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 Woojin Jeong's research lab specializes in robotics and intelligent systems, with a strong focus on enabling safe, reliable, and human-friendly autonomous navigation in dynamic, real-world environments. The lab investigates key challenges in mobile robot perception, such as leg detection and tracking using laser range finders, motion uncertainty modeling, and collision avoidance in occluded or unstructured settings. A central theme is the development of robust, real-time control and planning algorithms that support service robots in human-centered applications like door opening, navigation, and assistance tasks. The lab also explores human-robot interaction aspects, including organizational factors influencing robot deployment in social settings.
Professor Je-Min Choi's research lab focuses on immunology and molecular mechanisms underlying T cell differentiation, function, and regulation in autoimmune diseases and cancer. The lab investigates key transcription factors (e.g., NFAT, PPARs), signaling molecules (e.g., Chi3l1), and novel therapeutic delivery systems (e.g., dNP2 peptide) to modulate T cell responses. A central theme is understanding how innate immune signals and metabolic regulators shape pathogenic T helper subsets such as Th1, Th2, and Th17 cells, with translational applications in multiple sclerosis, melanoma, and type 2 inflammation. The lab also explores bioactive compounds with immunomodulatory and antioxidant properties, aiming to identify novel therapeutic candidates.
Professor Hyun Chul Koh's research lab focuses on the molecular mechanisms underlying neurotoxicity induced by environmental toxicants, particularly pesticides, with an emphasis on oxidative stress, neuroinflammation, and cell death pathways such as apoptosis and autophagy. The lab investigates key signaling pathways—including PI3K/Akt/mTOR and MAPK/ERK—involved in neuronal cell survival and neural stem cell differentiation, aiming to identify novel therapeutic targets for neurodegenerative diseases. Using in vitro models like PC12 and SH-SY5Y cells, as well as human neural stem cells, the lab explores neuroprotective strategies using pharmacological agents and antioxidants. Their work bridges environmental toxicology and neuroscience, with a strong focus on dopaminergic neurotoxicity and mitochondrial dysfunction.
Professor Panki Kim's research focuses on stochastic processes, particularly Lévy processes and subordinate Brownian motions, with an emphasis on potential theory and transition densities. His work centers on deriving sharp two-sided estimates for heat kernels, Green functions, and transition densities of non-local processes in various domains, including C¹,¹ and κ-fat open sets. He investigates processes with general Lévy measures and generators involving Bernstein functions and regularly varying functions, extending classical results to broader classes of non-local operators. His research bridges probability theory, analysis, and partial differential equations, especially in the context of stable and relativistic processes with or without diffusion components.
Professor Youngmee Jee's research lab specializes in viral surveillance, emerging infectious diseases, and public health microbiology with a focus on arboviruses and enteric pathogens. The lab conducts virologic and molecular epidemiologic studies on diseases such as severe fever with thrombocytopenia syndrome (SFTS), measles, and norovirus, emphasizing genetic characterization, outbreak investigation, and the development of sensitive diagnostic methods. Their work supports global and national public health responses through surveillance, outbreak detection, and the application of molecular diagnostics in clinical and environmental settings.
Professor Ji Hyun Kim's research lab specializes in regenerative medicine and bioengineering, focusing on the development of advanced tissue-engineered constructs for clinical applications. The lab pioneers 3D bioprinting technologies to create functional, implantable skeletal muscle tissues that mimic native physiology, with an emphasis on enhancing tissue integration and neuromuscular functionality. Additionally, the lab investigates metabolic regulation and neurovascular mechanisms in disease models, including obesity and ischemic stroke, using preclinical and molecular approaches. These interdisciplinary efforts aim to bridge tissue engineering with translational medicine for regenerative therapies.
Professor Wonhyo Seo's research lab focuses on the pathophysiological mechanisms underlying liver diseases, particularly non-alcoholic fatty liver disease (NAFLD) and hepatocellular carcinoma (HCC). The lab investigates key cellular crosstalk involving immune cells (macrophages, neutrophils), hepatic stellate cells, and hepatocytes, with a central emphasis on extracellular vesicles, oxidative stress, and innate immune activation via TLRs and inflammasomes. Current research explores how metabolic stressors like palmitate and fructose drive gut-liver axis dysfunction, mitochondrial damage, and inflammation, ultimately promoting fibrosis and carcinogenesis.
Professor Sok Lee's research lab specializes in advanced biomedical engineering and clinical interventions, focusing on cardiac diagnostics and therapeutic technologies. The lab develops innovative, multifunctional devices for real-time in situ monitoring and control of cardiac activities, particularly in challenging physiological environments. Research also extends to surgical management of complex cardiovascular conditions, including arrhythmias, endocarditis, and rare vascular tumors, with an emphasis on perioperative hemodynamic stability and long-term outcomes. The integration of bioengineering solutions with clinical cardiology defines the lab’s translational approach.
Professor Sung Hyun Kim's research lab focuses on advancing biomedical and environmental applications through innovative engineering and clinical research. The lab investigates surgical outcome metrics, such as complication classification systems (e.g., Clavien-Dindo and Comprehensive Complication Index), to improve postoperative care and prognosis prediction in pancreatic surgery. It also explores novel surgical techniques, including conjunctival flap surgery for pterygium, aiming to enhance surgical outcomes and reduce complications. Additionally, the lab examines environmental toxicology, particularly the impact of nanomaterials like CuO and ZnO nanoparticles on soil ecosystems, assessing microbial toxicity, phytotoxicity, and bioaccumulation in crops.
Professor Jong-Hoon Kang's research lab specializes in the design and synthesis of advanced functional materials, with a strong focus on porous materials such as zeolites, SAPOs, and germanosilicates for catalytic applications—particularly in the methanol-to-olefins (MTO) process. The lab also pioneers innovative dry-processing techniques for lithium-ion battery electrodes, emphasizing eco-friendly manufacturing and enhanced electrochemical performance through novel conductive additives and polymer binders. Their work bridges materials chemistry, catalysis, and energy storage, targeting sustainable and high-performance solutions for clean energy technologies.
Professor Hee Eun Ro's research lab focuses on the central nervous system's role in regulating energy and glucose homeostasis, with a particular emphasis on brain-peripheral organ crosstalk involving the hypothalamus, gut hormones, and autonomic signaling. The lab investigates the neuroendocrine and metabolic mechanisms underlying obesity, sarcopenic obesity, and dyslipidemia, integrating clinical and translational approaches using imaging, metabolic phenotyping, and hormonal profiling. A key research direction involves understanding how gut-brain axis signaling can be targeted for next-generation anti-obesity therapies. The lab also explores the pathophysiological links between aging, muscle loss, and metabolic dysfunction in diverse populations, including Koreans and Caucasians.
Professor Young-Ho Khang's research lab specializes in advanced materials science, focusing on the development and characterization of functional materials for energy and biomedical applications. Key research directions include the investigation of transition metal dichalcogenides and metal oxides for high-performance optoelectronic and electronic devices, such as transistors and photovoltaics, as well as the exploration of platelet-rich fibrin and autophagy mechanisms in tissue regeneration and metabolic disease. The lab combines first-principles computational methods with experimental validation to understand electronic, vibrational, and defect-related properties at the atomic level.
Professor Woobin Jung's research lab specializes in the design and synthesis of advanced nanomaterials for sustainable energy and environmental applications. Key research directions include the development of 2D transition metal dichalcogenides (e.g., MoS2) for high-sensitivity gas sensing and the engineering of copper-based electrocatalysts for efficient electrochemical conversion of CO2 into valuable chemicals like ethanol and ethylene. The lab also focuses on scalable nanofabrication techniques for large-area, sub-10 nm patterning, enabling next-generation applications in flexible electronics and sensors. Their work bridges fundamental materials science with practical device integration, emphasizing cost-effective and scalable synthesis methods.
Professor Hong Junshik's research lab specializes in hematological malignancies and translational oncology, with a focus on myeloid neoplasms such as acute myeloid leukemia (AML), myelodysplastic syndromes (MDS), and myeloproliferative neoplasms (MPNs). The lab investigates molecular mechanisms underlying disease progression, including epigenetic regulation, viral mimicry via endogenous retroviruses, and metabolic modulation by agents like vitamin C. It also explores clinical aspects such as treatment-related toxicities (e.g., nail toxicity from docetaxel) and infection patterns post-hematopoietic stem cell transplantation, integrating population-based data with preclinical models to identify biomarkers and improve therapeutic strategies.
Professor Eung-Yong Lim's research lab specializes in non-contact physiological monitoring using advanced radar technologies, particularly impulse-radio ultra-wideband (IR-UWB) radar, for real-time assessment of vital signs such as heart rate, respiratory rate, and cardiac rhythm. The lab focuses on developing and validating wearable and non-invasive diagnostic tools for cardiovascular conditions, including atrial fibrillation, diabetic cardiomyopathy, and post-myocardial infarction outcomes. Their work integrates biomedical engineering, clinical cardiology, and data analytics to improve early detection and management of heart diseases in diverse patient populations, including sex-specific and metabolic disease-related profiles. The lab also explores the impact of anthropometric factors on sleep apnea and cardiovascular risk, emphasizing precision medicine approaches.
Professor Jeon Woojin's research lab specializes in the bioactive characterization and functional evaluation of natural plant-derived compounds, with a primary focus on antioxidant, anti-inflammatory, and hepatoprotective properties. The lab investigates medicinal plants such as blackberry, cowpea, turmeric, licorice, and fermented spices, emphasizing their applications in functional foods, nutraceuticals, and natural health products. Research spans from phytochemical analysis and in vitro cell models to in vivo animal studies, particularly in models of oxidative stress, gastritis, and liver injury. The lab also explores fermentation technologies to enhance bioavailability and efficacy of natural extracts for industrial and pharmaceutical applications.
Professor Hyuktae Kwon's research lab focuses on metabolic health, particularly the interplay between adipose tissue distribution, insulin resistance, and metabolic syndrome in Asian populations. The lab investigates the role of visceral and subcutaneous fat, nonalcoholic fatty liver disease (NAFLD), and hormonal factors such as testosterone in metabolic disease progression. Using large-scale cohort studies and advanced imaging techniques, the lab aims to identify early biomarkers and risk predictors for obesity-related diseases.
Professor Seong Jin Jeong's research lab specializes in urological disorders, particularly focusing on lower urinary tract symptoms (LUTS) in the elderly, with an emphasis on detrusor underactivity and its clinical implications. The lab investigates urodynamic parameters, urinary continence recovery after radical prostatectomy, and the impact of anatomical factors such as vesico-urethral anastomosis location on surgical outcomes. Additionally, the lab contributes to the development and validation of patient-reported outcome measures in Korean populations and explores biomarker accuracy, such as PSA, in diverse patient groups including obese men. Their work bridges clinical urology, urodynamics, and patient-centered outcomes research.
Professor Dong Yeol Oh's research lab specializes in radiation oncology and medical physics, focusing on optimizing radiotherapy outcomes in various cancers. The lab investigates the biological and dosimetric factors influencing treatment response, including radiation-induced complications like insufficiency fractures and radiation pneumonitis, as well as prognostic factors such as sarcopenia and lymph node status in esophageal and other gastrointestinal cancers. Key research directions include the role of advanced imaging and dosimetric parameters in predicting treatment toxicity and survival, and the integration of radiotherapy with systemic therapies in locally advanced or oligometastatic disease.
Professor Jeong Il Yu's research lab specializes in radiation oncology and hepatocellular carcinoma (HCC) therapeutics, with a focus on optimizing radiotherapy strategies for advanced HCC, particularly in patients with portal vein tumor thrombosis (PVTT). The lab investigates the integration of systemic therapies—such as immune checkpoint inhibitors (e.g., nivolumab) and targeted agents (e.g., sorafenib)—with advanced radiation techniques, including proton beam and photon therapy. A key research direction involves enhancing radiotherapy efficacy through radiosensitizers like valproic acid (VPA), especially in combination with proton therapy. The lab also develops prognostic models to guide personalized treatment decisions in HCC patients with complex disease features.