Prof. Elisabeth Engel López leads the Biomaterials for Regenerative Therapies group at the Institute for Bioengineering of Catalonia (IBEC) and serves as a Professor at the Technical University of Catalonia. With over 80 publications in JCR journals, her work focuses on designing biomaterials and scaffolds for in vitro/in vivo regenerative medicine, emphasizing cellular response mechanisms and translational applications. Developing lactate-releasing systems for metabolic modulation Advancing 3D bioprinting for tissue-specific models Engineering angiogenic and osteogenic biomaterials Her research bridges fundamental studies with industrial partnerships, including pharmaceutical and biomedical device companies, and contributes to European collaborative projects. She received the Barcelona City Award for technological research and has delivered numerous invited lectures. Her group explores substrate stiffness, ion release, and microenvironmental cues to control cell behavior in cardiac, neural, and bone regeneration contexts.
Ying Wu is a Professor of Physics at Duke University within the Trinity College of Arts & Sciences . His research focuses on the nonlinear dynamics of charged particle beams , coherent radiation sources , and the development of novel accelerators and light sources using advanced mathematical frameworks like Lie Algebra, Differential Algebra, and Frequency Analysis. His work has significantly enhanced understanding of nonlinear phenomena in light source storage rings and collider rings, with applications in Gamma-ray source development Free-electron laser (FEL) technology Beam stability and diagnostics VUV mirror protection systems Polarization-controlled radiation sources High-reflectivity cavity design Recent publications highlight experimental and theoretical advances in Orbital angular momentum beam generation Photonuclear cross-section measurements Storage ring lattice optimization Multi-color FEL operation Longitudinal beam instability control Differential algebra for particle dynamics Current research programs include collaborations with the High Intensity Gamma-ray Source (HIγS) facility and the Triangle Universities Nuclear Laboratory , with active grants from the Department of Energy (1997–2027), National Institutes of Health (2024–2026), and Ian's Friends Foundation (2024–2025). Ying Wu's laboratory specializes in Free-electron laser cavity design Gamma-ray beam characterization Storage ring diagnostics systems High-current electron beam control Polarization-sensitive detection Next-generation light source development
Somnath Basu is a Professor in the Department of Metallurgical Engineering and Materials Science at the Indian Institute of Technology Bombay. He has been serving in academic roles since 2011, progressing from Assistant Professor to Associate Professor and then to Professor in 2022. His work is deeply rooted in process metallurgy and materials engineering, with a focus on industrial steelmaking technologies. His research interests include metal refining , thermodynamics of slag-metal reactions , phosphorus and sulfur removal , and continuous casting processes . He also explores nanofluids and their transport properties, indicating interdisciplinary engagement. His work bridges fundamental thermodynamic studies with practical industrial applications in iron and steel production. The selected publications reflect a strong trend in steelmaking process optimization , particularly in reaction kinetics , inclusion behavior , and process monitoring . His research spans both experimental investigations and thermodynamic modeling, targeting improvements in steel purity and casting efficiency. Scientific Contributions: Published in leading journals such as ISIJ International , Steel Research International , and Metallurgical and Materials Transactions B . Contributions to understanding phosphorus partitioning, nozzle clogging, and nanofluid conductivity. While no specific students or grants are listed, his long-standing academic position and publication record suggest active supervision of graduate research and involvement in funded projects related to metallurgical process innovation. His work likely supports both academic and industrial advancements in steel technology. He is affiliated with a leading research department equipped with advanced facilities for metallurgical experimentation and process simulation, though specific lab names or team structures are not mentioned in the text.
Katrina Campbell is a Professor at the School of Biological Sciences , Queen's University Belfast , where she leads the Biosensors Strand within the Centre for ASsured, SafE and Traceable food (ASSET) . She holds dual Fellowships from the Royal Society of Biology and Royal Society of Chemistry , and is affiliated with the Irish Toxicology Society , SFET , and International Society for the study of harmful algae . Education: BSc (Hons) in Biochemistry (1995), Queen's University Belfast MMedSc in Ultrastructural Anatomy and Pathology (1996), Queen's University Belfast PhD in Pharmacy (transdermal drug delivery), Queen's University Belfast Katrina's research focuses on rapid biosensor-based detection of toxins, chemical contaminants, and pathogens throughout the "environment to farm to fork" food supply chain. She develops antibodies, phage, and aptamers for bioanalytical methods on platforms like Biacore AB, SAW Instruments, and Neogen Lateral Flow , aiming to enhance food safety , sustainability , and traceability . Her work aligns with UN Sustainable Development Goals including Zero Hunger ( SDG 2 ), Climate Action ( SDG 13 ), Life Below Water ( SDG 14 ), and Life on Land ( SDG 15 ). Recent publications address plant-based milk contaminant detection , marine biotoxin monitoring , and PFAS regulation impacts on food sustainability. She leads projects like Seafoodtomorrow , Eurobiotox , and Mychif , collaborating with the Food and Drug Administration (USA) and through Safefood funded initiatives. Scientific Awards: Fellow of the Royal Society of Biology (2023) Fellow of the Royal Society of Chemistry (2023) Katrina supervises PhD students and contributes to technology transfer workshops . She serves as EITFOOD Education Programmes Co-ordinator at Queen's University Belfast. Labs & Collaborations: She leads the Biosensors Strand in ASSET, collaborating with multi-centre EU projects (BioCop, Conffidence, Midtal, Atlantox), industrial partners , and international institutions to create state-of-the-art biosensor tools for food safety.
Daniela Cutas is an Associate Professor of Medical Ethics at Lund University since 2020 and an Associate Professor of Philosophy at Umeå University since 2012. She is also a Senior Lecturer at the Department of Medical Ethics and a Profile Area Member of LU Profile Area: Human Rights. Her research bridges Medical Ethics, Philosophy, and Reproductive Medicine, with a focus on topics such as synthetic DNA, mitochondrial replacement therapy, genetic kinship, and the ethics of intra-familial reproduction. Her work aligns with UN Sustainable Development Goals related to Ethics, Medical Ethics, and Philosophy. Recent publications highlight her expertise in synthetic biology, reproductive justice, and epigenetic responsibilities. She has received notable awards including a Marie Curie fellowship, the title of Docent in Philosophy (2013), and Merited Teacher (2019). Scientific Awards: Marie Curie fellowship Docent in Philosophy (2013) Merited Teacher (2019)
Dr Charlie Ryan is an Associate Professor in the School of Engineering at the University of Southampton , specializing in low-cost micropropulsion systems for small spacecraft. He leads the Astronautics Group and has a primary research focus on electrospray thrusters , Hall-effect thrusters , and small chemical propulsion systems using hydrogen peroxide. PhD in electrospray voltage effects from Queen Mary University of London (2011) Postdoctoral work on MEMS electrospray thrusters for cubesats (2011-2013, European Commission FP7 'MicroThrust') Post Doctoral Research Fellow at University of Surrey’s Space Centre (2014-2015) developing low-cost Hall-effect thrusters His recent research involves experimental characterization of ionic liquid ion sources , porous electrospray thrusters , and in-situ lunar propellants . Current projects include Protolaunch and SPRINT (Research England), Cryptalabs , and collaborations with SmallSpark. He has supervised 10 PhD students in propulsion technology and related fields. Publications demonstrate expertise in: Electrospray thruster diagnostics Dual-species ion emission mechanisms Flight-ready microthruster development Alternative propellants for Hall thrusters Lunar regolith-derived propulsion Modular thruster design Research funded by EPSRC , Royal Society , and Research England . His hardware has flown on space missions including the International Space Station.
Mitchell Walker is the John W. Young Chair and Professor at the Daniel Guggenheim School of Aerospace Engineering , Georgia Institute of Technology. With over 20 years of expertise in electric propulsion and plasma physics , he leads the High-Power Electric Propulsion Laboratory (HPEPL) and directs the Joint Advanced Propulsion Institute . His work spans theoretical and experimental research in spacecraft propulsion , space debris mitigation , and plasma diagnostics , with significant contributions to Hall thrusters , ion engines , and vacuum facility effects . Education : Ph.D., University of Michigan (2004) M.S.E., University of Michigan (2000) B.S.E., University of Michigan (1999) Research Interests focus on electric propulsion systems , plasma physics , and hypersonic aerodynamics . His laboratory investigates Hall effect thrusters , magnetoplasmadynamic thrusters , and pulsed inductive thrusters , emphasizing plasma diagnostics , vacuum testing , and spacecraft integration challenges . Scientific Awards : AIAA Fellow (2023) AIAA Sustained Service Award (2020) Georgia Power Professor of Excellence (2017) Provost's Emerging Leaders Program (Georgia Tech, 2017) Lawrence Sperry Award (2010) AFOSR Young Investigator Program Award (2006) Students include Ph.D. researchers such as Chhavi (2024), Jean Luis Suazo Betancourt (2024), and David R. Jovel (2023), who have explored topics like magnetic field gradients , Laser Thomson scattering , and impedance characterization . Lab & Collaborations : HPEPL operates one of academia’s largest vacuum test facilities, supporting partnerships with NASA, Lockheed Martin, and the Department of Defense. Recent projects include JANUS (Joint Advanced Propulsion Institute) and Helicon Plasma Source development.
Kamal Al Haddad is a Lecturer in the Department of Electrical Engineering at École de technologie supérieure (ÉTS). He holds a Doctorate from INTP, Toulouse, and advanced degrees from UQTR. His research focuses on power electronics, renewable energy integration, and smart grid technologies. He leads the GREPCI research group, specializing in Power Electronics and Industrial Control. Education: B.Eng., M.Sc.A. (UQTR), Doctorate (INTP, Toulouse). Research interests span energy conversion, industrial electronics, power quality, and electromagnetic interference. He emphasizes sustainable energy solutions, electric traction systems, and high-efficiency power sources. His work includes developing advanced power electronic converters and grid stability solutions. Recent articles highlight advancements in modular converters for STATCOM, AI-driven fault detection in hydrogenerators, and renewable energy policy frameworks. He has received notable awards, including the 2014 IEEE Eugene Mittelmann Prize and Fellowships from IEEE and other institutions. Supervised over 60 students, including doctoral theses on topics like hydrogenerator diagnostics, EV charging systems, and renewable energy integration. His research also involves real-time simulation of power systems and FPGA-based implementations. Labs/Teams: GREPCI – Power Electronics and Industrial Control Research Group, leading projects on smart grids and energy efficiency.
Elisa Riedo is a tenured Professor of Chemical and Biomolecular Engineering at New York University (NYU) Tandon School of Engineering, with joint appointments as Professor of Physics in NYU’s College of Arts and Science and as affiliated Professor of Mechanical Engineering at Tandon. She serves as Director of Faculty Development at NYU Tandon and has held prior tenured positions at Georgia Tech (2003–2015) and CUNY ASRC (2015–2018). Her academic career spans over two decades, with a Ph.D. in Physics from the University of Milano (2000) and postdoctoral work at EPFL. Her research focuses on nanotechnology , graphene and 2D materials , and thermal scanning probe lithography (tSPL) , with applications in biomedical diagnostics quantum electronics electromagnetic interference shielding mechanical reinforcement of materials She pioneered tSPL for sustainable nanofabrication and discovered diamene—a single-layer diamond structure from graphene under pressure. Her recent work involves transparent infrared electrodes using silver nanowires (2025) and self-organized graphene stacking domains for quantum technologies (2024). She has secured major grants from National Science Foundation , Department of Defense , and Army Research Office . Scientific honors include: 2023 NYU Tandon Excellence in Research Award 2013 American Physical Society Fellow 2005 CREA Innovation Award Membership in the Academy of Europe (2023) She contributes to editorial boards for journals like 2D Materials and Applications and advises companies such as Mirimus Inc. and SwissLitho AG .
Erik Bjørnager Dam is a Professor in the Machine Learning section at the Department of Computer Science, University of Copenhagen (UCPH). His research spans theoretical foundations of machine learning to practical applications in medical data analysis, sustainability, and materials science. His key research interests include: Small-scale and resource-efficient deep learning Medical image analysis and segmentation Sustainable and environmentally conscious AI development Graph neural networks for materials science Resource-constrained AI systems Professor Dam's recent publications demonstrate a strong focus on making AI more accessible and sustainable while maintaining high performance standards. His work on 'Performance Per Resource Unit' metrics addresses critical challenges in deploying AI in resource-limited environments, particularly in healthcare applications. His research bridges theoretical machine learning with practical implementations across multiple domains. His notable professional activities include: Co-founding Cerebriu A/S (since 2018) Co-founding Biomediq A/S (since 2008) Delivering lectures on AI's role in green transition (April 24, 2023) Media contributions on deep learning applications in plant research (September 13, 2018) With 74 documented research outputs, Professor Dam maintains an active research profile with significant contributions in 2023-2025 across medical imaging, sustainable AI, and materials science applications.
Prof David Harrison is a Professor at the University of St Andrews' School of Medicine, affiliated with the Sir James Mackenzie Institute for Early Diagnosis and the Cellular Medicine Division. His research focuses on oncology, pharmacology, molecular biology, and AI-driven medical diagnostics. Key projects include the NuCana Biomed research agreement and the ICECAP initiative investigating immunopathology in severe COVID-19 cases. He supervises multiple PhD students and has contributed to advancements in drug development, cancer biology, and AI applications in pathology. His work spans clinical trials (e.g., RAMPART, NUC-3373 studies) and innovative imaging techniques (e.g., DESI-MSI for cancer metabolomics). Education: PhD (not explicitly stated in texts, inferred from academic rank). Research Interests: Prof Harrison’s expertise includes cancer drug mechanisms, molecular enzymology (e.g., 4-oxo-L-proline reductase), AI-driven pathology automation (e.g., cervical biopsy analysis), and immunological responses in critical illnesses. His lab develops tools for high-resolution histopathological imaging and explores metabolic-phenotypic links in tumors. Publications: Recent work includes studies on enzyme catalysis, clinical trial adaptations, and AI applications in diagnostics. These highlight his interdisciplinary approach to bridging basic science with translational medicine. Awards: None explicitly listed in the provided texts. Grants & Advising: Leads projects funded by NuCana Biomed (£171k) and Medical Research Scotland (£8k). Supervises eight PhD students focusing on drug mechanisms, imaging, and molecular biology. Labs/Teams: Collaborates within the Sir James Mackenzie Institute and cellular medicine teams, contributing to multidisciplinary research in early diagnosis and treatment strategies.
Albert H. Titus is a Professor in the Department of Biomedical Engineering and an Adjunct Professor in the Department of Electrical Engineering at the University at Buffalo, State University of New York. He serves as Associate Vice President for Regulatory Support in the Office of the Vice President for Research and Economic Development. His research focuses on analog VLSI design for neuromorphic visual processing, biosensors, wearable devices, optoelectronic systems, and neural networks. Education: PhD in Electrical and Computer Engineering, Georgia Institute of Technology (1997) MS in Electrical Engineering, University at Buffalo (1991) BS in Electrical Engineering, University at Buffalo (1989) Research Interests: His work spans wearable and implantable sensors, bioinstrumentation, neural network-based visual processing, analog VLSI implementations, optoelectronics, and electronic packaging. He pioneered CMOS-based neuromorphic systems and developed patented technologies for glare sensing and RF power calorimetry. Publication Trends: His recent articles emphasize CMOS-integrated sensors, machine learning for bioimpedance analysis, implantable medical devices, and xerogel-based optical biosensors. These works bridge biomedical engineering and microelectronics. Scientific Recognition: He is a Fellow of the National Academy of Inventors and has received the SUNY Chancellor’s Award for Excellence in Service (2017), NSF CAREER award, and Western New York Inventor of the Year (2010). His inventions include a patented low-power glare sensor (U.S. Patent 7,586,079) featured in Popular Science’s 2011 Top Ten Inventions. Academic Leadership: As a faculty member, he has supervised nearly 20 PhD and over 40 MS students, while teaching courses in circuits, IC design, sensors, and signal processing across electrical and biomedical engineering disciplines.
Magdalena Szymczyk is a Lecturer in the Department of Biocybernetics and Biomedical Engineering at AGH University of Science and Technology, Faculty of Electrical Engineering, Automatics, Computer Science and Biomedical Engineering. Her work bridges embedded systems, biomedical signal processing, and geophysical data analysis. Research focuses on energy-efficient sensor networks, neural networks for GPR data classification, and mathematical transforms in signal analysis Expertise in parallel computing, real-time systems, and biomedical engineering applications Her publications (2015–2025) demonstrate a trajectory from parallel neural networks and S-transform/GPR methodologies to recent work on MicroPython in embedded systems. Key themes include energy optimization in distributed architectures and AI-driven signal processing across biomedical and geophysical domains. She has authored works on deterministic chaos in simulations, GPU image processing, and cybersecurity in microcontroller systems. Her current research emphasizes embedded systems security, medical signal diagnostics, and computational methods for geological analysis. She utilizes tools like OpenCL for GPU acceleration and MATLAB for parallel computing implementations.
Lars Frelin is an Associate Professor in Virology at Karolinska Institutet, where he also serves as Programme Director for the Study Programme in Biomedical Laboratory Science and the Master Programme in Diagnostic Cytology. He is the Facility Manager for ANA Futura and a member of the VIVAC (Vaccines and Immunotherapies against Viruses And Cancer) research group led by Matti Sällberg at the Department of Laboratory Medicine, Division of Clinical Microbiology. Dr. Frelin's academic background includes: PhD from Karolinska Institutet (2004) Docent (Associate Professor) in Virology, Karolinska Institutet (2013) His research focuses on vaccine development against infectious diseases, particularly hepatitis viruses. Working with the VIVAC research group, he investigates novel immunotherapeutic approaches to combat viral hepatitis B, C, and D. His work spans from basic virology to translational research, with an emphasis on understanding viral immune evasion strategies and developing therapeutic vaccines that can overcome immune tolerance in chronic infections. Dr. Frelin's scientific contributions span over two decades, with recent work focusing on universal coronavirus vaccines, novel prime-boost strategies for hepatitis viruses, and understanding the immune response to viral infections. His research demonstrates a consistent trajectory toward developing immunotherapies that target viral entry mechanisms and enhance host immune responses against persistent viral infections. Dr. Frelin has secured multiple research grants from the Swedish Research Council, including: "Pathogenesis and immune evasion strategies of hepatitis viruses: New transgenic mouse models and new therapies" (2020-2022) "Pathogenesis and immune evasion strategies of hepatitis viruses: New transgenic mouse models and new therapies" (2017-2019) "Understanding the hepatitis C virus nonstructural 5A protein: A new target for antiviral therapies" (2012-2014) As Programme Director, he oversees academic programs in Biomedical Laboratory Science and Diagnostic Cytology, shaping the education of future laboratory medicine professionals. His leadership extends to serving on the Infrastructure Committee at Karolinska Institutet (2016-2019, 2019-2022) and managing the ANA Futura facility since 2020. Dr. Frelin is an active member of the VIVAC research group, which focuses on developing vaccines and immunotherapies against viruses and cancer. The group employs various approaches including DNA vaccine technology, viral vector systems, and novel delivery methods to enhance immune responses against challenging viral targets.
Navid Bayati is an Associate Professor at the University of Southern Denmark, affiliated with the Institute of Mechanical and Electrical Engineering and the Centre for Industrial Electronics. He leads the Control and Protection of Smart Grids (CAP-SG) group and focuses on renewable/hybrid power systems, microgrid protection, and grid code compliance. Education: Ph.D. in Power Systems & Microgrid Protection (2020, Aalborg University); M.Sc. in Power Systems (2017, Amirkabir University of Technology) His research spans renewable energy integration , transient analysis , grid interconnection , and digital twin applications . Recent work includes machine learning for carbon emission prediction, fault localization in DC microgrids, and supercapacitor resilience in hybrid systems. Collaborations include projects like IEA Wind Task 50 and RePoSys , addressing grid renovation, life cycle assessment, and digital twin resilience. His teaching portfolio covers power electronics , energy management , and microgrid control .