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 Dusun Park's research lab specializes in quantum materials, with a focus on strongly correlated electron systems, unconventional superconductivity, and topological electronic states. The lab investigates emergent quantum phenomena such as charge-glass transitions, nodal quasiparticles, and the interplay between superconductivity and magnetism in rare-earth and transition-metal compounds. Using advanced thermodynamic and transport measurements, including field-angle heat capacity and high-pressure transport, the lab probes the momentum-space structure of superconducting gaps and electronic phase transitions in materials like cuprates, nickelates, and Weyl semimetals. Their work provides fundamental insights into quantum criticality and novel quantum phases in correlated oxides and intermetallics.
Professor Ki-Young Kwon's research lab specializes in diagnostic radiology and nuclear medicine, with a focus on advanced medical imaging techniques for early cancer detection and accurate staging. The lab investigates the clinical applications of PET-CT, MRI (including 3T and endorectal techniques), and diffusion-weighted imaging in oncology, particularly for prostate and renal cell cancers. A key research direction involves understanding the role of imaging biomarkers in predicting disease progression and renal outcomes after major urological surgeries. The lab also explores molecular imaging and epigenetic markers, such as E-cadherin methylation, in hepatocarcinogenesis to improve early diagnosis and risk stratification.
Professor Junho Seo's research lab specializes in quantum nanomechanics, quantum sensing, and 2D quantum materials, with a focus on exploring quantum phenomena in nanoscale systems. The lab develops advanced superconducting and electromechanical devices to achieve back-action evading measurements, quantum-limited detection, and parametric amplification, enabling ultra-sensitive sensing and the generation of squeezed states. It also investigates intrinsic magnetic order in van der Waals materials, particularly metallic 2D magnets, to advance next-generation spintronic and quantum information technologies. The integration of quantum control with nanomechanical and magnetic systems lies at the heart of the lab’s interdisciplinary approach.
Professor Lee Seung Seob's research lab specializes in the development of advanced nanomaterials and hybrid nanocomposites for next-generation flexible, stretchable, and transparent electronics. The lab focuses on synthesizing ultra-long metallic nanowires—particularly silver nanowires—through innovative solution-based methods, enabling high electrical conductivity and mechanical robustness. Key research directions include nanosoldering techniques for enhancing conductivity and adhesion without high-temperature processing, and integrating these nanowires into stretchable piezoelectric generators and wearable energy harvesters. The lab's work aims to overcome the limitations of traditional materials like ITO, graphene, and carbon nanotubes by creating high-performance, scalable alternatives for real-world wearable and soft electronics applications.
Professor Chang-Gun Lee's research lab specializes in real-time systems and embedded systems, with a strong focus on scheduling theory, cache-related preemption analysis, and system predictability in safety-critical environments. The lab develops advanced techniques for bounding preemption delays in multitasking systems, particularly in the context of instruction caching and fixed-priority scheduling, to enhance timing predictability in real-time applications. Additionally, the lab explores dynamic QoS adaptation, radar scheduling, and system utilization optimization in complex embedded systems. Beyond computing systems, the lab also engages in biomedical research, particularly on osteoblast regulation and anti-osteoporotic compounds such as morroniside.
Professor Seseon Kim's research lab specializes in head and neck oncology, with a primary focus on oropharyngeal and oral squamous cell carcinomas. The lab investigates the molecular mechanisms of tumorigenesis, particularly the role of human papillomavirus (HPV) in tonsillar cancer, and explores biomarkers such as p16, survivin, and VEGF in tumor progression. A key research direction involves advancing transoral robotic surgery (TORS) techniques for improved oncologic outcomes and functional recovery in patients with head and neck cancers.
Professor Hak Jae Kim's research lab specializes in radiation oncology and translational cancer research, with a strong focus on optimizing radiotherapy outcomes in sarcomas, esophageal cancer, and uterine cervical cancer. The lab investigates adjuvant radiotherapy efficacy, treatment response patterns, and prognostic factors to improve survival and reduce complications. It also explores novel epigenetic agents like psammaplin A, examining their pharmacokinetics and tissue distribution to support the development of targeted cancer therapies. The lab integrates clinical data with preclinical pharmacological studies to advance personalized radiation treatment strategies.
Professor Hong In Yoon's research lab specializes in radiation oncology and medical physics, focusing on optimizing radiotherapy outcomes through advanced dosimetric analysis, predictive biomarkers, and personalized treatment strategies. The lab investigates radiation-induced toxicity, particularly in organs at risk such as the heart, liver, and immune system, aiming to improve patient safety and treatment efficacy. Key research directions include identifying clinical and imaging predictors of complications like atrial fibrillation, lymphopenia, and radiation-induced liver disease, as well as enhancing treatment delivery through protocol-driven patient management. The lab also explores the integration of immunotherapy with radiotherapy, especially in challenging malignancies like glioblastoma and cervical cancer.
Professor Sunghyuk Choi's research lab specializes in emergency medicine and critical care, with a focus on improving diagnostic accuracy and therapeutic outcomes in acute conditions. The lab investigates innovative interventions for pneumothorax, such as outpatient management using small-caliber catheters and Heimlich valves, and explores biomarkers like BNP for heart failure diagnosis in specific populations. Additional research directions include optimizing resuscitation strategies—such as the use of hypertonic saline in neutrophil function—and enhancing trauma care through improved tetanus prophylaxis protocols. The lab emphasizes evidence-based, patient-centered approaches in emergency settings, particularly in Asian populations.
Professor Jiseon Ahn's research lab specializes in consumer behavior and brand management within the tourism and hospitality industries, with a strong focus on experiential marketing, sustainable practices, and psychological drivers of customer loyalty. The lab investigates how brand experiences—particularly sensory, affective, behavioral, and intellectual dimensions—shape perceived value, well-being, and long-term patronage intentions in contexts such as green hotels, integrated resorts, and cruise services. Using advanced quantitative methods like PLS-SEM, the lab explores the mediating roles of emotions, perceived value, trust, and psychological needs satisfaction in shaping customer attitudes and behaviors. The research also emphasizes the strategic importance of corporate social responsibility, emotional engagement, and personalized experiences in enhancing customer loyalty and well-being.
Professor Jichul Bae's research lab focuses on metabolic liver diseases, particularly nonalcoholic fatty liver disease (NAFLD), with a strong emphasis on its interplay with insulin resistance, type 2 diabetes, and metabolic syndrome. The lab investigates the impact of lifestyle interventions such as regular exercise and nutritional supplements—like carnitine-orotate complex—on liver health and glycemic control in diabetic and prediabetic populations. A key research direction involves understanding the role of biomarkers such as HbA1c, serum albumin, and hemoglobin in metabolic and liver disease progression, especially in non-diabetic individuals. The lab also explores how factors like obesity, fasting glucose, and anemia influence these metabolic parameters in large-scale population studies.
Professor Ji Won Kim's research lab focuses on gastrointestinal immunology and mucosal inflammation, with a particular emphasis on the roles of key signaling molecules such as NF-κB and TLR4 in inflammatory bowel diseases like Crohn’s disease and ulcerative colitis. The lab investigates the pathophysiological mechanisms of intestinal fibrosis and the impact of microbial and host-derived factors on gut barrier integrity and immune regulation. Using both preclinical models and human tissue studies, the lab explores therapeutic strategies involving probiotics, microbiota modulation, and targeted molecular interventions.
Professor Suzy Kim's research lab specializes in translational and clinical oncology, with a focus on improving treatment outcomes for sarcomas and head and neck cancers through adjuvant radiotherapy and multimodal therapies. The lab also investigates radioprotective strategies, particularly using granulocyte colony-stimulating factor (GCSF), to preserve reproductive function during radiation therapy. Additionally, the lab explores predictive biomarkers for preeclampsia, emphasizing circulating miRNAs and soluble factors for early diagnosis. Their work bridges clinical oncology, reproductive radiobiology, and maternal-fetal medicine.
Professor Sora Park's research lab focuses on the intersection of digital inequality, media literacy, and the societal impacts of emerging technologies. The lab investigates how digital exclusion is shaped by socio-technical systems, particularly in public services and news ecosystems, with an emphasis on algorithmic governance, trust in media, and the role of smart technologies in reinforcing or mitigating social disadvantage. Research spans comparative studies across countries, critical analysis of automated welfare systems, and the development of frameworks for digital media literacy to promote equitable participation in digital societies.
Professor Kim Young-jin's research lab specializes in biomedical engineering and infectious disease diagnostics, with a focus on improving spinal fusion stability through biomechanical modeling and developing advanced diagnostic tools for mycobacterial infections. The lab investigates implant biomechanics using finite element analysis and explores novel molecular diagnostics, including PCR-based methods and ELISA assays, to enhance the detection and differentiation of viable pathogens such as Mycobacterium tuberculosis and nontuberculous mycobacteria. The research also extends to polymer science, particularly in the development and characterization of polymer blends for potential biomedical applications. Overall, the lab bridges materials science, medical device design, and clinical microbiology to address critical challenges in orthopedic surgery and infectious disease management.
Professor Hee-Pyoung Park's research lab specializes in critical care medicine and anesthesiology, with a focus on improving perioperative outcomes through innovative pharmacological and physiological interventions. Key research directions include optimizing intensive care unit (ICU) patient management using predictive scoring systems like APACHE II, mitigating postoperative complications such as catheter-related bladder discomfort, and exploring neuroprotective strategies in cerebral ischemia using anesthetic agents like sevoflurane and dexmedetomidine. The lab also investigates hemodynamic and microcirculatory responses during surgical procedures, particularly in relation to oxygenation, positioning effects on intraocular pressure, and thrombolytic therapy enhancement with albumin.
Professor Seung-ho Han's research lab specializes in forensic anthropology and clinical anatomy, with a strong focus on anatomical variability and its applications in human identification. The lab conducts detailed morphometric analyses of skeletal structures—particularly the hyoid bone, thoracic vertebrae, and lower limb muscles—to develop sex determination methods using imaging and statistical techniques. A key research direction involves identifying precise motor entry points (MEPs) and intramuscular motor points (IMPs) for clinical applications such as neuromuscular blockade. The lab also contributes to disaster victim identification through meticulous anatomical documentation and forensic reconstruction, as demonstrated in the Daegu subway disaster recovery efforts.
Professor Jae-Hyang Lim's research lab focuses on the molecular mechanisms underlying inflammation regulation, particularly the role of deubiquitinating enzymes and transcription factors in innate immune responses. The lab investigates how key regulators such as CYLD and EVI1 modulate NF-κB signaling to maintain immune homeostasis and prevent excessive inflammation in infectious and fibrotic diseases. Their work spans in vitro and in vivo models, with a strong emphasis on translational insights into conditions like pneumonia, lung fibrosis, and sepsis.
Professor Han Soo Yoo's research lab specializes in the neurobiological mechanisms underlying neurodegenerative disorders, with a primary focus on Parkinson’s disease, Lewy body disease, and Alzheimer’s disease. The lab investigates the interplay between neurodegeneration, neuroimaging biomarkers—particularly dopamine transporter (DAT) and amyloid PET—olfactory dysfunction, and cognitive decline. Key research directions include identifying early cortical and striatal pathology patterns, understanding the prognostic value of dopaminergic and amyloid pathology, and exploring metabolic and clinical modifiers such as BMI in disease progression. The lab integrates clinical neurology with advanced neuroimaging and neuropsychological assessment to uncover early diagnostic and prognostic markers.
Professor Mi-Sook Kwon's research lab specializes in clinical anesthesiology and perioperative medicine, with a strong focus on optimizing surgical outcomes in liver transplantation and living donor hepatectomy. The lab investigates anesthetic techniques—comparing volatile agents and total intravenous anesthesia—while evaluating their impact on postoperative organ function, particularly liver and renal recovery. Additional research directions include hemostatic safety in donors, such as the use of epidural catheters and coagulation profile monitoring, as well as the immunological and physiological responses to major surgery, including gender differences in white blood cell dynamics. The lab also explores innovative strategies to prevent tumor cell reinfusion during autotransfusion in liver surgery.