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 Mun-kyung Joo's research lab specializes in gastrointestinal (GI) diseases, with a focus on the epidemiology, pathogenesis, and endoscopic management of pre-malignant and inflammatory conditions. Key research directions include the molecular mechanisms of Barrett’s esophagus and gastric metaplasia, the impact of long-term proton pump inhibitor use on gastric carcinogenesis, and the role of homeobox genes in GI oncogenesis. The lab also investigates endoscopic interventions for bariatric surgery complications and the diagnosis of eosinophilic esophagitis, reflecting a strong translational approach combining clinical endoscopy with molecular pathology.
Professor Chul Young Kim's research lab specializes in natural product isolation, structural elucidation, and bioactivity evaluation of bioactive compounds from medicinal plants and marine organisms. The lab focuses on developing efficient chromatographic techniques—particularly centrifugal partition chromatography (CPC)—for the rapid purification of iridoid glycosides, flavonoids, and other phytochemicals. Current research directions include the identification of Nrf2-activating antioxidants, the synthesis of luminescent iridium complexes for optoelectronic applications, and the preclinical evaluation of natural radioprotective agents using zebrafish models. The lab integrates analytical chemistry, spectroscopy (NMR, MS), and biological assays to bridge natural product discovery with therapeutic potential.
Professor Sung-Yup Cho's research lab focuses on understanding the molecular mechanisms underlying cancer heterogeneity, tumor microenvironment regulation, and cell death pathways, with a particular emphasis on the role of transglutaminase 2 (TG2) in cancer progression and therapy response. The lab employs patient-derived xenograft (PDX) models and high-throughput genomic technologies to study tumor evolution, genomic alterations in rare gliomas like gliosarcoma, and the interplay between calcium signaling and apoptosis. A central theme is the translation of molecular insights into precision oncology strategies through integrated genomics and functional validation in preclinical models. The lab also investigates the role of TG2 in tumor-promoting inflammation and macrophage recruitment, highlighting its dual roles in cell death and immune modulation.
Professor Hayoung Kim's research lab specializes in the development of intelligent systems and advanced materials for real-world applications in civil infrastructure, construction materials, and financial engineering. The lab focuses on leveraging artificial intelligence—particularly deep learning and reinforcement learning—for predictive modeling in agriculture (e.g., rice blast disease), structural health monitoring (e.g., concrete compressive strength and façade defect detection), and financial trading strategies. Additionally, the lab explores functional materials, such as core–shell polymer particles, for applications in electrorheological fluids. The overarching goal is to create data-driven, automated solutions that enhance safety, efficiency, and sustainability in engineering and environmental systems.
Professor Hyunskim Kim's research lab specializes in advanced electronic systems and integrated circuit design, with a strong focus on high-performance display technologies, radiation detection, and precision sensing. The lab develops innovative analog and mixed-signal ICs for active-matrix displays—such as LCDs and OLEDs—addressing challenges like luminance non-uniformity, bezel constraints, and inter-channel mismatch through novel circuit techniques. It also explores cutting-edge applications in medical imaging and nuclear detection, including direct photon-counting X-ray detectors and high-sensitivity charge preamplifiers. Additionally, the lab contributes to fusion energy research through the development of control systems for plasma stability in tokamak devices.
Professor Woong-gyo Jeong's research lab specializes in orthopedic regenerative medicine and musculoskeletal imaging, with a focus on innovative tissue engineering strategies and advanced diagnostic imaging techniques. The lab investigates mesenchymal stem cell-based therapies for cartilage repair using biodegradable scaffold systems, while also exploring ultrasound-guided interventions for hand and shoulder disorders. Additionally, the lab contributes to clinical radiology by identifying anatomical imaging markers and improving diagnostic accuracy in orthopedic conditions.
Professor Hyeon Jeong's research lab specializes in urological oncology and minimally invasive urological interventions, with a strong focus on improving clinical outcomes through evidence-based practice and advanced analytics. Key research directions include optimizing ureteroscopy and percutaneous nephrolithotomy techniques, developing predictive models for prostate cancer detection using explainable artificial intelligence, and investigating the impact of metabolic and hormonal factors—such as testosterone levels and obesity—on prostate cancer risk. The lab also explores non-surgical rehabilitation strategies, particularly pelvic floor muscle training, for post-prostatectomy incontinence.
Professor Young-Joon Park's research lab focuses on plant developmental biology, particularly the molecular mechanisms underlying plant responses to environmental cues such as temperature and light. The lab investigates thermomorphogenesis, photomorphogenesis, and hormonal signaling—especially auxin and PIF4—through which plants adapt their growth architecture to fluctuating climates. Key research directions include the roles of E3 ubiquitin ligases (e.g., COP1), transcription factors (e.g., HY5, PIF4), and regulatory networks in temperature-responsive growth and phase transitions. The lab also explores biotechnological applications, such as enhancing nutritional quality in food products through omega-3 fortification and optimizing industrial processes like steel refining via oxide dissolution kinetics.
Professor Young Seon Hong's research lab focuses on metabolic and neuroendocrine disorders, with a strong emphasis on the pathophysiology of metabolic syndrome, type 2 diabetes, and their associated complications. The lab investigates the interplay between adipose tissue (particularly epicardial fat), insulin resistance, and cardiovascular risk factors, while also exploring neurobiological mechanisms in mood disorders through the glutamatergic system and astrocyte function. Additional research directions include gastrointestinal dysfunction in diabetes, such as colonic transit and constipation, and diagnostic challenges in thyroid nodules, particularly the risk stratification of AUS/FLUS findings using imaging and clinical features.
Professor Sungjin Lee's research lab specializes in computer systems and storage technologies, with a focus on optimizing flash memory-based storage for high-performance computing environments. The lab explores advanced flash translation layers (FTL), intelligent memory management, and hardware-accelerated data compression to enhance SSD performance, endurance, and efficiency. Key research directions include dynamic memory reconfiguration, append-only I/O architectures, and secure key management for industrial control systems like SCADA. The lab bridges systems software and hardware innovation to address real-world challenges in storage scalability and reliability.
Professor A-La Cho's research lab specializes in computational and systems biology, with a focus on integrating multi-omics data to identify disease-associated genes and regulatory networks. The lab develops network-based bioinformatics methods—such as MUFFINN and WormNet v3—to prioritize cancer drivers and generate testable biological hypotheses from high-throughput data. Additionally, the lab explores enzyme engineering and functional materials, including thermophilic lipases and sol-gel-derived hybrid thin films for optical applications. The research integrates systems biology, synthetic biology, and biomedical data science to advance precision medicine and sustainable biotechnology.
Professor Jun-Sik Yoon's research lab specializes in diagnostic and interventional musculoskeletal ultrasonography, with a focus on nerve imaging and ultrasound-guided interventions. The lab investigates normal nerve anatomy and cross-sectional area reference values across the upper extremity and cervical spine, aiming to improve the diagnosis of entrapment neuropathies such as carpal tunnel and cubital tunnel syndromes. A key research direction involves enhancing diagnostic accuracy through novel ultrasound metrics, such as nerve-to-canal cross-sectional area ratios, and evaluating post-surgical outcomes using ultrasonographic parameters. The lab also explores the feasibility of real-time ultrasound guidance for epidural steroid injections, emphasizing safety and precision in spinal interventions.
Professor Dong Hyun Yoo's research lab specializes in intelligent control systems and human-machine interaction, with a focus on advanced control methodologies such as Linear Active Disturbance Rejection Control (LADRC) for industrial applications. The lab also develops real-time, robust eye gaze estimation systems using infrared LEDs and CCD cameras, enabling intuitive human-robot interfaces for assistive technologies. Their work bridges control theory with practical applications in healthcare and robotics, particularly for elderly and disabled users.
Professor Youngdu Yoon's research lab specializes in advanced electric machine control and power electronics, with a strong focus on sensorless control techniques for high-performance AC drives. The lab develops innovative modulation strategies for matrix converters and advanced flux weakening algorithms for permanent magnet machines, aiming to enhance dynamic performance and efficiency. A key research direction involves high-frequency signal injection methods—particularly square-wave voltage injection—enabling robust and delay-free rotor position estimation in induction and synchronous machines.
Professor Jeong-Hoon Shin's research lab focuses on cardiovascular health, particularly the interplay between vascular health, systemic inflammation, and chronic diseases such as rheumatoid arthritis, hypertension, and retinal vascular disorders. The lab investigates the role of arterial stiffness and subclinical atherosclerosis in predicting cardiovascular outcomes and explores non-pharmacological interventions like Tai Chi for vascular protection. It also examines the impact of socioeconomic factors on cardiovascular risk and outcomes in hypertensive populations, integrating clinical, epidemiological, and emerging AI-driven approaches to personalized nutrition and preventive strategies.
Professor Han Gyu Joo's research lab specializes in advanced reactor physics and computational nuclear engineering, focusing on high-fidelity whole-core nuclear core analysis using deterministic and stochastic methods. The lab develops innovative transport and diffusion methodologies, including the DeCART and nTRACER codes, for accurate and efficient simulation of light water reactors under various operating conditions. Key research directions include advanced acceleration techniques such as CMFD and preconditioned Krylov solvers, resonance treatment with spectral superhomogenization, and dynamic feedback modeling for improved core performance prediction.
Professor Byoung Jae Kim's research lab focuses on translational biomedical research with a strong emphasis on regenerative medicine, maternal-fetal medicine, and oncology. The lab investigates mesenchymal stem cells from Wharton’s jelly for regenerative applications, explores the impact of maternal conditions such as preterm prelabor rupture of membranes and fatty liver disease on neonatal outcomes, and examines the tumor microenvironment’s role in drug resistance, particularly in targeted cancer therapies. The lab integrates clinical observations with molecular mechanisms to identify biomarkers and develop strategies for improved patient outcomes.
Professor Tae-Joon Bae's research lab specializes in entrepreneurship, social enterprises, and innovation ecosystems, with a strong focus on the psychological and institutional factors shaping entrepreneurial intentions and sustainable ventures. The lab investigates how education, emotional and cognitive motivations, institutional logics, and stakeholder dynamics influence entrepreneurial behavior and organizational sustainability. It also develops empirical tools and metrics to assess and support regional entrepreneurial ecosystems, particularly through data-driven, policy-relevant frameworks.
Professor Jae Ho Jung's research lab specializes in ophthalmic pharmacology and surgical ophthalmology, with a focus on the mechanisms of prostaglandin analogs in orbital fat metabolism and their clinical implications in ocular surface and orbital disorders. The lab investigates the pathophysiology of conditions such as deep superior sulcus syndrome and Miller Fisher syndrome, particularly in pediatric populations, and explores surgical techniques for orbital and extraocular muscle disorders. Additionally, the lab examines drug delivery dynamics, including the intraocular pharmacokinetics of triamcinolone acetonide after vitrectomy, to optimize therapeutic outcomes.
Professor Gyuseong Cho's research lab specializes in radiation detection and measurement, with a focus on developing advanced gamma and neutron spectrometers for environmental, personal, and industrial monitoring. The lab emphasizes innovative detector systems using scintillators—such as NaI(Tl) and plastic scintillators—combined with modern readout technologies like silicon photomultipliers (SiPMs) to enhance performance in compact, low-power, and cost-effective designs. Key research directions include pulse pileup correction, ambient dose equivalent estimation, pseudo-gamma spectroscopy using deep learning, and the design of compact, accelerator-driven neutron sources for industrial applications. The lab integrates Monte Carlo simulations, machine learning, and experimental validation to advance radiation detection systems for real-world deployment.