Explore research labs at leading universities worldwide — research fields and key papers at a glance.
Professor Huitaek Yun's research lab specializes in advanced manufacturing technologies with a strong focus on smart and sustainable production systems. The lab explores predictive maintenance using IoT and machine learning to enhance equipment reliability and reduce downtime in industrial settings. It also develops innovative methods for feature recognition from CAD models, three-dimensional shape measurement using Fourier transform profilometry, and real-time sound monitoring in manufacturing processes through deep learning. The integration of sensing technologies, signal processing, and intelligent algorithms enables the lab to advance smart manufacturing and automation.
Professor Wan-Suk Jang's research lab specializes in the intersection of media, technology, and consumer behavior, with a strong focus on sport spectatorship, digital influence, and artificial intelligence in journalism. The lab explores how social media influencers, team identification, and algorithmic content affect consumer emotions, trust, and decision-making. Key research directions include the psychological mechanisms behind audience engagement, the role of perceived credibility and attractiveness in influencer marketing, and the impact of AI-generated content on user perception and persuasion. The lab also develops psychometrically robust measurement tools, such as the Spectator-based Sports Team Reputation (SSTR) scale, to advance theory and practice in sport management and media studies.
Professor Ji-Hyun Kim's research lab focuses on scholarly communication, open access, and research data management within academic institutions. The lab investigates faculty behaviors related to institutional repository participation, data sharing policies in scholarly journals, and the practical challenges of research data preservation and reuse. A central theme is understanding the socio-technical and institutional factors that influence researchers’ adoption of open science practices.
Professor Mankyu Choi's research lab focuses on health services research, particularly patient-centered healthcare delivery, medical communication, and health outcomes in diverse clinical settings. The lab investigates the determinants of patient satisfaction, intent to revisit, and long-term care needs, with a strong emphasis on structural relationships in healthcare systems and the impact of socio-economic and behavioral factors on mental and cardiovascular health. Research spans public hospitals, dental clinics, and aging populations, integrating statistical modeling and large-scale national survey data to inform health policy and service improvement.
Professor Baek Hyun Kim's research lab specializes in medical imaging, musculoskeletal radiology, and advanced materials science. The lab focuses on identifying reliable anatomical landmarks in cross-sectional imaging for spinal segmentation and improving diagnostic accuracy in musculoskeletal disorders. Additionally, the lab explores innovative nanomaterials and liquid-based energy conversion systems, particularly leveraging radioisotope-driven free radicals and plasmonic nanostructures for next-generation power sources.
Professor Moon Ki Kim's research lab specializes in the design, simulation, and application of advanced nanomaterials and biomimetic systems, with a strong focus on graphene-based 2D materials, DNA nanostructures, and protein dynamics. The lab develops innovative fabrication techniques for high-performance membranes and flexible electronics, while also pioneering computational methods to model molecular motions and conformational transitions in proteins and nanostructures. Their work bridges nanotechnology, biophysics, and materials science to address challenges in water purification, energy efficiency, and biomedical applications.
Professor Kyungmin Choi's research lab specializes in advanced materials and catalysis, focusing on metal–organic frameworks (MOFs) for sustainable applications in isotope separation, single-atom catalysis, and biomedical therapeutics. The lab develops innovative MOF-based materials for deuterium extraction and tumor therapy, leveraging unique pore architectures and metal coordination for high-performance catalytic systems. Additionally, the group explores transition-metal-catalyzed organic transformations, including challenging C–N and C–C bond formations, with an emphasis on practical and selective methodologies.
Professor Byung Bae Park's research lab specializes in hematological malignancies, with a primary focus on lymphomas and leukemia. The lab investigates the molecular mechanisms underlying treatment resistance, particularly in aggressive subtypes such as angioimmunoblastic T-cell lymphoma, diffuse large B-cell lymphoma, and FLT3-mutated acute myeloid leukemia. Key research directions include identifying prognostic biomarkers like ERCC1 and bcr-abl, evaluating novel therapeutic strategies including targeted inhibitors and combination chemotherapy, and improving outcomes in relapsed or refractory disease through innovative regimens and stem cell transplantation. The lab integrates clinical oncology with molecular pathology to advance precision medicine in hematologic cancers.
Professor Seul Ki Choi's research lab focuses on public health and health disparities, with a strong emphasis on health equity, mental health, and lifestyle-related health outcomes among vulnerable populations. The lab investigates the impact of healthcare policy—particularly Medicaid expansion—on cancer screening and mortality disparities in the U.S., while also exploring dietary behaviors, anthropometric status, and mental health among North Korean defectors resettling in South Korea. Additionally, the lab evaluates digital health tools, such as mobile apps for dementia care, to improve health information access and quality of care. These interdisciplinary efforts aim to inform policy and intervention strategies for underserved and marginalized communities.
Professor Chang Kunok's research lab specializes in computational materials science, with a primary focus on phase-field modeling of microstructural evolution in polycrystalline materials. The lab investigates grain growth, second-phase particle interactions, residual stress development, and precipitate formation in complex alloy systems, particularly under conditions of elastic anisotropy and compositional inhomogeneity. Using advanced numerical methods and high-performance computing, the lab develops and applies efficient phase-field frameworks to simulate microstructure evolution in 2D and 3D, with applications to engineering materials such as Fe-Cr-Al alloys and multilayered composites. The research bridges fundamental physics with practical materials design, emphasizing predictive simulation of microstructure-property relationships.
Professor Eun-Sik Choi's research lab specializes in cross-cultural psychology, with a focus on cultural influences on mental health, emotion regulation, and psychosocial adaptation. The lab investigates how cultural contexts shape psychological processes such as body image, somatization, anxiety related to global health crises (e.g., COVID-19), and emotion recognition in social interactions. Key research directions include the development and validation of culturally adapted psychological assessment tools, the role of parental support in adolescent well-being across East Asian and Western societies, and the impact of pandemic-related stressors on mental health. The lab emphasizes comparative and longitudinal approaches to understand both universal and culture-specific patterns in psychological functioning.
Professor Yongho Kim's research lab specializes in the intersection of bioelectronics, protein engineering, and nanomaterials for next-generation healthcare and biocatalysis. The lab focuses on designing intelligent bioelectronic systems for real-time, patient-friendly health monitoring and treatment, leveraging wearable and implantable technologies. A key research direction involves the rational design of peptides and proteins to direct the self-assembly of nanomaterials—such as C60 fullerenes and graphene—into highly ordered, functional superstructures with tailored electronic and structural properties. The lab also applies computational modeling and machine learning to optimize biomolecular systems for applications in energy, pharmaceuticals, and structural biology.
Professor Young Soo Choi's research lab focuses on strategic human resource management, particularly in the hospitality and service industries, with an emphasis on leadership development, employee engagement, and organizational sustainability. The lab also explores financial reporting practices, including non-GAAP earnings disclosures and conservative accounting in firm valuation models, integrating behavioral and managerial accounting perspectives. Research themes include employee perceptions of green practices, team-based learning in management education, and financial modeling accuracy in bond portfolios. The lab bridges empirical human resource practices with financial and managerial accounting insights to improve organizational performance and decision-making.
Professor Jinseok Park's research lab specializes in advanced polymer science and materials engineering, focusing on the design and characterization of functional polymer electrolytes for next-generation energy storage devices, particularly solid-state lithium metal batteries. The lab investigates nanoscale phase separation, ion transport mechanisms, and the role of molecular architecture in multiblock copolymers and elastomeric systems to achieve high ionic conductivity and mechanical robustness at low temperatures. Additional research extends into soft matter physics, exploring self-assembly of block copolymers and nanoparticle dynamics in polymer melts using advanced characterization techniques such as single-particle tracking and X-ray scattering.
Professor Suk-ki Jeong's research lab specializes in applying deep learning and artificial intelligence to dental and maxillofacial medical imaging, focusing on automated diagnosis and treatment planning in orthodontics and oral surgery. The lab develops advanced convolutional neural networks (CNNs) and transfer learning strategies to analyze panoramic radiographs, cephalometric radiographs, and cone-beam CT scans for early detection of conditions such as osteoporosis and orthognathic surgery indications. A key emphasis is placed on interpretable AI through techniques like Grad-CAM and active learning to enhance model transparency and performance with limited annotated data. The lab also pioneers AI-driven segmentation of anatomical structures, such as the maxillary sinus, for improved diagnostic accuracy in dental imaging.
Professor Inyoung Choi's research lab focuses on regenerative medicine and stem cell biology, particularly the differentiation of human pluripotent stem cells into functional skeletal muscle cells to model genetic myopathies such as Duchenne muscular dystrophy. The lab also explores molecular mechanisms underlying stress response pathways, including the JNK signaling cascade, and applies biotechnology for the production of therapeutic proteins in transgenic avian systems. Additionally, the lab investigates transcriptional regulation during human myogenesis and explores socio-psychological values in middle-aged populations, reflecting a multidisciplinary approach spanning molecular biology, regenerative medicine, and bioinformatics.
Professor Hyosoon Park's research lab focuses on clinical and translational biomedical research, with a strong emphasis on infectious disease diagnostics, endocrine and metabolic disorders, and cardiovascular risk markers. The lab investigates molecular diagnostics for antibiotic resistance in *Helicobacter pylori*, explores hormonal and metabolic biomarkers such as anti-Müllerian hormone in polycystic ovary syndrome, and examines the impact of nutritional interventions and vitamin D status on metabolic and cardiovascular health. The lab also evaluates clinical decision support systems to improve patient safety and response times in critical care settings.
Professor Bonggeun Kim's research lab specializes in labor economics and empirical microeconomics, with a strong focus on measurement error, income and wage dynamics, and the reliability of survey and satellite-based economic data. The lab investigates long-term income mobility, intertemporal labor supply decisions, and the under-reporting of self-employment income, often using longitudinal and retrospective survey data. A central theme is the development and application of econometric methods to correct for non-classical measurement error, particularly mean-reverting and transitory components, in both household survey and remote sensing data. The lab also explores the validity of alternative economic indicators, such as night lights data, in evaluating economic sanctions and policy impacts.
Professor Yoon-Jung Kim's research lab focuses on molecular mechanisms underlying cancer progression and therapy resistance, with a particular emphasis on redox biology and DNA repair pathways. The lab investigates the non-canonical roles of antioxidant proteins such as peroxiredoxin 1 (Prx1) in tumor survival and radiotherapy response, especially under hypoxic and oxidative stress conditions. Additionally, the lab explores genetic alterations in human embryonic stem cells, particularly the role of chromosomal instability and oncogene activation (e.g., BCL2L1 and TPX2) in long-term culture adaptation. A parallel line of research examines drug hypersensitivity and cross-reactivity in patients with NSAID intolerance, aiming to identify safe analgesic alternatives.
Professor Dae-Yong Kim's research lab specializes in translational oncology and gastrointestinal cancer therapeutics, with a focus on molecular mechanisms underlying carcinogenesis and treatment response in colorectal and gastric cancers. The lab investigates epigenetic regulators such as histone deacetylases (HDACs), evaluates the impact of preoperative therapies like chemoradiotherapy on surgical outcomes, and explores novel radiation and natural compound-based treatments for hepatocellular carcinoma and portal vein thrombosis. The research integrates molecular biology, clinical pathology, and surgical oncology to improve patient prognosis and treatment strategies.