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 Sangyup Choi's research lab specializes in international macroeconomics and financial economics, with a focus on the transmission mechanisms of uncertainty, monetary policy, and commodity price shocks across countries and industries. The lab investigates how macroeconomic and financial shocks—particularly those related to policy uncertainty, oil price fluctuations, and global risk sentiment—affect international capital flows, inflation, and productivity growth. Using rich, high-frequency, and disaggregated data from international institutions, the lab employs advanced econometric techniques to identify causal effects and disentangle push versus pull factors in global capital movements.
Professor Dong-Seon Kang's research lab specializes in cardiovascular epidemiology and health disparities, with a focus on racial and sex differences in stroke and bleeding outcomes among patients with atrial fibrillation. The lab employs large-scale population-based databases to investigate the impact of lifestyle, anatomy, and demographic factors on cardiovascular risk and treatment outcomes. Key research directions include optimizing rhythm control strategies, understanding bleeding propensity across ethnic groups, and promoting tailored prevention and management approaches for aging populations with cardiovascular disease.
Professor Anzar Khan's research lab specializes in the development of stimuli-responsive and functional polymers through precision synthetic methodologies, with a focus on click chemistry—particularly the thiol-epoxy reaction—for efficient polymer synthesis and post-polymerization modification. The lab explores dynamic molecular systems, including photochromic foldamers that undergo light-induced conformational switching, enabling applications in smart materials and responsive delivery systems. A key research direction involves the design of multifunctional polymers and crosslinked networks with tailored reactivity and properties through selective functionalization of epoxide and thiol groups. The lab also investigates surface modification techniques for advanced materials and biomedical applications.
Professor Yong Ju Yun's research lab specializes in the development of flexible, conductive, and durable 2D nanomaterial-based wearable electronics, with a focus on reduced graphene oxide (RGO) and hybrid nanomaterials for textile-integrated devices. The lab pioneers low-cost, scalable, solution-based fabrication methods for high-performance e-textiles, gas sensors, epidermal bioelectrodes, and electrochromic devices, emphasizing mechanical robustness, washability, and biocompatibility. Key research directions include the functionalization of textiles and polymers with conductive nanomaterials for next-generation wearable and biomedical applications.
Professor Changhwan Shin's research lab specializes in advanced semiconductor devices and nanoscale materials for next-generation electronics and energy applications. The lab focuses on exploring novel transistor architectures—such as trigate, FD-SOI, and negative capacitance FETs—to overcome scaling limitations and improve performance, variability, and energy efficiency. It also investigates two-dimensional materials and ferroelectric oxides for applications in high-performance logic, memory, and photodetectors. A key theme across the research is the integration of atomic-scale simulation, advanced fabrication, and experimental characterization to enable breakthroughs in device physics and materials engineering.
Professor Sung-Joon Lee's research lab focuses on molecular mechanisms underlying metabolic diseases, aging, and lipid homeostasis, with a particular emphasis on nuclear receptors such as PPAR-α and PPAR-γ as therapeutic targets. The lab investigates natural compounds—including resveratrol, ursolic acid, lemon balm essential oil, and azelaic acid—that modulate energy metabolism, insulin sensitivity, and lipolysis to combat obesity, type 2 diabetes, and cardiovascular diseases. Using integrative approaches combining molecular biology, transcriptomics, and in vivo models, the lab explores how phytochemicals and olfactory receptors in peripheral tissues regulate systemic metabolism. A key research direction involves identifying novel ligands and signaling pathways that rewire lipid metabolism to improve metabolic health.
Professor Kyeongman Jeon's research lab specializes in critical care and thoracic surgery, focusing on the management of severe pulmonary complications following lung surgery and the treatment of difficult-to-treat respiratory infections. The lab investigates risk factors and outcomes related to acute lung injury/acute respiratory distress syndrome (ALI/ARDS) after pneumonectomy, as well as optimizing antibiotic therapy for challenging pathogens like *Mycobacterium abscessus*. Their work emphasizes improving patient outcomes through early detection, risk stratification, and evidence-based treatment strategies in postoperative and infectious lung diseases.
Professor Sung Yeon Hwang's research lab specializes in critical care medicine, with a primary focus on improving outcomes in sepsis and acute respiratory failure. The lab investigates prognostic biomarkers such as the lactate-to-albumin ratio and hemodynamic phenotypes like cryptic shock to refine early risk stratification. It also explores novel therapeutic interventions, including early vitamin C and thiamine supplementation, and evaluates airway management techniques during cardiopulmonary resuscitation. The lab integrates clinical data from emergency departments and intensive care units to address time-sensitive interventions in critical illness.
Professor Sung Hyun Lee's research lab specializes in clinical and translational pain medicine, with a focus on developing innovative, evidence-based interventions for chronic and neuropathic pain conditions. The lab integrates advanced technologies such as machine learning to predict postoperative outcomes like postoperative nausea and vomiting (PONV) and chronic low back pain, enhancing personalized patient care. Key research directions include evaluating novel therapeutic approaches such as PDRN prolotherapy and ultrasound-guided nerve blocks (e.g., ESPB) for musculoskeletal and neuropathic pain. The lab also investigates the pathophysiology of headache disorders, particularly those related to intranasal anatomical factors, aiming to improve diagnostic accuracy and treatment strategies.
Professor Shahroz Tariq's research lab specializes in cybersecurity and artificial intelligence, with a focus on detecting deepfakes, adversarial attacks, and anomalies in critical systems. The lab develops advanced machine learning and deep learning techniques—particularly neural networks, transfer learning, and ensemble methods—for identifying fake media, securing in-vehicle networks (CAN bus), and ensuring system integrity in space and metaverse environments. A key emphasis is on building generalizable, data-efficient detection systems that work across diverse attack types and real-world scenarios.
Professor Sangwon Park's research lab specializes in consumer behavior and digital technology in the tourism and hospitality industries, with a strong focus on mobile technology, trust in peer-to-peer platforms, and the role of narratives in destination marketing. The lab investigates how perceived risk, information search behavior, and psychological factors such as anxiety and self-efficacy influence digital travel booking decisions. It also explores the impact of storytelling and personalization in shaping travel intentions and spending patterns. The research integrates advanced quantitative methods such as structural equation modeling and quantile regression to uncover dynamic and distributional effects in travel behavior.
伊賀梨教授の研究室は、主に日本における慢性疾患の治療・管理に関する経済的・社会的影響を評価する健康経済学を柱としています。高血圧、2型糖尿病、認知症、HCV感染症など、幅広い疾患領域において、デジタルセラピューティクスや新薬のコストエフェクテイビティを定量的に分析しています。特に、医療技術の導入にあたっての意思決定を支援するためのWTP(支払い意思額)やQALY(質的調整生存年)を用いた健康技術評価(HTA)の実践的応用に注力しています。
Matija Milosevic教授の研究室では、脊髄刺激を用いた神経機能回復のメカニズム解明と臨床応用を主眼としています。特に頸椎部への経皮的脊髄刺激(tSCS)が上肢の運動機能回復にどのように作用するかを、神経生理学的・計算モデル的手法を用いて解明しています。また、機能的電気刺激(FES)が脳や脊髄に及ぼす長期的神経可塑性の変化についても、TBIや脊髄損傷後の神経回復に焦点を当てた研究を進めています。
趙陽教授の研究室は、超短パルスレーザー技術とその応用を核として、フェムト秒・ペタワットクラスの超高強度レーザーの創出と制御を研究しています。特に、波面歪みやスパティオテンポラルカップリングが引き起こすパルス歪みの解析や、超帯域幅のパラメトリック増幅、および光パルスの前縁形状を制御することで群速度をプログラム可能にする新規な光パケット生成技術に注力しています。これらの研究は、次世代のエクサワットクラスレーザーの実現に向けた基盤技術の確立を目的としています。
ドナート・ジオヴァネッリ教授の研究室は、極限環境に生息する微生物、特に深海熱水噴出孔や浅海熱水系に生息する好熱・嫌気性微生物の代謝機構と進化を解明することを主眼としています。特に、地球の初期環境に類似した環境に適応した微生物のゲノム解析を通じて、生命の起源や金属イオンが果たす赤酸化反応の役割を解明しています。また、炭素を含む鉱物の進化と生命の関係についても、データ駆動型のアプローチで研究を展開しています。
Kanamori教授の研究室は、医療施設における病原体の環境的要因や感染経路を解明することを目的としています。特に、水や建材、医療機器、手術用ガーゼなど、医療環境に存在する物質が感染症の原因となるメカニズムを分子生物学的手法を用いて解明しています。近年では、全ゲノム解析を活用した多剤耐性病原体の伝播ネットワークの解明にも注力しています。
Otsuka教授の研究室では、宇宙機器や次世代航空機に応用可能な大変形・高柔性構造物の高精度なマルチボディダイナミクス解析を目的として、絶対座標座標法(ANCF)を基盤とする非線形有限要素法の理論的・応用的展開を進めています。特に、太陽パンルや展開翼構造の展開挙動シミュレーション、高スパンチャージ比のフレキシブルな翼の空力弾性解析に注力しており、計算効率と数値的安定性の両立を実現する新規要素法の開発が中心です。
大西仁教授の研究室は、特に発展途上国を対象とした感染症の疫学的・分子疫学的解析を柱としています。インフルエンザやエントロウイルス、RSV、ヒトルーブウイルスCなどの呼吸器ウイルスの病原性・流行パターンを、現地の臨床・流行データと分子生物学的手法を融合して解明しています。特に、医療インfraの限られた地域におけるウイルスの実態把握と、感染制御に資する疫学的知見の提供を目的としています。
本田謙也教授の研究室は、腸内微生物と宿主の免疫系の相互作用に焦点を当てており、特に口腔由来細菌が腸管に異所的定着することで引き起こされる慢性炎症や自己免疫疾患の発症機構を、無菌動物を用いたバイオテクノロジー的手法を駆使して解明しています。特に、腸内に定着する『クラスルーブス属』細菌がTヘルパー1細胞を強力に誘導し、遺伝的素因を持つ宿主で重度の腸管炎症を引き起こすメカニズムを解明しています。また、Toll様受容体とインターフェロン経路のクロストークが免疫応答をどのように調節しているのかも、分子細胞生物学的手法を用いて解明しています。
Michisuke Yuzaki教授の研究室は、脳内のシナプス形成と機能維持を規定するシナプスオーガナイザーの分子機構を解明することを主眼としています。特にCbln1-GluD2-Neurexinシグナル伝達系の構造的・機能的メカニズムを解明し、神経回路の形成と可塑性の分子基盤を解明しています。また、合成シナプスオーガナイザーの開発を通じて、神経疾患におけるシナプス機能の回復にも貢献しています。