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 Soo Jin Shin's research lab focuses on translational oncology and nursing education, with a dual emphasis on biomarker discovery in cancer and the enhancement of clinical nursing practice. The lab investigates immune checkpoint molecules such as PD-L1 and PD-L2 in metastatic clear cell renal cell carcinoma, exploring their prognostic significance and potential as therapeutic targets. In parallel, the lab develops and evaluates educational interventions—particularly critical reflection programs—for clinical nurse educators to improve clinical reasoning, teaching efficacy, and professional development. The integration of clinical research with nursing science underscores the lab’s mission to bridge molecular insights with patient-centered care.
Professor Ho-jin Lee's research lab focuses on clinical and translational studies in pain management, surgical outcomes, and chronic disease epidemiology. The lab investigates the impact of comorbidities on mortality in infectious diseases like COVID-19, explores predictors of chronic postsurgical pain, and examines the prevalence of unrecognized depression in chronic pain patients. Additionally, the lab contributes to biomedical engineering and oceanographic modeling, demonstrating a multidisciplinary approach that bridges clinical medicine, public health, and environmental modeling.
Professor Young-Pil Kim's research lab specializes in the development of innovative nanomaterial-based platforms for biomedical diagnostics and therapeutics. The lab focuses on designing smart bio/nanomaterials for targeted cancer therapy, particularly through photodynamic therapy (PDT) and bioluminescence-mediated strategies. Key research directions include the engineering of quantum dots, gold nanoparticles, and protein conjugates for sensitive detection of proteases, kinase activity, and glycosylation, as well as for real-time, label-free imaging and theranostic applications. The lab integrates principles of bioconjugation, energy transfer, and molecular imaging to create next-generation tools for precision medicine.
Professor Hyongju Cho's research lab focuses on the pathophysiology of airway and upper airway disorders, with a particular emphasis on mucosal fluid secretion, structural and functional changes in the upper airway, and their implications in obstructive sleep apnea, chronic rhinosinusitis, and cystic fibrosis. The lab investigates the role of ion channels, inflammatory mediators like histamine and house dust mite allergens, and mitochondrial dysfunction in epithelial and glandular tissues, using both human primary cells and animal models. A key focus is understanding how anatomical factors—such as tongue volume and Mallampati grading—interact with systemic conditions like obesity to influence airway obstruction and respiratory disease. The lab integrates clinical data with molecular and cellular physiology to uncover mechanisms underlying airway hypersecretion, impaired mucociliary clearance, and sensorineural hearing loss in sleep apnea.
Professor Tae-Youn Koo's research lab specializes in developing innovative biomedical technologies that bridge the gap between molecular biology and clinical applications. The lab focuses on cutting-edge techniques in spatial transcriptomics, brain delivery systems, and advanced tissue imaging, aiming to decode complex biological systems with high precision. Key research directions include non-invasive delivery of bioactive molecules to the brain using ultrashort pulsed laser-induced vascular permeability, high-throughput and gentle platelet isolation via hydrophoretic separation, and super-resolution imaging of neural tissues through epitope-preserving tissue expansion methods. These approaches collectively advance neuroscience, cancer research, and regenerative medicine with minimal sample damage and maximal molecular fidelity.
Professor Yunji Choi's research lab focuses on translational and clinical research in pain mechanisms, oncology, and perioperative medicine. Key research directions include the neurobiological mechanisms of neuropathic pain, particularly involving NMDA receptors and nitric oxide signaling, as well as the impact of anemia and nutritional status on surgical outcomes and organ injury. The lab also investigates biomarkers and genetic factors influencing patient responses to sedation and cancer survivorship, with a strong emphasis on quality of life and functional outcomes in cancer survivors. These studies integrate molecular neuroscience, clinical pharmacology, and population health to improve patient-centered care.
Professor Taekyoung Kwon's research lab specializes in adaptive multimedia networking, quality of service (QoS) provisioning, and resource management in wireless and mobile networks. The lab focuses on developing intelligent call admission control mechanisms, bandwidth adaptation algorithms, and secure user authentication schemes tailored for dynamic network environments. Key research directions include measurement-based QoS guarantees, distributed system state monitoring, and energy-efficient routing protocols for wireless sensor networks.
Professor Eung-seok Lee's research lab specializes in the development of novel therapeutic agents targeting cancer and inflammatory diseases. The lab focuses on designing and synthesizing small molecules with dual or multi-target inhibitory activities, particularly inhibitors of cyclooxygenase (COX) and lipoxygenase (LOX) for anti-inflammatory therapy, and topoisomerase IIα inhibitors for anticancer drug discovery. Their work emphasizes structure-activity relationship studies and the use of innovative synthetic methods, such as microwave-assisted synthesis, to develop potent, selective, and safer drug candidates. The lab also investigates molecular mechanisms of disease, including micrometastasis detection in gastric cancer and the regulation of inflammatory mediators like TNF-α and iNOS in macrophages.
Professor Eun Sook Ko's research lab specializes in breast imaging and radiomics, focusing on optimizing the diagnostic and prognostic value of dynamic contrast-enhanced MRI in breast cancer. The lab investigates perfusion heterogeneity, background parenchymal enhancement, and quantitative MRI biomarkers to improve risk stratification and treatment response prediction. Key research directions include the impact of menstrual cycle and breast composition on MRI features, the role of radiomics in survival modeling, and the clinical implications of non-invasive imaging findings in preoperative and neoadjuvant settings. The lab also explores abbreviated MRI protocols to enhance accessibility and efficiency in breast cancer screening and diagnosis.
Professor Hyun-Suk Kim's research lab focuses on the molecular mechanisms underlying age-related diseases, metabolic disorders, and cancer, with a particular emphasis on mitochondrial regulation, autophagy, and cellular metabolism. The lab investigates key signaling pathways such as SIRT3 in bone and metabolic homeostasis, explores natural products as therapeutic agents, and employs systems biology approaches to link bioactive compounds to their molecular targets. Additionally, the lab examines the role of autophagy in epithelial-to-mesenchymal transition (EMT) and cancer progression, as well as clinical correlates in diseases like polycystic kidney disease and end-stage renal disease in elderly populations.
Professor Myung Joon Han's research lab specializes in theoretical and computational materials science, focusing on strongly correlated electron systems in complex oxides. The lab employs advanced first-principles methods such as density functional theory (DFT), dynamical mean-field theory (DMFT), and LDA+U approaches to investigate electronic structure, magnetism, and orbital physics in transition metal oxides, including iron-based superconductors, multiferroics, and oxide heterostructures. A central theme is the interplay between electronic correlations, orbital occupancy, and structural effects—particularly how doping, strain, and interface engineering can tune electronic properties at the atomic scale. The lab also explores the role of oxygen orbitals and charge transfer in determining emergent phenomena such as orbital polarization and magnetic order.
Professor Yoonbin Kim's research lab specializes in high-energy particle physics and advanced materials science. The lab conducts cutting-edge experimental studies at the Large Hadron Collider (LHC), focusing on precision measurements of top quark production, searches for new physics beyond the Standard Model, and improvements in jet energy scale corrections using CMS detector data. In parallel, the lab explores bioactive compounds and functional polymeric materials, particularly metal phthalocyanines, for applications in cancer therapy and electrocatalysis. These diverse research directions reflect a strong commitment to both fundamental physics and applied materials innovation.
Professor Hye Mi Kwon's research lab focuses on thyroid cancer epidemiology, with a strong emphasis on the impact of obesity and metabolic factors on thyroid cancer risk, as well as the clinical management and surveillance of small thyroid cancers, particularly papillary thyroid microcarcinomas (PTMCs). The lab conducts large-scale population-based cohort studies to evaluate the role of body mass index, waist circumference, and weight change in thyroid carcinogenesis, while also investigating biomarkers such as TSAb for predicting disease relapse in Graves’ disease. Their work integrates clinical imaging, metabolic profiling, and long-term outcomes to guide personalized treatment strategies.
Professor Kang Jung Won's research lab specializes in regenerative medicine and translational biomedicine, with a focus on mesenchymal stem cells—particularly adipose tissue-derived MSCs—for immunomodulation and tissue regeneration. The lab also investigates natural compounds and plant-derived molecules for their anti-adipogenic and anti-platelet effects, aiming to develop novel therapeutic agents for metabolic and cardiovascular diseases. In parallel, the lab explores robotics and intelligent systems, especially omni-directional mobile robots for industrial and assistive applications, emphasizing mobility, safety, and real-world usability in complex environments.
Professor Hee Yeon Jung's research lab focuses on behavioral and cognitive neuroscience, particularly investigating impulsivity and compulsivity in behavioral addictions such as Internet gaming disorder, pathological gambling, and alcohol use disorder. The lab also explores innovative rehabilitation technologies, including virtual reality-based vocational training for patients with schizophrenia, and applies advanced sensory technologies like electronic noses and tongues for food quality assessment. Additionally, the lab examines psychotropic drug side effects and promotes humanistic competencies in medical education.
Professor Chang-Woo Ryu's research lab specializes in advanced neuroimaging techniques for the diagnosis and characterization of cerebrovascular diseases. The lab focuses on improving the accuracy of intracranial atherosclerotic plaque assessment using high-resolution vessel-wall MRI and diffusion-weighted imaging, with an emphasis on identifying vulnerable plaques and predicting stroke risk. Additionally, the lab investigates the role of multi-detector CT and MRI in evaluating intracranial aneurysms, stent-assisted coiling complications, and cerebral fat embolism. Their work bridges diagnostic radiology and clinical neuroscience to enhance early detection and intervention in cerebrovascular disorders.
Professor Sunhwa Lee's research lab focuses on interdisciplinary studies at the intersection of materials chemistry, neurodegenerative diseases, and environmental science. The lab investigates the development and application of transition metal complexes for selective organic transformations, such as hydrosilylation of heterocycles, and explores the therapeutic potential of natural compounds like melittin and bee venom in neuroinflammatory conditions, particularly amyotrophic lateral sclerosis (ALS). Additionally, the lab examines environmental fate and behavior of pharmaceuticals and water quality dynamics in river systems, emphasizing nutrient and organic matter cycling. These diverse research directions reflect a strong commitment to advancing both fundamental science and translational applications in health and environmental sustainability.
Professor Hyung-Min Lee's research lab specializes in the design of highly efficient, miniaturized power management and stimulation systems for implantable biomedical microelectronic devices. The lab focuses on advancing inductive power transfer techniques, particularly through innovative active rectifiers, voltage doublers, and switched-capacitor-based stimulators that enable reliable operation under weak coupling and variable power conditions. Key research directions include power-efficient wireless powering, adaptive voltage regulation, and charge-balanced neural stimulation for next-generation neuroprostheses such as deep brain stimulators and retinal implants.
Professor Nari Kim's research lab focuses on cellular and molecular mechanisms underlying cardiovascular diseases, viral pathogenesis, and subcellular organization through advanced proteomic and cellular imaging techniques. Key research directions include mitochondrial protein regulation in heart ischemia-reperfusion injury, autophagy-mediated control of hepatitis C virus replication, and the protective roles of melatonin in cardiotoxicity. The lab also investigates ion channel dysfunction in vascular smooth muscle cells during pathological remodeling and explores liquid-liquid phase separation in cellular organization and disease. These studies integrate molecular biology, electrophysiology, and systems-level proteomics to uncover novel therapeutic targets.
Professor Young Kyun Lee's research lab focuses on the molecular and cellular mechanisms underlying bone metabolism and immune regulation, with a particular emphasis on osteoclastogenesis, inflammatory bone diseases such as periodontitis and rheumatoid arthritis, and the role of key signaling molecules like IL-17, DYRK1A, Jak1, and complement components. The lab integrates molecular biology, immunology, and translational approaches to uncover novel therapeutic targets for bone loss disorders. Recent work highlights the dual roles of immune mediators in skeletal homeostasis and the potential of natural compounds like 6-shogaol as anti-resorptive agents.