins for degradation under oxidative stress and in apoptosis regulation. These studies provide insights into fundamental processes linked to aging, cancer, and neurodegenerative diseases.
Professor Jae Hyun Kim's research lab focuses on pediatric health and metabolic disorders, with a strong emphasis on growth assessment, childhood obesity, and metabolic syndrome in Korean children and adolescents. The lab investigates epidemiological trends, risk factors, and clinical outcomes related to type 1 diabetes mellitus, pediatric obesity, and post-surgical complications such as delayed gastric emptying after esophagectomy. Their work integrates anthropometric data, nutritional status, and long-term health outcomes using national health surveys and clinical studies.
Professor Do Kyung Lee's research lab specializes in perovskite-based optoelectronic materials, with a primary focus on advancing high-efficiency, large-area perovskite solar cells for commercialization. The lab explores innovative film fabrication techniques—such as air-knife-assisted coating and anti-solvent-free adduct strategies—combined with chemical engineering of precursors and additives to control crystal growth and reduce defect densities. Their work emphasizes improving power conversion efficiency, carrier lifetime, and film quality through precise stoichiometric and molecular-level control, aiming to bridge the gap between lab-scale performance and scalable manufacturing. The lab also investigates stability and defect mitigation, critical for long-term device performance and real-world deployment.
Professor Seung Jae Heo's research lab specializes in radiation oncology and advanced radiotherapy techniques, with a focus on improving treatment outcomes for cervical cancer and other malignancies through image-guided brachytherapy and intensity-modulated radiation therapy (IMRT). The lab investigates the biological and clinical impacts of radiation dose optimization, including the use of FDG-PET/CT for accurate target delineation and the effects of physiological factors like bladder distention on treatment planning. They also explore molecular mechanisms of tumor suppression, particularly in melanoma, to identify novel therapeutic targets.
Professor Gwang-Won Kim's research lab focuses on endocrine and metabolic diseases, with a strong emphasis on diabetes mellitus and its associated complications, including cancer and thyroid disorders. The lab investigates the interplay between metabolic syndrome, pancreatic function, and oncological outcomes, particularly in the context of live donor kidney transplantation and thyroid nodular disease. Key research directions include the early detection of medullary thyroid cancer, the impact of hemoglobin levels on HbA1c measurement, and the metabolic consequences of partial pancreatectomy in patients with benign pancreatic tumors. The lab integrates clinical epidemiology with advanced diagnostic imaging and biomarker analysis to improve patient outcomes in endocrine and transplant medicine.
Professor You Hwan Jo's research lab specializes in critical care medicine and emergency medicine, with a focus on early detection and prognostic assessment in acute conditions such as sepsis, stroke, and vertebral compression fractures. The lab investigates biomarkers like monocyte and phosphate levels, as well as advanced monitoring technologies such as near-infrared spectroscopy (fNIRS) for real-time hemodynamic assessment. Key research directions include improving risk stratification tools—such as the DEWS score—for rapid response systems and evaluating the impact of acute conditions on patient outcomes. The lab also explores non-invasive anesthetic and sedation strategies in pediatric critical care.
Professor Woo Jin Kwon's research lab specializes in observational astrophysics, focusing on the role of magnetic fields and dust evolution in star and planet formation. The lab conducts high-resolution submillimeter and millimeter-wave observations using advanced instruments such as POL-2 on the James Clerk Maxwell Telescope and ALMA, targeting star-forming regions like ρ Oph, Serpens Main, and Perseus. Key research directions include magnetic field morphology in dense cores and filaments, disk substructures, grain growth in protostellar environments, and the physical properties of protoplanetary disks through radiative transfer modeling and Bayesian inference. The lab integrates polarimetry, continuum, and spectral line data to understand the interplay between magnetic fields, turbulence, and gravitational collapse in early stellar and planetary system formation.
Professor Boseok Kang's research lab specializes in organic semiconductors and printed electronics, with a strong focus on advancing the performance, stability, and processability of organic field-effect transistors (OFETs). The lab explores innovative materials design—such as fluorinated side chains and electrically insulating units—to enhance charge transport and device reliability. Key research directions include the development of high-mobility n-type conjugated polymers, tunable electrode work functions via surface functionalization, and environmentally friendly processing of conjugated polymers through water-dispersible nanoparticles. The lab also investigates fundamental mechanisms of device degradation, particularly bias stress instability, to guide next-generation organic electronic materials.
Professor Jang Hwan Kwon's research lab specializes in power electronics and electrical machine control, with a focus on advanced modulation techniques for multi-leg voltage source converters and multilevel inverters in high-power applications. The lab also explores hardware-based cryptography using nanoscale physical unclonable functions for secure Internet of Things (IoT) devices. Additionally, the lab investigates sensorless control strategies for induction machines, particularly rotor flux estimation using observer-based methods. Recent work extends into biomedical applications, including the use of intravesical therapies for neurogenic bladder disorders.
Professor Gi Beom Kim's research lab focuses on pediatric cardiovascular diseases, with a primary emphasis on Kawasaki disease (KD) epidemiology, clinical management, and long-term outcomes in children. The lab investigates the rising incidence of KD in East Asia, particularly in South Korea, and explores risk factors, treatment patterns, and coronary complications to improve early diagnosis and intervention. Additionally, the lab is involved in interventional cardiology research, including the development and evaluation of transcatheter pulmonary valve implantation for congenital heart disease. The work aims to enhance clinical outcomes through evidence-based strategies and innovative device applications.
Professor Sokchan Lee's research lab focuses on plant virology and the molecular mechanisms underlying viral infections in plants, particularly geminiviruses and begomoviruses that affect major crops such as tomato and Arabidopsis. The lab investigates host-virus interactions, viral replication, gene expression, and movement within host plants, as well as the role of host factors like transporters in determining susceptibility. Additionally, the lab explores the anti-cancer effects of high-dose ascorbic acid, particularly its mechanism involving ROS generation and SVCT-2 transporter expression, linking plant virology with biomedical research on vitamin C. The lab also contributes to the molecular characterization of emerging plant viruses, such as ToLCNDV-ES, and their spread across regions.
Professor Sunju Kim's research lab specializes in computer vision and image processing, with a strong focus on radiometric calibration, video super-resolution, and semi-supervised video object segmentation. The lab develops deep learning-based methods that address fundamental challenges in image and video reconstruction, such as motion estimation, exposure variation, and radiometric inconsistencies. Key research directions include end-to-end learning frameworks for high-quality image and video enhancement, robust estimation of camera response functions, and efficient algorithms for real-world imaging applications.
Professor Nayun Han's research lab focuses on translational and molecular oncology, with a strong emphasis on understanding the pathophysiology of liver diseases, particularly portal vein thrombosis and hepatocellular carcinoma, in the context of cirrhosis. The lab investigates novel therapeutic strategies, including individualized management algorithms involving anticoagulation, TIPS, and watchful waiting, as well as the role of proteases and signaling pathways such as PARs and DACH1-CXCL5 in tumor progression. Additionally, the lab explores diagnostic imaging biomarkers, such as those from gadoxetic acid-enhanced MRI, to differentiate benign from malignant conditions in cancer patients. A significant component of the research also involves the pharmacological characterization of bioactive natural compounds, particularly benzophenanthridine alkaloids, for their potential therapeutic applications.
Professor Jae-young Kwon's research lab focuses on the molecular and cellular mechanisms underlying chemosensation in *Drosophila*, with a central emphasis on gustatory and CO₂ sensing. The lab investigates the genetic and neural basis of sensory perception, particularly the roles of gustatory receptor (Gr) families in detecting diverse chemical stimuli, including CO₂, bitter compounds, and gut-derived signals. Using Drosophila as a genetically tractable model, the lab explores how chemosensory systems regulate behavior, metabolism, and host defense, especially in the context of the gut and innate immunity. Their work bridges sensory biology, neurogenetics, and physiology to uncover conserved principles of chemosensation across animals.
Professor Chang Kyung Kang's research lab specializes in viral immunology and host-pathogen interactions, with a strong focus on understanding the immune responses to emerging respiratory viruses such as MERS-CoV and SARS-CoV-2. The lab investigates cellular immune mechanisms, including T-cell activation, memory responses, and cytokine profiles, particularly in the context of severe disease and nosocomial transmission. They also evaluate the immunogenicity of vaccines and antiviral therapies, such as lopinavir/ritonavir and hydroxychloroquine, in both in vitro and clinical settings. Their work provides critical insights into the pathogenesis of coronavirus infections and the development of effective host-directed interventions.
Professor Bongjun Yeom's research lab specializes in the design and fabrication of advanced functional nanomaterials with applications in energy, electronics, and biomedicine. Key research directions include the development of 3D chiral plasmonic nanostructures for enhanced chiroptical responses, elastomeric conductive materials for wearable electronics, and ultrathin, high-performance energy-harvesting devices using layer-by-layer assembly. The lab also focuses on innovative separator materials for lithium-metal batteries and bio-inspired nanostructured thin films with controlled morphology and functionality.
Professor Tae Hong Cho's research lab specializes in the phonetics-prosody interface, focusing on how prosodic structure—such as accent, prosodic boundaries, and morphological structure—affects articulatory timing, vowel and consonant realization, and coarticulation. The lab employs advanced articulatory phonetics methods, including electromagnetic articulography (EMA) and electropalatography (EPG), to investigate the dynamic interplay between phonological structure and speech motor control across languages. Key research directions include prosodic strengthening, intergestural coordination, and the phonetic realization of linguistic contrasts such as voicing and nasality.
Professor Kyungsu Seok's research lab specializes in spinal deformity correction, cervical spine biomechanics, and surgical outcomes in degenerative and inflammatory spinal conditions. The lab focuses on optimizing spinal alignment through quantitative radiographic analysis, particularly in patients with ankylosing spondylitis and cervical spondylosis, and investigates surgical techniques such as laminoplasty and pedicle subtraction osteotomy. A key emphasis is placed on identifying predictive parameters for postoperative alignment and functional outcomes, including thoracic inlet angle, chin-brow vertical angle, and segmental motion. The lab also explores molecular mechanisms of infection, notably in Borrelia burgdorferi, using immunological screening to identify in vivo-expressed virulence genes.
Professor So-Won Han's research lab specializes in interdisciplinary studies at the intersection of cognitive psychology, human-computer interaction, and biomedical imaging. The lab investigates how personality traits and cognitive control influence attention and decision-making, particularly through experimental paradigms like change detection and task switching. It also explores the role of human-like mind perception in shaping user acceptance of AI-driven support systems, such as chatbots. Additionally, the lab contributes to computational methods in engineering, focusing on adaptive mesh refinement for high-accuracy simulations in magnetostatic problems.