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 Hyuk Sung Kwon's research lab focuses on neurodegenerative diseases, particularly Alzheimer’s disease and stroke, with an emphasis on identifying and validating biomarkers for early diagnosis and prognosis. The lab investigates the role of neuroinflammation, glial cell heterogeneity, and systemic factors such as blood pressure in brain pathology. Key research directions include the integration of plasma biomarkers (e.g., p-tau181, Aβ, NfL), amyloid PET imaging, and genetic factors (e.g., APOE) to predict disease progression and cognitive decline. The lab also explores neuroprotective mechanisms in ischemic brain injury and autoimmune encephalitis following viral infections like COVID-19.
Professor Wei Peng's research lab focuses on atmospheric chemistry, air quality modeling, and the environmental impacts of energy systems, with a particular emphasis on secondary aerosol formation, pollution mitigation strategies, and the interplay between air quality and climate change in East Asia. The lab investigates heterogeneous chemical mechanisms—such as the formation of organosulfur compounds like hydroxymethanesulfonate (HMS)—and evaluates the effectiveness of policy implementation in reducing emissions and improving public health. Using integrated assessment models, real-time measurements, and epidemiological data, the lab explores sustainable energy transitions, including renewable electricity transmission and electric vehicle adoption, to address both air pollution and climate change. Their work bridges atmospheric science, environmental policy, and systems modeling to support equitable and effective environmental decision-making.
Professor Jae Woo Lee's research lab specializes in advanced membrane materials and hydrogel systems for environmental and biomedical applications. The lab focuses on developing innovative thin-film composite and mixed matrix membranes incorporating nanomaterials like graphene oxide and carrageenan for efficient water purification, with an emphasis on enhancing water flux, pollutant removal, and salt rejection. Additionally, the lab explores biopolymer-based hydrogels—such as those derived from gellan gum and eggshell membrane—for regenerative medicine, particularly in retinal tissue engineering. Their work bridges materials science, environmental engineering, and biomedicine through sustainable and high-performance functional materials.
Professor Se Kwon Kim's research lab specializes in theoretical condensed matter physics, focusing on topological spin textures and their emergent quantum phenomena in low-dimensional magnetic systems. The lab investigates the interplay between topology, magnetism, and spin dynamics, particularly in skyrmions, magnons, and solitons, with applications in spintronics and quantum information. Key themes include the emergence of fictitious gauge fields, thermal and electrical transport in topological magnets, and the manipulation of magnetic textures via spin currents and temperature gradients. The lab combines advanced field-theoretic methods with stochastic dynamics to explore non-equilibrium and topological responses in quantum magnets.
Professor Byung-Mo Oh's research lab specializes in neuromodulation and neurorehabilitation, focusing on improving motor and swallowing functions in patients with neurological disorders such as stroke, Parkinson’s disease, and traumatic brain injury. The lab investigates non-invasive brain stimulation techniques—like transcranial direct current stimulation (tDCS)—combined with robotic-assisted therapy to enhance motor recovery. It also conducts detailed kinematic analyses of swallowing-related structures using videofluoroscopy to develop evidence-based therapeutic maneuvers for dysphagia. The lab emphasizes translational research, linking physiological changes in the brain with clinical outcomes to optimize rehabilitation strategies.
Professor Jong Cheol Park's research lab specializes in the development of micro- and nano-scale energy harvesting devices, with a focus on piezoelectric and electromagnetic microgenerators for sustainable power solutions in portable and implantable electronics. The lab also engages in biomedical research, particularly in identifying bioactive compounds from traditional medicinal plants with anti-HIV and hepatoprotective properties, and investigates the molecular mechanisms of environmental toxins like acrylamide. Their interdisciplinary work bridges materials science, microfabrication, and biomedicine to address challenges in energy autonomy and human health.
Professor Joo-Han Noh's research lab specializes in deep learning for audio and multimodal signal processing, with a strong focus on end-to-end learning from raw waveforms. The lab explores innovative convolutional neural network architectures—such as SampleCNN and its advanced variants—that use sample-level filters to extract hierarchical representations directly from audio signals, achieving state-of-the-art performance in music auto-tagging and audio classification. A key research direction involves multimodal representation learning, where features from multiple modalities (e.g., audio and video) are jointly learned to improve model generalization and performance. The lab also investigates the integration of deep learning with real-world music streaming and intelligent audio systems, including applications in smart speakers and personalized music recommendation platforms.
Professor Yoo-Jin Kwon's research lab focuses on the intersection of nutrition, metabolic health, and chronic disease prevention, with a strong emphasis on population-based epidemiological studies. The lab investigates the role of dietary patterns, oxidative stress, and metabolic markers in the development of hypertension, periodontitis, and all-cause mortality. Key research directions include the impact of macronutrient intake on longevity, the role of endogenous antioxidants, and the use of biomarkers such as the oxidative balance score and TyG index in assessing metabolic dysfunction. The lab leverages large-scale national cohort data from South Korea to derive evidence-based insights for public health interventions.
Professor Yun-Ho Choi's research lab specializes in developing label-free, sensitive biosensing technologies for early disease diagnosis, with a focus on leveraging surface-enhanced Raman spectroscopy (SERS) and artificial intelligence to analyze exosomes and viral particles. The lab pioneers noninvasive liquid biopsy approaches using nanoscale biomarkers from body fluids, enabling early detection of multiple cancers and emerging viral infections. Key research directions include the identification of unique Raman signatures in exosomes and viral envelopes, combined with machine learning and statistical pattern analysis for high-accuracy diagnostics.
Professor Changho Seo's research lab specializes in advanced wireless communication systems, with a focus on interference management, network coding, and efficient resource allocation in modern cellular and multicast networks. The lab develops innovative techniques such as interference alignment, repair-optimal MDS codes (including regenerating and repair MDS codes), and capacity-achieving schemes for interference channels, particularly under practical constraints like feedback and bandwidth limitations. Their work bridges theoretical information theory with practical system design, emphasizing scalable, low-overhead solutions for 5G and beyond wireless networks.
Professor Kiwon Lee's research lab focuses on plant abiotic stress responses, particularly in the context of mineral nutrition, heavy metal toxicity, and environmental stressors such as aluminum toxicity, salinity, drought, heat, and iron deficiency. The lab investigates molecular and physiological mechanisms underlying stress tolerance in crops like alfalfa and perennial rye grass, with an emphasis on ion homeostasis, antioxidant systems, and symbiotic interactions with arbuscular mycorrhizal fungi. Key research directions include the roles of key genes (e.g., Na+/H+ antiporters, HSPs, Fe-transporters) and nutrients (P, Ca, Mg, S) in enhancing stress resilience and productivity in agricultural plants.
Professor Hye Yoon Park's research lab specializes in developing advanced imaging and microfluidic technologies to study dynamic cellular processes at the molecular level. The lab focuses on understanding the spatiotemporal regulation of gene expression, particularly mRNA localization, transport, and activity-dependent transcription in neurons and primary tissues. By combining live-cell imaging, single-molecule detection, and microfluidic devices, the lab investigates conformational dynamics of proteins like calmodulin and the mechanisms underlying neuronal gene regulation. Their work bridges molecular biology, biophysics, and neuroscience to reveal fundamental principles of cellular information processing.
Professor Jidong Seong's research lab specializes in cardiovascular and metabolic health, with a focus on vascular function, arterial stiffness, and non-pharmacological interventions for hypertension and metabolic syndrome. The lab investigates the physiological and clinical impacts of lifestyle therapies—such as forest therapy and herbal supplements like Korean red ginseng—on endothelial function, blood pressure regulation, and quality of life. It also develops culturally adapted clinical assessment tools, such as the Korean version of the Duke Activity Status Index, to improve functional status measurement in cardiovascular patients. The lab integrates clinical physiology, biomarker analysis, and population-based studies to advance preventive and personalized cardiovascular medicine.
Professor Jae-Hwan Kim's research lab specializes in molecular genetics and genomics, focusing on the evolution and functional characterization of transcription factors and repetitive DNA elements. The lab investigates gene regulation through DNA-binding proteins such as YY1 and Elf3, exploring their nuclear localization and transcriptional roles. It also examines the evolutionary dynamics of SINE elements like ID and BC1 in rodent genomes, particularly their amplification via retroposition and regulatory implications. Additionally, the lab contributes to clinical genetics by studying dental anomalies, including peg-shaped lateral incisors and their associated conditions.
Professor Byung Jin Kim's research lab focuses on the pathophysiology of metabolic and ocular diseases, with a particular emphasis on the roles of zinc signaling, oxidative stress, and inflammatory pathways in retinal and pancreatic islet cell injury. The lab investigates molecular mechanisms underlying ischemia/reperfusion injury in the retina and the contribution of c-Jun N-terminal kinase (JNK) signaling to neuronal cell death. Additionally, the lab explores the interplay between metabolic syndrome, nonalcoholic fatty liver disease (NAFLD), and vascular stiffness, especially in the context of lifestyle factors such as smoking and alcohol consumption. Their work integrates preclinical models, clinical epidemiology, and molecular biology to identify therapeutic targets for chronic metabolic and neurodegenerative conditions.
Professor Se-Hoon Jung's research lab specializes in media literacy, digital persuasion, and the cognitive and behavioral impacts of media multitasking. The lab investigates how visual rhetoric, such as metaphors in advertising, influences persuasion and attitude formation, while also exploring the effects of emerging media phenomena—like deepfakes—on audience perception and decision-making. A central focus is on developing and evaluating media literacy interventions to enhance critical thinking and resilience against disinformation in digital environments.
Professor Sung-kyung Yoo's research lab specializes in clinical and counseling psychology, with a strong focus on help-seeking behaviors, psychological resilience, and the development of professional identity in counselors. The lab investigates how cultural values, personal psychological factors, and internal resources such as spiritual well-being and self-compassion influence mental health attitudes and outcomes. Key research directions include the role of self-concealment and social support in help-seeking, the protective factors in resilient adolescents, and the cognitive processes underlying counselor professional development through self-dialogue. The lab also explores the psychological pathways linking meaning-making, basic psychological needs, and well-being in college students.
Professor Yun-Hee Kim's research lab focuses on translational biomedical research with a strong emphasis on inflammatory diseases, neuroimaging in pediatric epilepsy, and regenerative medicine. The lab investigates the molecular mechanisms of natural compounds like MSM and DIM in modulating inflammation, particularly in conditions such as colitis and inflammatory bowel disease. It also explores biomarkers and imaging techniques for precise diagnosis of focal cortical dysplasia in children with epilepsy, aiming to improve surgical outcomes. Additionally, the lab examines mesenchymal stromal cell heterogeneity, particularly through tissue-nonspecific alkaline phosphatase (TNAP) expression, to refine stem cell isolation and therapeutic applications.
Professor Young Bin Choy's research lab specializes in the development of advanced drug delivery systems with a focus on implantable and ocular drug delivery technologies. The lab designs battery-free, magnetically actuated implantable pumps, bioresorbable suture-based anti-inflammatory systems, and mucoadhesive microsystems for prolonged ocular drug retention. Key research directions include controlled release mechanisms, biocompatible materials (e.g., gelatin, PLGA, mesoporous silica), and targeted delivery to enhance therapeutic efficacy while minimizing systemic side effects. The lab emphasizes translational solutions for chronic diseases such as diabetes and glaucoma through innovative biomaterials and device engineering.
Professor Seung Hee Lee's research lab focuses on deciphering the gene regulatory networks that govern neuronal cell fate specification during central nervous system development. The lab investigates how transcription factors, coactivators like ASC-2, and non-coding RNAs such as miR-218 coordinate to determine neuronal identity, particularly in spinal motor neurons and hypothalamic neurons. Key research directions include the epigenetic regulation of transcription by H3K4 methyltransferase complexes (e.g., MLL3/4-ASCOM), the role of LIM-homeodomain factors in neuronal differentiation, and the integration of transcriptional and post-transcriptional mechanisms in neural fate determination. The lab combines genetic, genomic, and stem cell differentiation approaches to uncover principles for directed neuronal differentiation with potential applications in regenerative medicine.