Loïc Guezou is a Researcher at the Paris-Saclay University's Mechanics Laboratory, focusing on interdisciplinary research spanning biomedical engineering and geopolitical studies. His work integrates computational mechanics with additive manufacturing for patient-specific anatomy modeling, while also addressing emerging cyber-geopolitical challenges. Key Research Areas: Biomedical Engineering: High-fidelity numerical models for 3D printing Computational Mechanics: Application to medical device development Geopolitical Studies: Cybersecurity and digital policy implications Recent conference communications highlight his collaborative approach, working with experts like Andrea Barbarulo, Bing Tie (biomedical projects), and Frédérick Douzet, Julien Nocetti (cyber-geopolitical research). Although no formal awards or student advisement details are currently documented in the available records, his publications reflect a dual focus on technological innovation and socio-political analysis.
Laurent Tapie is a Senior Lecturer at Paris Descartes University with a focus on Biomedical Engineering, Mechanical Engineering, and CAD/CAM . As Deputy Director of the URB2i research unit and manager of the PlatiNum platform , he coordinates the 3d4care.org consortium . His academic background includes a Doctorate in Mechanical Engineering from École Normale Supérieure de Cachan and authorization to direct research (HDR) from Université Paris 13. Research Interests: Mechanical Engineering, Biomedical Engineering, Medical Devices, CAD/CAM, Shaping of Biomaterials Theses Supervised: 3D evaluation of dento-prosthetic joints, impact of CAD/CAM on dental prosthesis integrity, and metrological evaluations of prostheses. Publications: His work spans dental CAD/CAM systems, surface integrity of prostheses, additive manufacturing, and 3D printing applications during the COVID-19 pandemic . Recent articles focus on data dispersion in CAD/CAM chains, tool-material influence on roughness, and numerical workflow standardization . Scientific Award: Prix du comité scientifique de la session recherche (2019). Projects: Currently leads initiatives like ProGéoMéca (Labex LaSIPS), Bio-Dents (CNRS Biomimicry), and additive process development for multi-material dental aligners .
Dr. Rajendra Kurapati is an Assistant Professor at the School of Chemistry , Indian Institute of Science Education and Research Thiruvananthapuram (IISER TVM) . His research focuses on biodegradable 2D materials for biomedical applications, addressing nanomaterial biopersistence issues through enzymatic degradation studies. He leads the Biomaterials Lab and collaborates with institutions across France, Ireland, Portugal, and the UK. Born in Andhra Pradesh, India B.Sc. & M.Sc. in Chemistry (Acharya Nagarjuna University, University of Hyderabad) Ph.D. in Materials Engineering (Indian Institute of Science, 2014) Postdoc: CNRS Strasbourg (2014-2017), CÚRAM Galway (2018-2020) His research explores 2D material-biopolymer hybrids for drug/gene delivery , nanotheranostics , and antimicrobial coatings . Key article trends include: Graphene/MoS2 biodegradation by human enzymes Antibacterial coatings for medical implants Microplastics' environmental impact Lipid nanoparticles for mRNA vaccines ZnO quantum dots for bioimaging Polymer multilayer drug delivery systems Major scientific awards : DBT Ramalingaswami Fellowship (INR 40 lakhs over 5 years) SERB Start-up Grant (32 lakhs over 2 years) SERB Special Grant (45 lakhs over 3 years) DBT Mission Innovation Grant (18 lakhs over 6 months) His academic contributions span 15+ high-impact publications in journals like Advanced Materials , Nanoscale , and Chemical Communications , covering topics from graphene biodegradation to antimicrobial coatings and bioimaging . 10+ alumni students have graduated from his lab, with placements at institutions including University of Strasbourg and Dublin City University.
Stephane Cotin is a Research Director at Inria and leader of the MIMESIS team, specializing in real-time physics-based medical simulations. His work focuses on surgical training, planning, and image-guided therapy, with over 200 scientific articles and the development of the open-source SOFA framework. He co-founded InSimo, Twinical, and EVE, and previously held roles at Harvard Medical School and Mitsubishi Electric Research Lab. Cotin’s research bridges imaging, robotics, and medicine to improve healthcare outcomes, emphasizing patient-specific biophysical modeling and real-time computation. His awards include the Academy of Sciences Award (2018) and Dirk Bartz Medical Prize (2015). He has advised numerous PhD students and led projects like MediTwin and PREMYOM, advancing digital twin technologies for precision medicine.
Maxime Lanoy serves as an Associate Professor at Le Mans University, France, conducting research at the Institute of Acoustics (LAUM), a joint research unit of Le Mans University and the CNRS. He is a member of the Materials team, which focuses on the acoustics and mechanics of porous materials, contributing to the university's strategic research in physical sciences and engineering. His primary research interests encompass the acoustics of heterogeneous media and multiple scattering phenomena, the design and characterization of acoustic and elastic metamaterials, and the dynamics of flexible structures such as soft strips and elastomers. He investigates wave propagation in unstable structures and complex media, with applications in sound control, imaging, and particle manipulation. This work sits at the intersection of acoustics, materials science, and mechanical engineering, aiming to develop innovative solutions for wave-based technologies. Analysis of Lanoy's recent publications (2018-2025) reveals a consistent emphasis on metamaterials, particularly those utilizing bubble arrays and soft polymers. His research trajectory shows progression from fundamental studies of wave propagation in structured media to applied work on devices for filtering, lensing, and absorption. Key themes include the control of elastic waves in soft materials, the exploitation of space-time interfaces, and the development of broadband acoustic absorbers. These contributions advance the field of wave physics and have potential applications in medical ultrasound, underwater acoustics, and precision manufacturing. No scientific awards, fellowships, or medals were mentioned in the provided text sources. The available information does not specify any graduate students advised by Dr. Lanoy or details of research grants he has secured. His academic role as Associate Professor implies teaching and mentoring responsibilities, but specific advising activities are not documented in the given materials. Lanoy is embedded in the Materials team at LAUM, which operates within a well-equipped laboratory environment featuring advanced facilities for acoustic and ultrasonic measurements, optical methods, and material fabrication. The LAUM institute fosters collaboration across several transversal axes, including metamaterials and nonlinear acoustics, providing a rich interdisciplinary context for his research on wave phenomena in complex media.
Eloïse Gennet is a Junior Professor (Assistant Professor) at Aix-Marseille University, where she is affiliated with the Faculty of Law and Political Science and the International, Comparative and European Law (DICE) research unit. Her work focuses on European Union law, particularly in the areas of health law, bioethics, and biomedical regulations, and she is actively involved in several major research projects including CEJM - Europe to the South, the European Association of Health Law, GIS Euro-Lab, and I-Biolex. Dr. Gennet's research interests span European Union Law, Health Law, Bioethics, Clinical Trials Regulation, Orphan Medicines, the One Health Approach, Vulnerability in Biomedical Research, and Pharmaceutical Strategy. Her work examines the intersection of law, health, and ethics with particular attention to how EU law addresses complex health challenges, especially in the context of pandemics, biomedical innovations, and the protection of vulnerable populations in clinical research. She has published extensively on the legal frameworks governing biomedical innovations in both binding and non-binding EU law. Her recent publications demonstrate a strong focus on the One Health approach which integrates human, animal, and environmental health perspectives. Her research analyzes EU pandemic law as a laboratory for One Health, the legal concept of biomedical innovations in EU law, and the Council of Europe's role in fostering equitable access to healthcare during pandemics. Dr. Gennet's work bridges theoretical legal frameworks with practical regulatory challenges in the health sector. Dr. Gennet is an active contributor to the CERIC research team and works on research axis 5. She regularly presents her findings at international conferences including the Annual Conference of the European Association of Health Law, the European Society for Gene & Cell Therapy Congress, and the EU Health Policy Platform meetings. Her interdisciplinary approach brings together legal scholars, medical researchers, and public health experts to address complex health governance issues.
Bernard MARTEL is a Professor at the University of Lille's Faculty of Science and Technology, Department of Chemistry, and leads research in the Polymer Systems Engineering team at the Materials and Transformations Unit (CNRS UMR 8207). His work focuses on developing functional polymer systems for biomedical applications, including drug delivery, tissue engineering, and antibacterial materials. Research interests span: Design of therapeutic biomaterials (hydrogels, nanofibers) Functionalized medical implants and textiles Antimicrobial/antiviral material engineering 3D-printed medical devices His recent publications (2019-2024) demonstrate strong emphasis on: Advanced characterization of biomaterial interactions Functionalization techniques for controlled drug release Solutions for diabetic wound care and orthopedic reconstruction Eco-friendly materials for environmental remediation Patent innovations include: 3D-printed endoprostheses (WO2024213841) Antiadhesive hydrogel compositions (FR3080539) Cyclodextrin-modified biomedical textiles Significant PhD supervision includes 23+ students, with current research on: Functionalized visceral implants (Camille DUCHEMIN) Antithrombotic stent design (Kim VANDEN BROECK)
Fabian Bernhard is a Full Professor of Management and Psychology at EDHEC Business School, with campuses in Paris, Lille, Nice, and London. He holds dual PhDs in business studies and psychology, both earned summa cum laude, and serves as a research fellow for family business at the University of Mannheim and for psychology at the University of Frankfurt. His work uniquely bridges emotional dynamics in organizational contexts with family business succession challenges. His academic credentials include: PhD in Business Studies (Dr. rer. pol, summa cum laude) PhD in Psychology (Dr. rer. nat, summa cum laude) Prof. Bernhard's research focuses on emotional dynamics in businesses, preparation of next-generation family business leaders, and psychological attachment to family firms. Drawing from his upbringing in a multigenerational entrepreneurial family, he investigates how emotions like pride, guilt, and moral identity influence succession planning, gender equality initiatives, and organizational decision-making. His work frequently examines the tension between emotional authenticity and professional expectations in family enterprises. Analysis of his recent publications reveals a strong interdisciplinary trend merging psychology, business ethics, and healthcare innovation. His research increasingly explores emotional drivers in digital transformation, sustainable technology adoption, and gender dynamics, often connecting micro-level psychological processes to macro-level organizational outcomes. This cross-pollination between family business studies and emotion research represents a distinctive scholarly signature. Key professional recognitions include: Best Dissertation Honorable Mention from the Family Firm Institute at Harvard University Prof. Bernhard actively shapes his field through editorial leadership on the Family Business Review and Journal of Family Business Strategy boards since 2014, and serves on the Board of Directors of the Family Firm Institute (FFI) in Boston. His pre-academic career in mergers and acquisitions at a New York financial advisory firm provides practical grounding for his theoretical work, particularly in understanding emotional dimensions of high-stakes business transitions.
National School of Arts and Textile IndustriesFrance
Vladan Koncar is a Full Professor and Research Supervisor at École Nationale Supérieure des Arts et Industries Textiles (ENSAIT), where he directs the GEMTEX laboratory and international relations. His research spans smart textiles, e-textiles, wearable sensors, and energy-harvesting systems, with applications in healthcare, military, and environmental monitoring. Research Interests: Koncar's work focuses on three primary themes: (1) Smart textile design for medical/safety applications; (2) Energy harvesting via textile NFC antennas and metamaterials; (3) Standardization of e-textile reliability and testing. His innovations include textile-based ECG monitors, airflow sensors, and photodynamic therapy fabrics. Projects & Grants: He coordinates major EU initiatives (e.g., ETEXWeld, MAPICC 3D) and industrial collaborations with Petit Bateau and @Health. Key projects involve developing instrumented textiles for healthcare, dynamic lighting systems, and filtration monitoring. Honors: Ordre des Palmes Académiques, Chevalier (French Prime Minister Award, 2019) IPC Golden Gnome & Rising Star Awards (2021-2022) Doctor Honoris Causa (Gheorghe Asachi University, 2010) Annual PEDR Award for PhD supervision since 1995 Labs & Teams: Leads the Human Centered Design Group at GEMTEX, specializing in textile-electronics integration. The lab focuses on structural health monitoring, smart composites, and washable e-textile systems.
School for Advanced Studies in Public HealthFrance
Bertrand VIGNERON is a Professor at the French School of Public Health (EHESP), teaching in the Institute of Management. His career spans biomedical engineering leadership roles at CH Elbeuf (1999-2015) and contractual engineering at CHU Amiens (1997-1999). He specializes in medical logistics, information systems, and project management, with a focus on Agile methodologies. Education: General Engineering Diploma (ENIB, 1996), Specialized Master's in Biomedical Equipment (UTC/EHESP, 1997), EEA License (University of Lille, 1993) Research interests include hospital technical platforms (operating rooms, imaging), healthcare information systems, medical supply chain optimization, and health safety protocols. He has developed international training programs in medical logistics across Ivory Coast, Congo, Algeria, Lebanon, Mongolia, and Vietnam. Key publications cover topics such as business intelligence in healthcare, endoscope sterilization, and radiology equipment digitalization. He has also contributed to national biomedical engineering guidelines and delivered oral presentations at major French medical engineering conferences.
Anne-Virginie SALSAC is a leading researcher in bioengineering and biomechanics at the University of Technology of Compiègne (UTC), France. She heads the Biomechanics and Bioengineering Laboratory (BMBI, UMR CNRS 7338) and has held an ERC Consolidator Grant (2017) from the European Research Council for her work on multiphysics modeling of microcapsules. Her research focuses on numerical simulation, microfluidics, and bioartificial capsule design for biomedical applications, including hemodynamics in vascular systems and minimally invasive therapies. She has pioneered techniques for microcapsule characterization and sorting, with applications in drug delivery and tissue engineering. SALSAC has collaborated internationally with institutions like Sorbonne Université, University College London, and Queen Mary University of London. Education: Advanced training in bioengineering, with postdoctoral experience in fluid mechanics and biomedical systems. Teaching: Leads graduate courses in mechanical properties of biological materials, microfluidics, and vascular flow modeling at UTC. Previously taught at UC San Diego and University College London. Awards: ERC Consolidator Grant (2017), European scholarship for excellence (2018). Her research integrates experimental and computational methods, emphasizing real-time prediction of capsule deformation and fluid-structure interactions. Key projects include the ERC-funded MultiphysMicroCaps initiative, which explores multiscale modeling of microcapsules under physiological flows. She has developed novel microfluidic tools for capsule sorting and mechanical property analysis, published in top journals like Physical Review E and Journal of Fluids and Structures . SALSAC advocates for scientific mediation, organizing international symposia such as the DynaCaps conference, and has engaged in public outreach via television and media features. Her work bridges fundamental research and clinical applications, with patents on microcapsule fabrication and embolization techniques.
Ludovic Saint-Bauzel is a lecturer at Sorbonne University and head of the IRIS team at the Institute of Intelligent Systems and Robotics (ISIR). His work focuses on improving physical human-robot interaction for individuals with autonomy loss through disability or aging. Specializes in computational models of disabilities Develops user intent detection through sensor fusion Active in IFRH and Fedrha federations IEEE and True Life Lab member Research interests His research centers on Human-robot physical interaction with applications in Elderly care , Smart-walker development, and Walking exoskeleton systems. Key methodologies include: Sensor fusion (depth cameras, force sensors, IMUs) Adaptive robot control systems Pathological movement modeling Motor intent prediction algorithms Article trends show consistent focus on haptic communication (6/15), assistive robotics (9/15), and sensorimotor interaction (11/15) across 2013-2022 publications. Laboratory involvement : Leads the IRIS team at ISIR, part of Fedrha (Federation for Research on Disability and Autonomy) with 50+ research teams.
Iza Marfisi is a Professor at the University of Le Mans where she became a University Professor in 2024 and was appointed Head of the IEIAH (Computer Environments for Human Learning) team in 2025. She works within the Claude Chappe Institute of Computer Science, focusing on developing educational technologies that empower teachers to create their own digital learning tools. Her research bridges computer science and educational theory to enhance teaching practices through accessible technology solutions, with particular emphasis on making advanced tools usable for non-technical educators. Marfisi's research spans Educational Technology, Serious Games for Education, Mobile Learning, and Extended Reality (XR), with a consistent focus on teacher-centered design. She develops "no-code" authoring tools enabling educators to create custom digital learning experiences deployable across various hardware platforms. Her work specifically targets situated learning with mobile devices, human-computer interactions for learning, and educational applications of mixed and extended reality. This approach democratizes access to advanced educational technologies by removing technical barriers for teachers. Analysis of her recent publications reveals a clear evolution from foundational mobile learning frameworks toward increasingly sophisticated integration of mixed reality and artificial intelligence in educational contexts. Her 2024-2025 work shows particular emphasis on generative AI for educational activity design, immersive pharmacology learning, and collaborative frameworks that connect multiple learning technologies. The publications consistently emphasize practical teacher needs, with many studies conducted in authentic educational settings rather than controlled laboratory environments. Marfisi actively supervises doctoral research across multiple dimensions of educational technology. Her current advisees explore artificial intelligence for mixed reality activity creation, mixed reality for professional training, free software approaches to serious games, and innovative interaction techniques for collaborative learning. Previous students have investigated mixed reality for fraction learning, educational game indexing systems, and mobile educational game design models. Her supervision portfolio demonstrates both depth in specific technical areas and breadth across the educational technology landscape. As Head of the IEIAH team at LIUM since 2025, Marfisi leads a research group focused on computer environments for human learning. She also serves on the Board of Directors for both the Serious Game Society and the IKIGAI association (Games for citizens), and was elected Deputy Director of Research at the Claude Chappe Institute of Computer Science since 2018. Her leadership extends to communications management for the IEIAH team and participation in the LIUM Laboratory Council (2022-2024), demonstrating significant institutional impact beyond her direct research contributions.
Emilie Avignon-Meseldzija is a Researcher at the Electrical and Electronic Engineering of Paris , affiliated with the School of Engineering at the University of Paris. Her work focuses on advanced analog and RF circuit design, with significant contributions to filter design, metamaterials, biomedical electronics, and radar systems. She has published over 24 peer-reviewed articles between 2010 and 2025, emphasizing innovations in group delay filters, non-Foster components, and FMCW radar systems. In education, she co-developed a new microelectronics teaching method implemented at Supélec in 2012, focusing on practical circuit design and integrated systems education. Her research combines theoretical rigor with practical applications, such as low-power biomedical stimulators and high-performance radar front-ends. Key areas of expertise include: Passive and active filter design Non-Foster metamaterial components Biomedical signal conditioning circuits RF frequency synthesizers Integrated circuit layout optimization Recent work (2024–2025) emphasizes dynamically reconfigurable systems, tunable inductors, and programmable biomedical stimulation circuits. Her contributions bridge foundational RF engineering with emerging applications in healthcare and radar technology.
Maria-José Azar-Baud is an Associate Professor of Law at the Jean Monnet Faculty of Law, University of Paris-Saclay, specializing in consumer protection and collective redress mechanisms. She holds an HDR (Habilitation à Diriger des Recherches) and serves as Deputy Director of the Institute for Law, Ethics and Heritage (IDEP) since December 2021. Additionally, she co-directs the Paris-Saclay Legal Clinic and founded the Observatory of Group Actions and Other Collective Actions in 2017, establishing herself as a leading authority in consumer class actions across multiple jurisdictions. Her academic trajectory uniquely bridges French and Argentine legal systems, reflecting her expertise in comparative law methodology. She has directed numerous international research projects, supervised master's students through practical legal clinics, and participated in doctoral thesis committees. Her scholarly work demonstrates consistent evolution from foundational analyses of French class actions to contemporary examinations of digital consumer protection, environmental litigation, and pandemic-related legal challenges. Professor Azar-Baud's research portfolio reveals strategic progression from theoretical frameworks to practical implementation issues. Her recent publications focus on third-party funding of collective actions, data breach litigation, and the implementation challenges of the EU Representative Actions Directive. This trajectory positions her at the intersection of consumer law, competition policy, and emerging digital legal challenges, with particular attention to cross-border enforcement mechanisms. Prix de la Cour Suprême de Justice de la Nation et de l'Association argentine de professeurs du droit de processuel (2008) Her advisory roles demonstrate significant impact beyond academia. Professor Azar-Baud has provided expert testimony to the French National Assembly regarding group action legislation and consulted with the European Parliament on the Representative Actions Directive. She has directed master classes on Law, Economics and Behavior of Torts and organized numerous international conferences fostering collaboration between scholars from France, Argentina, Japan, and other European nations. Through the Observatory of Group Actions, she maintains a comprehensive resource for tracking collective redress developments across jurisdictions. Her quarterly contributions to 'Mass Claims: An International Journal with a European Focus' establish her as a key commentator on French legal developments in collective redress mechanisms.