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 Ho-Keun Kwon's research lab focuses on immunomodulation through probiotics and natural plant extracts, with a central emphasis on regulatory T cells (Tregs) and dendritic cell-mediated immune tolerance. The lab investigates how specific probiotic mixtures and cinnamon extracts can induce regulatory immune cells, suppress pro-inflammatory responses, and exert anti-tumor and anti-inflammatory effects both in vitro and in vivo. Key research directions include the molecular mechanisms of Foxp3+ Treg induction, the role of regulatory dendritic cells, and the therapeutic potential of natural compounds in autoimmune diseases and cancer.
Professor Jeongmi Lee's research lab specializes in green and sustainable extraction technologies for natural products, with a focus on optimizing extraction processes for pharmaceutical and biochemical applications. The lab investigates novel metabolic pathways in microorganisms, particularly alternative polyamine biosynthesis in pathogens like *Vibrio cholerae*, and explores the enzymatic mechanisms of beta/alpha-barrel fold decarboxylases in diverse bacteria. Additionally, the lab conducts metabolomic and antioxidant profiling of natural products—such as green tea—under varying preparation conditions to understand how processing parameters influence bioactive compound profiles and functional properties.
Professor Sungwoo Bae's research lab specializes in power electronics, renewable energy integration, and electric vehicle charging systems. The lab focuses on developing advanced power conversion systems, including high-efficiency dc-dc converters, pulse generators, and microgrid control strategies, to enable sustainable energy solutions. Key research directions include modeling and forecasting electric vehicle charging demand, optimizing battery cell balancing for energy storage, and enhancing the performance of hybrid renewable energy systems such as wind-solar hybrids. The lab emphasizes practical applications in smart grids, sustainable transportation, and energy-efficient power electronics.
Professor Chirag B. Godiya's research lab specializes in the development of sustainable, bio-based materials for environmental remediation, with a focus on advanced adsorbents and nanocatalysts for water purification. The lab pioneers functionalized hydrogels, chitosan and wood-derived composites, and graphene-based macrostructures to remove heavy metals, pharmaceuticals, dyes, and persistent pollutants like PFAS from industrial and municipal wastewater. A key research direction involves cascaded treatment strategies—combining adsorption with in-situ catalytic conversion or regeneration—enabling resource recovery and reduced secondary waste. The lab emphasizes green synthesis, recyclability, and real-world applicability of materials derived from natural polymers and biomass.
Terao教授の研究室では、遷移金属触媒を用いた新しいC–C結合形成反応の開発に注力しており、特にニッケルや銅触媒を用いたアルキル-アルキルクロスカップリング反応の効率化に貢献しています。Grignard試薬やアルキルハライド、スルホネートを用いた反応系において、リン配位子を不使用で高収率で反応を達成する新規触媒系の開発が進んでいます。また、1,3-ブタジエンやテトラエン系添加剤の効果を解明し、反応機構の理解を深めるとともに、π-コンjugatedポリマーの電荷移動性向上のための新規分子設計も展開しています。
Xuan Song教授の研究室は、自然災害と人的行動の予測を柱とした大規模なデータ駆動型研究を推進しています。特に、GPSデータや画像解析を活用した災害時の人々の移動行動の特定・予測、ならびに鉄鋼素材の欠陊検出における深層学習応用に注力しています。都市スケールの交通行動予測や災害被害の予測的マッピングの実現を目指しており、社会的インフラの強化に貢献する研究を展開しています。
Alok Sharma教授の研究室は、ゲノムデータや脳波信号を含む高次元で複雑なオミックスデータの解析に、深層学習とコンvolutionニューラルネットワークを応用した新規解析手法の開発を主眼としています。特に、非画像データを画像に変換する「DeepInsight」のようなアプローチにより、遺伝子のクラスターや脳波パターンの微細な差を効果的に抽出し、疾患のメカニズム解明や脳・コンピュータインターフェースの高精度分類を実現しています。臨床応用に向けたリアルタイムかつ高精度な予測モデル構築が、研究の核となっています。
Yagi教授の研究室は、肝再生および肝移植後の長期的成績を高めるため、特に門脈血流動態や移植後における血管新生・成長因子の役割に注目した研究を推進しています。特に、成人および小児への生体供肝移植における移植肝の機能予後や、門脈圧が再生に与える影響を、臨床的・生理学的アプローチで解明しています。また、ドナー年齢や移植肝体積比(GRWR)が予後要因として果たす役割についても、精密な解析を実施しています。
山口陽平教授の研究室は、都市部の建物集積のエネルギー効率向上とカーボンニュートラル化を実現するため、GIS統合型都市建物エネルギーモデルやBIPV(ビルダーメンテーション型太陽光発電)の潜在的発電能力を高精度に評価する手法を開発しています。特に、時間的・空間的分解能の高い建物エネルギー需要と脱炭素化可能性の定量的分析を柱とし、都市スケールでの温暖化対策とヒートアイランド現象の緩和に貢献するモデルを構築しています。また、住民の行動行動を定式化する確率的イベントモデルを用いた、家庭部門のエネルギー需要予測の高度化も進めています。
Shin Sugiyama教授の研究室は、主に氷河の動態とその環境要因の関係を、地上観測と人工衛星データを統合して解明しています。特に、氷河の表面流速や融解、湖面変化、底面水圧の時間的変動に注目し、氷河の後退や融解メカニズムを高分解能で解明しています。研究はアルプスやヒマラヤ、グリーンランド、パタゴニアの氷河を対象とし、氷・水・地盤の相互作用を詳細に分析しています。
Professor In-Bok Lee's research lab specializes in sustainable building environments and energy-efficient systems, with a focus on natural ventilation in agricultural buildings and energy management in building-integrated greenhouses. The lab employs advanced computational fluid dynamics (CFD) and dynamic energy simulation models to optimize indoor air quality, thermal comfort, and energy performance under real-world weather conditions. Research also emphasizes experimental validation using wind tunnel tests and particle image velocimetry (PIV) to ensure model accuracy and reliability. The ultimate goal is to develop intelligent, energy-smart environmental control systems for agricultural and building applications.
Professor Incheol Choi's research lab specializes in cross-cultural psychology, focusing on how cultural differences shape cognitive processes such as attribution, reasoning, and self-construal. The lab investigates the contrast between analytic (Western) and holistic (East Asian) thinking patterns, particularly in how individuals interpret behavior, manage contradictions, and form self-concepts. Key research directions include the correspondence bias, causal attribution, dialectical thinking, and the role of situational context in shaping perception and judgment across cultures.
Professor Yun-Hee Lee's research lab focuses on the cellular and molecular mechanisms underlying adipose tissue plasticity, with a particular emphasis on brown and white adipocyte differentiation, macrophage-adipocyte crosstalk, and metabolic regulation. The lab investigates how environmental cues such as cold stress and bioactive compounds like EGCG influence adipogenesis, autophagy, and mitochondrial function in adipose tissues. Key areas of interest include the role of microRNAs, Beclin1 in lipid and mitochondrial homeostasis, and the impact of environmental toxins like benzalkonium chloride on metabolic and lung epithelial cells. The lab aims to uncover novel therapeutic targets for metabolic diseases such as obesity and insulin resistance.
Professor Chi Young Shim's research lab focuses on cardiovascular pathophysiology, particularly the mechanisms underlying heart failure with preserved ejection fraction (HFpEF) and atherosclerotic cardiovascular disease. The lab investigates hemodynamic responses during exercise, such as exercise-induced pulmonary hypertension and left ventricular filling pressure dynamics, to identify prognostic markers and pathophysiological pathways. It also explores molecular mechanisms involving receptors like RAGE and platelet-endothelial interactions in vascular inflammation and early atherosclerosis. Recent work includes clinical trials evaluating cardioprotective effects of SGLT2 inhibitors like dapagliflozin on left ventricular diastolic function in diabetic patients.
Professor Jun Yong Park's research lab specializes in hepatology and viral hepatitis, with a strong focus on chronic hepatitis B (CHB) and hepatocellular carcinoma (HCC). The lab investigates host-virus interactions, non-invasive fibrosis assessment using elastography, and the dynamic virological and serological responses to antiviral therapy. Key research directions include optimizing treatment strategies through biomarkers such as quantitative HBsAg and HBeAg, and evaluating innovative locoregional therapies like hepatic arterial infusion chemotherapy (HAIC) for advanced HCC.
Professor Myeongkyu Lee's research lab specializes in advanced optical materials and nanofabrication, focusing on tunable structural colors, plasmonic color printing, and laser-induced nanostructuring for applications in photonics, energy conversion, and thermal management. The lab develops scalable, lithography-free techniques—such as laser printing and pulsed laser irradiation—to engineer functional surfaces with precise control over optical and thermal properties. Key research directions include designing metal–insulator–metal (MIM) cavities for vibrant, non-fading colors and creating phase-change materials for dynamic thermal emission control. The lab also applies X-ray diffraction and materials characterization to understand and optimize nanostructured materials for solar cells and other optoelectronic devices.
Professor Seokhwan Hwang's research lab specializes in molecular microbial ecology and environmental biotechnology, focusing on the detection, quantification, and characterization of key microbial communities in anaerobic processes. The lab employs advanced molecular techniques such as TaqMan quantitative real-time PCR to study methanogens and ammonia-oxidizing bacteria at various taxonomic levels, particularly in waste treatment systems. Their work emphasizes the development of group-specific primer and probe sets for precise monitoring of microbial populations in environmental and engineered systems, including anaerobic digesters and swine wastewater treatment reactors. The lab’s research contributes significantly to understanding microbial community dynamics and improving the efficiency of biological wastewater and waste treatment processes.
Professor Seoung Bum Kim's research lab specializes in advanced data analytics and machine learning applications in health sciences, chemistry, and pharmaceutical innovation. The lab focuses on developing statistical and computational methods for feature selection, multivariate process monitoring, and intelligent molecular design. Key research directions include the integration of nonparametric statistical techniques like the bootstrap with multivariate control charts, the application of association rule mining and network analysis to traditional medical texts, and the use of deep generative models—particularly generative adversarial networks with reinforcement learning—for de novo drug design. The lab also works on grounding heuristic methods like the Mahalanobis-Taguchi System in rigorous statistical theory to enhance their reliability and interpretability.
Professor Kyu-Sung Lee's research lab specializes in urological disorders, with a focus on lower urinary tract symptoms, including overactive bladder (OAB), underactive bladder (DUA), and stress urinary incontinence. The lab investigates innovative surgical and medical therapies, such as mid-urethral slings and combination pharmacotherapies, while also pioneering bio-integrated electronic systems that mimic the dynamic behavior of the urinary bladder. Their work bridges clinical urology with advanced biomedical engineering, particularly in developing implantable, conformal electronic devices for real-time bladder monitoring and functional restoration.
Professor Gee Young Suh's research lab specializes in molecular and cellular mechanisms underlying inflammatory responses, with a particular focus on the regulation of cyclooxygenase-2 (COX-2) and the anti-inflammatory effects of carbon monoxide (CO). The lab investigates how endogenous and exogenous CO modulate immune cell signaling, especially in macrophages, using in vitro models such as RAW 264.7 cells. Key research directions include the signaling pathways involved in LPS-induced COX-2 expression and the role of heme oxygenase-1 (HO-1) in mediating protective responses against inflammation. The lab also explores the therapeutic potential of CO-releasing molecules in inflammatory diseases.