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 Jeong Yoon Choi's research lab specializes in clinical and translational neuroscience, with a primary focus on central vestibular disorders, particularly central positional nystagmus and its differentiation from peripheral causes like benign paroxysmal positional vertigo. The lab investigates the neuro-ophthalmological and neuro-otological mechanisms underlying nystagmus patterns, vestibular reflex function (e.g., head impulse test), and the role of cerebellar and brainstem pathology in vertigo syndromes. Additionally, the lab explores biomarkers such as free fatty acids (FFA) in cardioembolic stroke, aiming to improve risk prediction and outcomes in cerebrovascular disease. Their work bridges clinical neurology, vestibular physiology, and stroke neurology through rigorous observational and registry-based studies.
Professor Byung Gon Kim's research lab specializes in advanced energy storage systems, with a primary focus on next-generation lithium-based batteries, particularly lithium-oxygen (Li-O₂) and all-solid-state batteries (ASSBs). The lab investigates critical challenges such as interfacial instability, dendrite formation, and side reactions at electrode-electrolyte interfaces, aiming to enhance cycle life, energy efficiency, and safety. Key research directions include the design of novel functional materials—such as mesoporous titanium nitride, Pt₃Co nanoparticles, and Ag-Li alloy anodes—and the development of innovative interface engineering strategies to suppress parasitic reactions and improve electrochemical performance.
Professor Sin Min-kyung's research lab specializes in non-invasive and minimally invasive dermatological therapies, focusing on skin rejuvenation, laxity correction, and the treatment of benign skin conditions such as striae distensae and idiopathic guttate hypomelanosis. The lab investigates advanced energy-based devices—such as fractional radiofrequency, ultrasound, and high-intensity focused ultrasound—combined with biologic agents like platelet-rich plasma (PRP) and photosensitizers to enhance tissue remodeling and drug delivery. A key research direction involves optimizing treatment protocols for deep and targeted tissue stimulation with minimal side effects.
Professor Junsung Kim's research lab specializes in the exploration of two-dimensional (2D) van der Waals materials and their heterostructures, with a focus on emergent quantum phenomena and spintronic applications. The lab investigates intrinsic magnetic order, correlated electron states such as excitonic insulators, and topological quantum effects in atomically thin materials, particularly in transition metal dichalcogenides and graphene-based systems. By combining advanced nanoscale characterization techniques—such as Raman spectroscopy, scanning tunneling spectroscopy, and transport measurements—the lab aims to uncover and engineer novel quantum phases and spintronic functionalities at the 2D limit.
Professor Byung Chul Jee's research lab specializes in reproductive medicine and women's health, with a focus on reproductive endocrinology, infertility, and gynecological disorders. The lab investigates biomarkers for endometriosis and ovarian tumors, explores molecular mechanisms influencing IVF outcomes, and evaluates the safety and efficacy of medical treatments for uterine fibroids and adenomyosis. Key research directions include the role of immune markers like sCD163 and inflammatory cytokines, aquaporin expression in granulosa cells, and clinical outcomes of minimally invasive interventions such as LNG-IUS and ulipristal acetate. The lab integrates clinical research with translational molecular studies to improve fertility treatment strategies and patient care.
Professor Seung Hoon Shin's research lab specializes in the development of innovative, atom-economical, and sustainable transition-metal-catalyzed transformations, with a strong focus on gold-catalyzed redox reactions and novel cycloaddition cascades. The lab explores the generation of reactive intermediates—such as azomethine ylides and vinyl gold complexes—through unique redox processes, enabling the efficient synthesis of complex nitrogen-containing heterocycles like azabicyclo[3.2.1]octanes and isoindoles. A key theme is the design of mild, selective, and safe methodologies that avoid hazardous reagents, such as diazo compounds, while enabling chemoselective C–C and C–heteroatom bond formation.
Professor Jin Sook Yoon's research lab focuses on the molecular mechanisms underlying thyroid-associated ophthalmopathy (Graves' orbitopathy), with a particular emphasis on inflammation, fibrosis, and adipogenesis in orbital fibroblasts. The lab investigates natural compounds such as quercetin for their therapeutic potential in modulating key inflammatory and fibrotic pathways, aiming to develop safe and effective medical treatments. Additionally, the lab explores ocular complications from cosmetic procedures, including filler-induced ocular ischemia, highlighting clinical and translational research in ophthalmic pathology. Their work bridges molecular biology, clinical ophthalmology, and pharmacology to address unmet needs in autoimmune and inflammatory eye diseases.
Professor Ki-Bom Park's research lab specializes in power electronics, with a primary focus on high step-up DC-DC converters for renewable energy and high-power applications. The lab develops innovative isolated and nonisolated converter topologies that enhance voltage gain, reduce voltage stress, and enable soft-switching operation through resonant techniques and transformer-based integration. Key research directions include advanced LCL filter design for grid-connected converters, efficiency optimization, and minimizing component size and weight in power conversion systems. The lab emphasizes practical implementation through prototype development and rigorous analysis of power losses, harmonic performance, and thermal management.
Professor Young Sik Choi's research lab specializes in high-resolution molecular spectroscopy and unimolecular reaction dynamics, focusing on highly vibrationally excited states of small polyatomic molecules such as HFCO. The lab employs advanced laser techniques—particularly stimulated emission pumping (SEP) and laser-induced fluorescence—to investigate intramolecular vibrational energy redistribution, state-specific unimolecular dissociation rates, and the role of specific vibrational modes in chemical reactivity. A key focus is understanding the dynamics of energy flow and dissociation pathways in molecules near and above their dissociation thresholds, with implications for reaction kinetics and energy partitioning in complex systems. More recently, the lab has expanded into biomedical applications, examining oxidative stress and inflammatory biomarkers in follicular fluid to understand their impact on IVF outcomes in endometriosis patients.
Professor Jeong Yung Hong's research lab specializes in translational oncology, focusing on the molecular characterization of cancer genomics, particularly in hepatocellular carcinoma, myelodysplastic syndromes, and rare sarcomas. The lab integrates multi-omics approaches—including whole-exome and single-cell RNA sequencing—to identify predictive biomarkers and therapeutic targets in immunotherapy and hypomethylating agent responses. A key research direction involves understanding the tumor microenvironment and inflammatory biomarkers, such as CXCL10 and systemic inflammatory markers, to improve prognostic prediction in lymphomas and other malignancies. The lab also investigates mechanisms of drug resistance in targeted therapies, especially in dermatofibrosarcoma protuberans treated with imatinib.
Professor Eun-Ju Lee's research lab specializes in pulmonary regenerative medicine and respiratory disease mechanisms, with a focus on mesenchymal stem cell therapy for lung fibrosis and emphysema. The lab investigates the role of stem cells—particularly adipose-derived stem cells—in modulating endoplasmic reticulum stress and inflammatory responses in lung injury models. Additionally, the lab explores the clinical and physiological aspects of chronic lung diseases such as tuberculous destroyed lung and chemotherapy-induced interstitial lung disease, integrating imaging, functional assessment, and molecular mechanisms.
Professor Jeong Seok Lee's research lab focuses on translational immunology and biomaterials, with a strong emphasis on understanding immune responses in infectious diseases such as COVID-19 and inflammatory conditions like connective tissue disease-associated interstitial lung disease (CTD-ILD). The lab employs single-cell multi-omics technologies to dissect immune cell heterogeneity and dynamics in human and animal models, aiming to identify key drivers of disease severity and therapeutic response. Additionally, the lab explores bioinspired materials—particularly polydopamine and lignin-based polymers—for regenerative medicine and sustainable energy applications, including rechargeable batteries. These interdisciplinary efforts bridge clinical immunology, biomaterials science, and biomedical engineering to develop novel diagnostics, therapeutics, and functional materials.
Professor Namsoo Kim's research lab specializes in speech signal processing and robust speech recognition, with a strong focus on developing advanced techniques for speech enhancement and noise robustness in real-world environments. The lab explores statistical modeling, adaptive filtering, and machine learning approaches—ranging from classical methods like the interacting multiple model (IMM) and sequential EM algorithms to modern deep learning frameworks such as GANs and multi-scale architectures. A key research direction involves leveraging temporal dynamics and multi-resolution representations to improve speech quality and recognition accuracy under nonstationary and adverse acoustic conditions.
Professor Dong-Woo Lee's research lab specializes in microbial biotechnology and industrial enzymology, focusing on thermophilic and hyperthermophilic microorganisms for sustainable bioprocesses. The lab investigates novel enzymes such as lipases and isomerases from extremophiles, with applications in biofuel production, bioremediation, and plant-based meat analogs. Key research directions include metabolic engineering, post-translational protein modification (e.g., lysine acetylation), and the development of advanced bioprocesses using non-traditional biomass feedstocks. The lab also explores the structural and functional characterization of microbial enzymes to enhance their industrial utility under extreme conditions.
Professor Young Min Baek's research lab specializes in media and communication studies, with a focus on digital communication, civic engagement, and public information during crises. The lab investigates how individuals engage with media—particularly social media and online platforms—shaping social relationships, political participation, and public trust. Key research directions include the psychological and societal impacts of online deliberation, the credibility of public health information, and the role of media in fostering or undermining democratic participation. The lab employs advanced quantitative methods, such as item response theory and structural modeling, to analyze complex media effects and individual behaviors.
Professor Dongchan Jang's research lab specializes in the design, synthesis, and mechanical characterization of advanced nanostructured and hybrid materials, with a focus on understanding structure-property relationships at the nanoscale. Key research directions include the development of flexible and durable hard coatings for next-generation foldable electronics, the role of grain and twin boundaries in nanocrystalline metals, and the mechanical behavior of nanocrystalline and porous materials. The lab also pioneers scalable fabrication techniques—such as proximity-field nanopatterning—for creating nanoarchitected materials with tailored mechanical performance.
Professor Sungju Hwang's research lab specializes in advancing deep learning systems with a focus on efficient, scalable, and continual representation learning. The lab explores meta-learning, lifelong learning, and vision transformers to build models that generalize well under data-scarce or sequential learning conditions. Key research directions include dynamic architecture expansion, multi-scale feature learning, and sparsity regularization to enhance model efficiency and prevent catastrophic forgetting. The lab also investigates joint representation learning for visual attributes and object recognition to improve semantic generalization.
Professor Su-Min Jeong's research lab focuses on preventive medicine and public health, with a strong emphasis on identifying modifiable risk factors for chronic diseases. The lab investigates the long-term impact of lifestyle factors—such as cholesterol levels, body mass index, smoking behavior, and dietary components like sesame-derived antioxidants—on cardiovascular disease and metabolic disorders. Utilizing large-scale national health databases from South Korea and international cohorts, the lab integrates epidemiological, nutritional, and biochemical approaches to understand the interplay between metabolic health, body composition, and disease incidence. The research also emphasizes population-level strategies for obesity and cardiovascular disease prevention.
Professor Jun Jung Choi's research lab focuses on the tumor microenvironment in breast cancer, particularly the metabolic crosstalk between cancer cells and stromal components such as adipocytes and macrophages. The lab investigates how metabolic reprogramming—especially through fatty acid metabolism and CD36 signaling—drives tumor progression, epithelial-mesenchymal transition (EMT), and cancer stemness. A central theme is the identification of key molecular regulators like STAT3 and metabolic enzymes that create feedforward loops promoting aggressive tumor phenotypes. The lab integrates immunohistochemistry, cell co-culture models, and molecular signaling analysis to uncover novel therapeutic targets in breast cancer subtypes, especially triple-negative and HER2-positive disease.
Professor Hyun-Woo Shin's research lab specializes in translational biomedical engineering, focusing on extracellular vesicles (EVs) as liquid biopsy biomarkers and developing advanced in vitro disease models for personalized medicine. The lab pioneers innovative isolation techniques—particularly aqueous two-phase systems—for high-efficiency, rapid EV purification from biofluids like blood and urine, enhancing diagnostic accuracy for diseases such as prostate cancer. Another key direction involves modeling chronic inflammatory diseases like chronic rhinosinusitis (CRS), with a focus on immune cell infiltration and molecular mechanisms such as HIF-1α and IFN-γ signaling. The lab also develops microfluidic organ-on-a-chip platforms to enable physiologically relevant drug screening and pathophysiological studies.