Dr. Justyna Sienkiewicz-Gromiuk holds the position of Adjunct Professor at the Faculty of Chemistry , Maria Curie-Skłodowska University (UMCS), affiliated with the Department of General, Coordination and Crystallography . Her research focuses on crystallography , coordination chemistry , and materials science , with expertise in supramolecular frameworks, thermal analysis, and DFT modeling. Her scientific work spans: Synthesis and characterization of organic-inorganic hybrid materials Intermolecular interactions in molecular adducts Coordination polymers with s-, d-, and f-block metals Theoretical modeling of molecular systems Recent publications highlight her contributions to multi-component crystalline phases , lanthanide-based polymers , and bioactive metal complexes . Collaborative efforts are evident through multi-center publications. She is contactable at justyna.sienkiewicz-gromiuk@mail.umcs.pl .
Pierre Lafaye is the Head of the Antibody Engineering Platform at the Institut Pasteur, a leading institution in biological and medical research. His work is situated within the Technology Department, where he leads a core facility focused on the development and application of VHH (nanobody) technologies. The platform supports a wide range of academic and translational research projects, leveraging the unique properties of nanobodies such as small size, high stability, tissue penetration, and blood-brain barrier crossing ability. Research Interests: Dr. Lafaye’s research spans multiple domains, including cancer immunotherapy (e.g., targeting ILT4 as an immune checkpoint), neurodegenerative diseases (e.g., imaging Alzheimer’s plaques and tangles), infectious diseases (e.g., SARS-CoV-2 diagnostics and therapeutics), and antimicrobial resistance (e.g., targeting β-lactamases). His expertise lies in phage display, protein engineering, and in vivo molecular imaging. He has pioneered the use of dimeric VHHs for sensitive immunoassays and targeted diagnostics. Recent Publication Trends: His recent publications (2021–2024) reflect a strong emphasis on structural biology (using cryo-EM), viral entry mechanisms (especially coronaviruses), and the therapeutic and diagnostic application of nanobodies. Collaborative, high-impact studies in journals like Nature , Cell , and Nature Communications highlight his role in cutting-edge interdisciplinary research. Scientific Awards: While no specific awards are listed in the provided text, his leadership in IBiSA-certified core facilities and participation in major networks like EuroMabNet, Core For Life (CFL), and CTLS reflect recognition of his technical and scientific contributions. Advising and Grants: Dr. Lafaye has supervised multiple PhD students and postdoctoral researchers, indicating an active mentoring role. He leads several funded projects, including the ongoing CORONABODIES and Advances in Cancer Immunotherapy projects, as well as completed initiatives like ChagasDiag and VenoMATIcs. These projects involve collaborations across international Pasteur Institutes and academic partners. Labs and Teams: As head of the Antibody Engineering Platform, he oversees a multidisciplinary team comprising research engineers, technicians, postdocs, and PhD students. The facility is part of broader transversal initiatives at the Institut Pasteur, including those in brain connectivity, cancer, and emerging infectious diseases.
Linda Olafsen is an Associate Professor in the Department of Electrical & Computer Engineering at Baylor University’s School of Engineering and Computer Science. She holds a PhD in Physics from Duke University and has held academic positions at the University of Kansas and Baylor University since 1999. Her research spans photonics, semiconductor optoelectronics, and biomedical device development. PhD, Physics, Duke University (1997) MA, Physics, Duke University (1994) AB, Physics, Princeton University (1991) Her research focuses on mid-infrared semiconductor lasers, optoelectronic devices, graphene-semiconductor integration, and biomedical applications such as endovascular navigation and glucose monitoring. She leads the Semiconductor Optoelectronics Laboratory, where her team develops advanced mid-IR lasers, characterizes 2D/3D material interfaces, and engineers sensors for medical use. Her work bridges fundamental physics with practical engineering solutions in healthcare and defense. The recent publications show a strong trend toward mid-infrared optoelectronics , particularly interband cascade lasers , graphene-based contacts , and biomedical sensing . Her team integrates optical, thermal, and electrical characterization to improve laser efficiency and device performance. Applications span infrared countermeasures, chemical sensing, and endovascular robotics. Scientific Awards and Professional Leadership: Chair, Congressional Visit Day Subcommittee, MRS (2012–2016) Chair, Policy Outreach Working Group, MRS Government Affairs Committee Book Review Board Chair, MRS Bulletin Editorial Board Member, MRS Bulletin Lifetime Member, American Physical Society, OSA, and SPIE Senior Member, IEEE and IEEE Photonics Society Linda Olafsen actively mentors undergraduate and graduate students, involving them in research on laser development, material characterization, and biomedical device design. She has secured funding for projects in mid-IR lasers and sensing technologies. Her lab offers opportunities in device fabrication, graphene integration, beam profiling, and LabVIEW programming. She leads the Semiconductor Optoelectronics Laboratory , which focuses on: Mid-infrared semiconductor laser development Graphene-semiconductor optoelectronic devices Endovascular navigation using shape-memory alloys In vivo infrared and ultrasound sensing Beam and thermal profiling Device fabrication and characterization
Lionel Pichon is a leading researcher at the Laboratory of Electrical and Electronic Engineering of the University of Paris. His primary affiliations include the Department of Electrical and Electronic Engineering of Paris, where he specializes in advanced electromagnetic research. His work focuses on Electromagnetics , Electromagnetic Compatibility (EMC) , and Wireless Power Transfer , with particular emphasis on composite materials, biomedical applications, and automotive systems. Expertise in numerical methods (FDTD, FIT, DGTD) for electromagnetic simulations Pioneer in shielding effectiveness analysis for composite materials Developer of AI-driven approaches for dielectric property characterization Over 70 publications since 2017 highlight his contributions to fields like inductive power transfer systems, medical device EMC, and GPR imaging techniques. Collaborates extensively with institutions globally, including research on antenna design for implantable medical devices and electromagnetic compatibility in healthcare facilities. Current research trends emphasize machine learning integration with traditional electromagnetic analysis to optimize system performance and safety standards.
Dr. Jane Wood is a Lecturer in Fashion Technology at the University of Manchester, specializing in biomaterials, industrial sustainability, and smart garment systems. She holds a PhD in Applied Microbiology, an MSc in Apparel Product Development, and a BSc in Textile Chemistry from the University of Leeds. Her interdisciplinary research addresses environmental challenges in the global textiles sector, with a focus on microbial cellulose production, color pollution remediation, and sustainable design. She is co-lead of the Sustainable Textiles and Apparel Research (STAR) group, fostering collaborative research among PhD and master’s students. Dr. Wood’s academic leadership includes curriculum development, such as the BSc (Hons) Fashion Product Innovation program, and industry partnerships with organizations like the British Textile Machinery Association. She is a STEM Ambassador, advocating for STEM inclusion and science communication through media appearances and public engagement. Her accolades include the Senior Fellowship of the Higher Education Academy (SFHEA), Fellowships from the Textile Institute and Society of Dyers and Colourists, and the gold award for the Textiles 2030 initiative. She actively contributes to policy panels, editorial boards, and research assessments like Horizon Europe. Key Roles: Academic Leadership, Curriculum Design, Public Engagement Research Groups: STAR Group, Textiles and Life Conference Series Industry Collaborations: Ford, Volkswagen, Disney, Marks & Spencer Her research articles span topics like microbial cellulose, smart textiles, and sustainable practices, with a focus on bridging academic and industrial needs. She mentors early-career researchers and chairs international academic events, emphasizing interdisciplinary innovation and environmental stewardship. Awards & Fellowships: Textiles 2030 Gold Award (2021) Senior Fellowship of HEA (2021) Fellow of Textile Institute (2017) Grants & Projects: Innovate UK-KTP Project on PFAS Filtration Smart Sensor Integration in Sportswear (KTP Project) Labs & Teams: Co-leads STAR Group, collaborates with industry partners on textile innovation.
Enric Rodríguez Carbonell is a faculty member at the Department of Computer Sciences within the Faculty of Computer Science at Universitat Politècnica de Catalunya (UPC). He is a key member of the LOGPROG - Lògica i Programació research group, focusing on formal methods, automated reasoning, and combinatorial optimization. Research Interests: His work centers on satisfiability (SAT), satisfiability modulo theories (SMT), and their applications in program verification, constraint solving, and optimization. He investigates techniques such as conflict-driven learning, invariant generation, and Max-SMT for proving termination and safety. His research bridges theoretical foundations with practical applications in software analysis and industrial problem-solving. Publication Trends: His recent publications (2020–2024) show a sustained focus on enhancing SAT and SMT solvers, particularly in pseudo-Boolean reasoning, integer linear programming, and multi-conflict analysis. Earlier works established contributions in non-linear arithmetic, termination proofs, and efficient encodings for cardinality constraints, reflecting a long-term commitment to foundational and applied aspects of automated reasoning. Scientific Awards: Best student paper award at SAT 2024 Advising and Grants: Rodríguez Carbonell has contributed to multiple competitive R+D+i projects under Spain’s State Research Plans, indicating active grant involvement. He has co-authored doctoral theses and educational initiatives like Jutge.org, demonstrating engagement in academic supervision and pedagogical innovation. Labs and Teams: He is a core researcher in the LOGPROG group at UPC, which specializes in logic and programming, with strong collaborations across formal methods, verification, and constraint technologies.
Dr Virginia Gori is a Lecturer in Buildings and Energy at the Bartlett School Env, Energy & Resources, University College London. She leads Subtask D of the IEA Annex 81 'Data-Driven Smart Buildings' programme, focusing on mapping technology landscapes and evaluating data-driven smart building policies. PhD in Energy and the Built Environment (UCL, 2017) MRes in Built Environment Energy Demand Studies (UCL, 2014) BSc in Architectural Engineering (Universita degli Studi di Firenze, 2010) Her research combines building physics , in-situ monitoring , and Bayesian statistics to advance energy demand reduction in the built environment, particularly for historic buildings . She has developed novel Bayesian frameworks for thermophysical property estimation and whole-building performance analysis. Data-driven smart buildings Thermophysical property modeling Risk management for energy-moisture balance Conservation-compatible retrofit Scientific recognition includes: EPSRC Doctoral Prize Fellowship (2018-2020) UCL BEAMS Overseas Doctoral Award (2013) DAAD/DLR Research Fellowship (2021) Teaching contributions: Module lead: Introduction to Smart Energy Data and Statistics (2023-) Module lead: Smart Energy Solutions in the Built Environment (2023-) Former module lead: Building Physics & Energy (2019-2023) Co-designed Fundamentals of Building Physics course (6 years) Professional roles: Associate Editor, Buildings & Cities journal Technical committee member, CEN TC89WG13 Visiting Scholar, UC Berkeley (2019) Active in IEA Annex 71, Task 59, and Annex 81
Sabina Luisa Campanelli serves as an Associate Professor in the Department of Mechanics, Mathematics and Management at the Polytechnic University of Bari, Italy, where she conducts cutting-edge research in advanced manufacturing technologies with emphasis on laser-based additive processes. Her research specializes in Additive Manufacturing , particularly Powder Bed Fusion and Directed Energy Deposition techniques, focusing on multi-material fabrication , functionally graded materials , and in-process monitoring . She develops innovative methodologies for layer-level control of material composition and thermal management, addressing critical challenges in geometric accuracy, residual stress, and defect formation in aerospace and biomedical components. Analysis of her recent publications reveals a dominant trend toward real-time process monitoring using thermal and optical systems, with increasing focus on sustainable material utilization through recycled feedstocks. Her work bridges Materials Science , Mechanical Engineering , and Industrial Manufacturing , demonstrating strong industry applicability in high-value sectors requiring precision metal components.
Frank Markert is an Associate Professor at the Technical University of Denmark (DTU) , Department of Civil and Mechanical Engineering, specializing in Structures and Safety. His research focuses on fire safety engineering, hydrogen safety, computational fluid dynamics (CFD), and risk assessment, with applications in tunnel safety, hydrogen refuelling stations, and emergency response systems. Education: While specific degrees are not listed, his role as Associate Professor and extensive research output suggest advanced qualifications in fire safety engineering or related fields. Research Interests: Fire safety and fire dynamics in structures Hydrogen safety, especially in confined spaces like tunnels Risk assessment and quantitative risk analysis (QRA) Computational modeling of fires and explosions Emergency response and crisis management systems Research Trends: His recent publications (2023–2025) emphasize hydrogen safety in transport systems, tunnel fire mitigation, and innovative fire suppression techniques. He actively explores the risks associated with hydrogen-powered vehicles and infrastructure, including boil-off gas management and explosion mitigation strategies. Scientific Awards: No specific awards are mentioned in the provided text. Advising and Grants: Main supervisor for PhD student Liu, W. in the project "Advanced fire engineering tool for integrated analysis of structural design parameters" (2020–2024). Principal Investigator (PI) for projects like FIRE21 (Nordic Fire and Rescue Services) and HyTunnel-CS (hydrogen safety in tunnels). Participant in EU projects such as K-FORCE (Knowledge FOr REsilient society) under Erasmus+. Labs and Teams: He is affiliated with the DTU Construct research group, focusing on civil and mechanical engineering structures and safety.
Necip Altay Eren serves as an Assistant Professor in the Construction Technology Department at Gaziantep University's Islahiye Vocational School, where he has held academic positions since 2014 (Lecturer until 2022, promoted to Assistant Professor in 2022). His institutional affiliation spans multiple units within Gaziantep University, including the Technical Sciences Vocational School (2014-2022) and current appointment at Islahiye Vocational School, with administrative duties as Head of Department since 2024. His educational background includes: Doctorate (2021): Gaziantep University, Institute of Science, Civil Engineering Master's-equivalent (2009): University of Connecticut, USA Bachelor's (2002): Gaziantep University, Faculty of Engineering, Civil Engineering (English Program) Dr. Eren's research centers on advanced concrete technologies, with emphasis on geopolymer concrete systems, fiber reinforcement mechanisms, and nano-material applications. His work investigates critical performance aspects including mechanical properties under extreme conditions (acid/sulfate attack, thermal exposure), impact resistance, and structural behavior of innovative concrete composites. His methodology integrates experimental testing with computational approaches like artificial neural networks for strength prediction. Analysis of his 11 journal publications (2021-2024) reveals consistent focus on sustainable construction materials, particularly alkali-activated systems using industrial byproducts (slag), with increasing sophistication in hybrid reinforcement strategies combining steel fibers, nano-silica, and recycled materials like tire rubber. His work bridges fundamental material science with practical structural applications, predominantly targeting flat slab systems and shear-critical elements. Dr. Eren actively supervises graduate research, having completed two master's theses in 2023 on geopolymer concrete fire resistance and fiber-reinforced concrete shear strength. He secured national research funding for the project 'Investigation of the Impact Behavior of Geopolymer Concretes' (2017-2020), demonstrating capacity for independent research leadership. His teaching portfolio spans structural mechanics, concrete technology, and building materials across 57 course instances since 2013, maintaining continuous instructional engagement through 2024-2025. While no formal laboratory affiliation is specified, his project management and publication record indicate active involvement in concrete materials testing facilities. His research trajectory shows progression toward sustainable material systems with enhanced multifunctional properties, particularly for infrastructure resilience under dynamic loading conditions.
Pererik Andreasson is a Lecturer at the Academy of Information Technology , Halmstad University. His research focuses on 3D printing, materials science, electromagnetic compatibility testing, and wireless communication. Key contributions include optimizing 3D-printed radar lenses, advancing phase-change material characterization via femtosecond x-ray diffraction, pioneering augmented reality methods for electromagnetic field visualization, and developing substrate integrated waveguide antennas for IoT devices. 3D printing of optical components Dynamic processes in phase-change materials Augmented reality for electromagnetic testing IoT antenna design His recent work on frequency-adjustable SIW antennas (2024) and AR-based EMC visualization (2021) demonstrates cross-disciplinary innovation. While no scientific awards are documented, his 15+ publications since 2007 highlight sustained expertise in material science and wireless technologies.
Leanne Sakzewski is an Associate Professor at the Queensland Cerebral Palsy and Rehabilitation Research Centre, Faculty of Medicine, The University of Queensland. She serves as a Principal Research Fellow at the Child Health Research Centre and is affiliated with the Queensland Cerebral Palsy Rehabilitation and Research Centre. Her research is primarily focused on randomized clinical trials in cerebral palsy and childhood brain injuries, with particular emphasis on upper limb rehabilitation and motor training interventions. Dr. Sakzewski's research interests include upper limb training approaches for infants and children with unilateral cerebral palsy; intensive models of motor training to improve gross motor and manual abilities for children with bilateral cerebral palsy; participation-focused interventions to increase physically active leisure for children with cerebral palsy; and social skills group-based programs for adolescents with brain injuries. Her work demonstrates a strong commitment to evidence-based rehabilitation approaches that translate into practical clinical applications. Her recent publications show a consistent focus on intervention efficacy, with numerous randomized controlled trials examining various therapeutic approaches for children with cerebral palsy. The research spans multiple domains including motor function, social skills development, physical activity promotion, and early intervention strategies. Her collaborative work with multidisciplinary teams demonstrates the comprehensive nature of her research program. Dr. Sakzewski has received recognition for her research, including a Dean's Commendation for outstanding Research Higher Degree following completion of her PhD in 2010 from The University of Queensland. Her work has been published extensively in high-impact journals across rehabilitation science, pediatrics, and neurology. With over 100 journal articles to her name, Dr. Sakzewski has established herself as a leading researcher in pediatric rehabilitation for children with cerebral palsy. Her research bridges clinical practice and scientific investigation, with a focus on developing and testing interventions that can be readily implemented in clinical settings to improve outcomes for children with neurological conditions.
Eugenio Brusa is Full Professor of Mechanical and Aerospace Engineering at the Polytechnic University of Turin (Politecnico di Torino), where he also serves as Director of the Doctoral School (2018-2024) and Scientific Advisor for the strategic partnership with Danieli & C. Officine Meccaniche. Since obtaining his PhD in 1997, he has held academic roles in both Turin and the University of Udine, progressing from researcher to Associate Professor (2002) and then Full Professor (2013). Education PhD, Polytechnic University of Turin (1997) Degree in Aeronautical Engineering (Laurea), Polytechnic University of Turin (year not specified) Research Interests Professor Brusa’s expertise lies at the intersection of mechanical design , mechatronics , and systems engineering . His work encompasses: Structural mechatronics and smart materials, including MEMS-scale systems Rotor dynamics and bearing systems for aerospace, steel, and automotive applications Life-cycle assessment (LCA) and circular design methodologies Model-Based Systems Engineering (MBSE) for sustainable industrial products Digital-twin-driven design and predictive maintenance Recent Publications at a Glance Over the past five years Professor Brusa has co-authored more than 20 peer-reviewed articles and conference papers. The research trajectory shows a clear emphasis on sustainable aviation (fuel-cell aircraft thermal management), energy harvesting (piezoelectric and vibration-based systems), digital twins for ice-prediction and rotor monitoring, and circular-economy-oriented design through LCA integration. These works collectively advance greener industrial products and smarter mechatronic systems. Scientific Awards & Distinctions Premio Nazionale “A. Capocaccia” (1999) – awarded by AIAS (Italian Association for Stress Analysis) Member/Associate Editor, journals Energies (2020-2024) and Proceedings of the IMechE Part C (2020-2022) Scientific-committee roles in INCOSE Italy, ASME Italy Section (President 2014-2015), UNITE! European Alliance, ESCP Business School, and several IEEE/ECCOMAS conferences Doctoral Advising & Research Funding Currently supervising seven PhD candidates in Mechanical Engineering and Materials for Sustainability. Since 2018, as Director of the Doctoral School, he oversaw more than 200 doctoral students across disciplines. Active research contracts include: EU and regional projects on predictive maintenance (PRIME 2021-2022) Industrial contracts with Danieli & C. (2025-2028) on scrap-metal crushing & shearing machinery Ongoing partnerships on oil-film bearings for rolling mills, fatigue-life assessment of hydraulic-turbine shafts, and additive-manufacturing quality control Laboratories & Teams Founder or co-founder of four research laboratories: Mechatronics Laboratory (1993) Testing and Characterization of Rotating Systems Laboratory (1997) Industrial Systems Engineering & Design (ISED) Laboratory (2020) – current leader Ubiquitous and Pervasive Technologies Laboratory, University of Udine (2005)
Stefana Parascho serves as Tenure Track Assistant Professor at the Swiss Federal Institute of Technology in Lausanne (EPFL) within the School of Architecture, Civil and Environmental Engineering (ENAC), specifically in the Institute of Architecture (IA). She leads the Laboratory for Creative Computation (CRCL) and concurrently heads the Diversity Office at ENAC, demonstrating dual commitments to technological innovation and institutional equity. Her research pioneers intersections of digital fabrication, robotics, and sustainable architecture, with particular focus on transforming construction waste into valuable resources. Through computational design and robotic assembly, she develops novel methodologies for upcycling concrete rubble and timber into structurally sound building components, directly addressing circular economy challenges in construction. Her work bridges theoretical frameworks with physical prototyping, emphasizing human-robot collaboration and material reintegration. Analysis of her recent publications reveals a cohesive trajectory toward waste valorization through digital processes, with concrete rubble masonry and timber reuse forming the core technical pillars. These investigations consistently integrate robotic fabrication, structural validation, and circular design principles across 15+ publications since 2023, establishing new paradigms for resource-efficient construction. As an academic advisor, she supervises four PhD candidates (Grangeot Maxence, Skevaki Eleni Maria, Vallat Gabriel Rémi, Wang Jingwen) while contributing to architectural education through courses like "Digital design and making: A critical introduction" that merge technical skill development with theoretical critique. Her leadership extends to the ENAC Teaching Committee and institutional diversity initiatives, reflecting comprehensive engagement with academic community development. Her operational base at CRCL (https://crcl.epfl.ch) provides the technical infrastructure for robotic experimentation, while her Diversity Office role (https://www.epfl.ch/schools/enac/about/diversity-office/) demonstrates parallel commitment to inclusive academic environments. This dual focus positions her at the forefront of both technological innovation and cultural transformation within architectural academia.
Dr. Clotaire Michel serves as a Lecturer in Risk Assessment and Risk Management at ZHAW School of Engineering, where he also holds roles as Deputy Programme Director for MAS/DAS/CAS Integrated Risk Management (IRM), Module Manager for Risk Management (Bachelor), and Coordinator for the CAS Risk Assessment program. His academic work spans Technology Assessment in the Master Circular Economy Management program and MSE module coordination. His educational background includes a PhD in Earth Sciences from Université Grenoble Alpes (2004-2007), an Ingénieur Civil des Mines (Engineering Geology) from Ecole Nationale Supérieure des Mines de Nancy (2001-2004), and a Master in Earth Sciences from Université Grenoble Alpes (2003-2004). Continuing education includes CAS Earthquake Engineering (HSLU, 2023) and Habilitation à diriger les recherches (Université Grenoble Alpes, 2017). Michel's research focuses on interdisciplinary risk management, integrating seismic risk assessment, technology evaluation, and climate resilience. His work bridges engineering geology with practical safety applications, particularly in structural safety, fire protection systems, and earthquake engineering. Current projects address circular economy risk frameworks and regulatory compliance in European safety standards. His 15 most recent publications (2020-2025) reveal evolving expertise from traditional seismic site characterization toward broader risk domains including climate adaptation and fire safety. Key trends include methodological advances in ambient vibration analysis for structural monitoring and practical applications of risk assessment frameworks in European regulatory contexts. Professional networks include Verein Risiko und Sicherheit, Netzwerk Risikomanagement, Institut pour la maîtrise des risques (ImdR), Association Française du génie ParaSismique (AFPS), and Schweizer Gesellschaft für Erdbebeningenieurwesen und Baudynamik (SGEB). His industry role as Project Manager/Section Leader at Risk&Safety AG complements his academic work in hazard and risk analysis. As Deputy Programme Director for IRM, Michel oversees curriculum development and program coordination for professional risk management education. His research group within ZHAW's Technology Assessment focus conducts field studies on structural safety systems and develops risk assessment protocols adopted by Swiss safety agencies.