探索全球顶尖大学的研究室——研究领域与主要论文一览无余。
Professor Sung-woo Jeong's research lab specializes in gastrointestinal infectious diseases, with a primary focus on *Helicobacter pylori* pathogenesis, antibiotic resistance, and novel therapeutic strategies. The lab investigates bacterial virulence factors such as the dupA cluster, homB gene, and cag pathogenicity island to understand their roles in disease progression and host immune responses. A key research direction involves developing innovative antimicrobial formulations—like liposomal linolenic acid (LipoLLA)—to overcome multidrug resistance. The lab also explores host immune markers, including peripheral blood parameters, to predict treatment response and outcomes in gastrointestinal cancers.
Professor Sanghun Kim's research lab specializes in ubiquitous healthcare (u-health) systems, focusing on wearable technologies that enable accurate, real-time monitoring of physiological signals—such as photoplethysmography (PPG) and electrocardiogram (ECG)—during daily activities. The lab develops innovative solutions like smart headbands and mobile health monitoring programs to enhance health-state assessment in dynamic environments, particularly for mobile and m-learning applications in medical education. A key research direction involves signal calibration techniques to reduce motion artifacts, ensuring reliable data collection even with minimal user constraint. The lab also explores the intersection of health technology with educational environments, particularly in medical training and student performance assessment.
Professor Sung-Kyu Park's research lab focuses on translational biomedical research with a strong emphasis on cancer biology, epigenetic therapy, and nuclear medicine. The lab investigates histone deacetylase (HDAC) inhibitors for anti-inflammatory and anticancer applications, explores prostate cancer stem cells as therapeutic targets, and develops PSMA-targeted radiopharmaceuticals for the diagnosis and treatment of prostate cancer. Additionally, the lab contributes to clinical rehabilitation science by studying musculoskeletal impairments in chronic ankle instability, reflecting a multidisciplinary approach bridging molecular pharmacology and clinical therapeutics.
Professor Han-ik Cho's research lab specializes in developmental and educational psychology, with a primary focus on adolescent and youth well-being. The lab investigates key psychological constructs such as self-regulation, motivation, and interpersonal relationships, particularly examining how internal factors like self-control, perceived parenting styles, and achievement goals influence academic outcomes, internet addiction, and psychological adjustment. A central theme across the studies is the mediating role of psychological mechanisms—such as self-control, empathy, and learning strategies—in shaping students’ academic and emotional development.
Professor In-jeong Cho's research lab focuses on the intersection of cardiovascular metabolism, aging, and systemic disease mechanisms. Key research directions include the pathophysiological role of metabolic and hematological factors—such as anemia and hemoglobin levels—in cardiac remodeling and left ventricular dysfunction, as well as the impact of antihypertensive medications on long-term outcomes like cancer incidence. The lab also investigates molecular regulators of aging and metabolism, including ribosome biogenesis factors like NOG1, and explores neurotoxic side effects of chemotherapy, such as 5-FU-induced Wernicke’s encephalopathy, linking drug toxicity to vitamin deficiency pathways.
Professor Jaemyung Lee's research lab focuses on translational biomedical research with a strong emphasis on critical care medicine, minimally invasive surgical oncology, and advanced biomaterials for medical applications. The lab investigates trace element metabolism in critically ill patients, explores innovative wearable energy storage devices using flexible yarn-based batteries, and evaluates clinical outcomes in hepatobiliary surgery, particularly in gallbladder cancer and vascular complications post-liver transplantation. A key theme across projects is the development of safe, effective, and clinically relevant interventions—ranging from pharmacological modulation of immune responses to novel biomaterials for implantable devices.
Professor Janghyun Baek's research lab specializes in endovascular interventions for acute ischemic stroke, with a primary focus on mechanical thrombectomy using stent retrievers and adjunctive techniques such as balloon guide catheters. The lab investigates predictors of treatment success, including angiographic occlusion morphology, procedural strategies, and hemodynamic optimization to improve recanalization and functional outcomes. Key research directions include identifying optimal treatment thresholds, evaluating rescue techniques after thrombectomy failure, and refining pre-procedural imaging biomarkers—particularly using CTA—for accurate occlusion type classification and treatment planning.
Professor Wonsuk Kim's research lab focuses on the therapeutic potential of adipose-derived stem cells (ADSCs) in skin regeneration, aging, and dermatological applications. The lab investigates the paracrine mechanisms underlying ADSC-mediated wound healing, antioxidant effects, and skin rejuvenation, with a particular emphasis on secretory factors that modulate fibroblasts and keratinocytes. Additional research explores the immunomodulatory and pigment-regulating effects of ADSCs, including their potential in treating skin hyperpigmentation and EBV-associated lymphoproliferative disorders. The lab also examines how microenvironmental cues such as hypoxia influence stem cell fate and function, particularly in osteogenic differentiation and tissue repair.
Professor Jin-Woo Park's research lab specializes in the development of advanced functional materials and molecular probes for biomedical and biotechnological applications. Key research directions include the design of novel fluorescent dyes for biomolecular labeling, the synthesis of graphene-based nanocomposites for high-performance energy storage, and the development of orally active heparin derivatives for anticoagulant therapy. The lab also investigates molecular mechanisms of drug resistance and biomarkers for cancer prognosis, integrating computational modeling with experimental validation.
Professor Won-ji Yoo's research lab specializes in translational biomedical research, focusing on neuromuscular rehabilitation, neurodegenerative disease prevention, and molecular diagnostics in chronic inflammatory and neurological conditions. The lab investigates innovative biofeedback technologies—particularly EMG-virtual reality integration—for improving motor control in children with cerebral palsy, while also exploring biomarkers like NPTX2 hypermethylation for early pancreatic cancer detection. Additionally, the lab examines the long-term health impacts of chronic diseases such as systemic lupus erythematosus, particularly the role of medications like hydroxychloroquine in modulating cardiovascular and metabolic risks. Their work bridges clinical neurology, rehabilitation engineering, and molecular diagnostics to develop non-invasive, personalized interventions.
Professor Mykim0808's research lab focuses on nursing and healthcare workforce dynamics, with a strong emphasis on patient safety, nurse well-being, and organizational factors influencing clinical practice. The lab investigates critical issues such as nurse resilience, job satisfaction, organizational silence, horizontal violence, and the impact of systemic factors on patient outcomes. Research directions include improving work environments in hospitals and long-term care facilities, enhancing self-directed learning among advanced practice nurses, and addressing mental health challenges among frontline nurses during public health crises like the COVID-19 pandemic.
Professor Jong Hyun Choi's research lab specializes in the design and application of advanced nanomaterials for biomedical and energy technologies. Key research directions include the development of multimodal bioimaging agents using carbon nanotubes and magnetic nanoparticles, the engineering of quantum dots and carbon nanotubes for sensitive protein detection, and the optimization of nanomaterials for high-performance energy storage systems such as sodium-ion and lithium-ion batteries. The lab emphasizes the integration of nanomaterials with biomolecules to enable selective sensing and imaging while focusing on structural and electrochemical stability for next-generation energy devices.
Professor Hyoun-Joong Kong's research lab specializes in the intersection of biomedical engineering, artificial intelligence, and digital health, focusing on developing advanced machine learning and deep learning techniques for medical image analysis and surgical skill assessment. The lab explores federated learning to address medical data privacy while enhancing diagnostic accuracy in conditions such as thyroid nodules, and investigates smart health technologies—particularly IoT and AI-driven interventions—for improving metabolic health outcomes in aging and obese populations. A key focus is on creating personalized, data-driven healthcare solutions through innovative applications of generative models and motion analysis.
Professor Young Song's research lab specializes in translational biomedical research, focusing on the mechanisms and therapeutic applications of pharmacological agents in critical care and metabolic diseases. Key research directions include the renoprotective and neuroprotective effects of dexmedetomidine in surgical and neurological conditions, the role of autophagy and mitophagy in metabolic liver disease, and the neuroprotective potential of pregabalin under hyperglycemic stress. The lab integrates preclinical animal models with clinical biomarker analysis to explore novel therapeutic strategies for acute kidney injury, stroke, and postoperative complications.
Professor Mi Na Park's research lab specializes in clinical and translational neuroimaging, focusing on advanced MRI techniques for early detection and differentiation of neurological disorders. Key research directions include the application of high-field (3T) MRI, diffusion tensor imaging, and contrast-enhanced black-blood imaging to study neurodegenerative diseases, dural lymphatic function in aging, and brain tumor characterization. The lab also explores innovative rehabilitation technologies, such as VR-based systems for stroke recovery, and investigates human-AI interaction through chatbot analytics in healthcare contexts.
Professor Ji-Chul Shin's research lab focuses on biomedical engineering and materials science, with a strong emphasis on neural regeneration and implantable medical devices. The lab investigates human neural stem/progenitor cell transplantation for spinal cord injury repair, evaluates rehabilitation technologies such as robotic-assisted gait training, and explores the electrical and dielectric properties of ferroelectric thin films like (Ba,Sr)TiO3 and Pb(Zr,Ti)O3 for next-generation bioelectronic applications. Research spans from preclinical cell therapy trials to advanced functional materials for neural interfaces and implantable devices.
Professor Hyun Joon Yang's research lab specializes in gastrointestinal oncology and endoscopic therapeutics, with a strong focus on improving outcomes in early-stage gastrointestinal cancers, particularly hepatocellular carcinoma and gastric cancer. The lab investigates minimally invasive treatments such as radiofrequency ablation and endoscopic submucosal dissection, while also exploring the role of microbial and inflammatory markers in carcinogenesis. A key research direction involves optimizing bowel preparation for colonoscopy through novel formulations and risk prediction models for colorectal neoplasia in diverse populations.
Professor Jiae Kim's research lab specializes in perioperative critical care and thoracic anesthesiology, focusing on hemodynamic monitoring, postoperative complications, and pain management in patients undergoing thoracic surgery. The lab investigates dynamic preload indicators like stroke volume variation and pulse pressure variation in the context of one-lung ventilation and video-assisted thoracic surgery, aiming to optimize fluid management. It also explores the impact of surgical approaches—such as robotic versus open esophagectomy—on postoperative outcomes like delirium, and evaluates analgesic techniques to improve recovery. The lab’s work bridges anesthesiology, critical care, and surgical outcomes, with a strong emphasis on patient safety and personalized perioperative care.
Professor Lee Hosun's research lab specializes in the optical and electronic characterization of advanced functional materials, with a focus on complex oxides, chalcogenides, nitrides, and fluorinated carbon films. The lab employs advanced spectroscopic techniques such as spectroscopic ellipsometry, Raman spectroscopy, and dielectric function analysis to investigate critical electronic and vibrational properties, including band gaps, critical point parameters, and carrier dynamics. A key research direction involves understanding the impact of composition, disorder, and structural ordering—such as CuPt-type ordering—on optical transitions and electronic band structures in semiconductors and ferroelectrics. The lab also extends into mechatronics, developing advanced torque control algorithms for robotic systems using disturbance observer and PI control strategies.
Professor Ki Wook Yun's research lab specializes in pediatric infectious diseases, with a focus on understanding the etiology, pathogenesis, and clinical management of bacterial and viral infections in children. The lab investigates respiratory pathogens such as Streptococcus pneumoniae, Mycoplasma pneumoniae, and respiratory viruses in community-acquired pneumonia, as well as uropathogenic Escherichia coli and group B streptococcus in pediatric urinary tract and invasive infections. Using molecular typing techniques like MLST, phylogenetic grouping, and fimH genotyping, the lab explores the genetic diversity and virulence factors of these pathogens to inform diagnosis and treatment strategies.