Paolo Ienne is a Professor at the Swiss Federal Institute of Technology in Lausanne (EPFL), where he leads the Processor Architecture Laboratory (LAP) within the School of Computer and Communication Sciences. His research focuses on advancing reconfigurable computing systems through innovative FPGA architectures and high-level synthesis methodologies. His primary research domains include reconfigurable computing, FPGA architecture design, dynamically scheduled dataflow circuits, and hardware acceleration techniques. Recent work emphasizes memory system optimization for FPGAs, formal verification of circuit transformations, and rapid C-to-hardware compilation flows. He has pioneered approaches for handling thousands of outstanding memory misses in FPGA accelerators and developed novel techniques for switch-block exploration without explicit pattern enumeration. Analysis of his 2023-2025 publications reveals a strong trend toward practical FPGA deployment challenges, with increasing focus on HBM integration, virtual memory systems for PCIe-attached devices, and formally verified circuit transformations. His work consistently targets real-world bottlenecks in high-level synthesis toolchains while maintaining theoretical rigor in dataflow architecture design. Professor Ienne's laboratory receives support from the Swiss National Science Foundation and industry partners including Huawei, enabling cutting-edge research in FPGA-based acceleration. His collaborative network spans major semiconductor companies and academic institutions worldwide, with frequent co-authorship on conference proceedings and journal publications in IEEE and ACM venues.
Mirjana Stojilovic is a Researcher at École Polytechnique Fédérale de Lausanne (EPFL) in the School of Computer and Communication Sciences (IC), specifically within the Institute of Computer Engineering (IINFCOM) and the Parallel Systems Architecture Laboratory (PARSA). She also serves as a Lecturer in the SSC - Teaching department at EPFL. Her office is located at INJ 235, Station 14, 1015 Lausanne, Switzerland. Mirjana Stojilović received her Dipl. Ing. and Ph.D. degrees from the School of Electrical Engineering, University of Belgrade, in 2006 and 2013, respectively. Her academic journey includes collaborating with the Processor Architecture Laboratory at EPFL as a Guest Researcher from 2010 to 2013, working at the University of Applied Sciences Western Switzerland as a senior researcher from 2013 to 2016, and joining the Parallel Systems Architecture Lab at EPFL in October 2016. Dr. Stojilovic's research spans field-programmable technology, electronic design automation (EDA), and electrical-level attacks and countermeasures for reconfigurable hardware. Her work bridges the gap between hardware design and security, with a particular focus on vulnerability analysis and protection mechanisms for FPGA-based systems in cloud environments. She has made significant contributions to understanding side-channel attacks, fault injection techniques, and secure multi-tenancy solutions for shared hardware resources. Her extensive publication record reveals a clear research trajectory from traditional FPGA design and EDA topics toward increasingly security-focused investigations. Recent work demonstrates deep expertise in power analysis attacks, hardware trojans, and countermeasures for cloud-based FPGA systems, reflecting the growing importance of hardware security in distributed computing environments. Scientific Awards and Recognitions: Best Paper Award at 2016 International Symposium on Electromagnetic Compatibility (EMC Europe 2016) Young Scientist Award at 33rd International Conference on Lightning Protection (ICLP2016) Young Author Best Paper Award at the 20th Telecommunication Forum in Belgrade (TELFOR 2012) EPFL School of Computer and Communication Sciences (IC) Teaching Award (2015) Nominated for Best Paper Award at the International Conference on Field-Programmable Technology (FPT) (2020) Dr. Stojilovic has advised numerous PhD students including Coulon Louis, Pirayadi Rouzbeh, and Shrivastava Shashwat, along with past EPFL PhD students Glamocanin Ognjen and Mahmoud Dina. She has supervised dozens of semester and diploma projects focusing on hardware security, FPGAs, design automation, side-channel attacks, and cloud computing. Her service to the academic community includes serving on program committees for FPGA, FCCM, FPL, and DATE conferences, reviewing for multiple IEEE and ACM journals, and acting as associate editor for IEEE ESL and ACM TRETS. As a member of the Parallel Systems Architecture Laboratory at EPFL, Dr. Stojilovic leads research projects investigating security aspects of reconfigurable hardware systems. Her team works at the intersection of computer architecture, electronic design automation, and hardware security, with particular emphasis on vulnerabilities and protections for shared FPGA resources in cloud environments.
Nancy Odendaal is a Professor in Urban Studies at the Department of Social Sciences, Faculty of Humanities and Social Sciences, University of Basel. She is based in Basel, Switzerland, and holds a prominent role in the Critical Urbanisms program. Her academic expertise lies at the intersection of urban planning, digital technologies, and urban life in the Global South, particularly African cities. Institution: University of Basel Faculty: Faculty of Humanities and Social Sciences Department: Department of Social Sciences Field: Urban Studies Email: nancy.odendaal@unibas.ch Her research focuses on the interplay between urban livelihoods and the appropriation of new technologies and infrastructure in the urban South. She is particularly interested in how digital platforms are reshaping urban spatialities, governance, and everyday life in African cities. Her 2023 book, Disrupted Urbanism: Situated initiatives in African cities , published by Bristol University Press, is a key contribution to this field. She also investigates themes such as the governmentality of local government digitization, the impact of global tech companies like Google on urban spaces, and the role of hybrid storytelling as a method for knowledge co-production. Her recent publications reveal a strong trend in critical urbanism, with a focus on rethinking smart city narratives from Southern perspectives. The articles emphasize digital inclusion, resistance, and the social implications of technology in unequal urban contexts. Her work bridges urban planning, critical geography, and science and technology studies, advocating for more situated and participatory approaches to urban research and practice. Nancy Odendaal is actively involved in the academic community through editorial and review roles: Editorial Board Member, Urban Geography Editorial Board Member, Journal of the American Planning Association Editorial Board Member, Progress in Planning Permanent Member, Review Panel, Swiss National Science Foundation SPIRIT Programme Member, Interdisciplinary Research Review Panel, Swiss National Science Foundation Member, Urban and Rural Areas Review Panel, Swedish Research Council for Sustainable Development She is committed to experiential and situated pedagogy, integrating her research into her teaching on the Critical Urbanisms degree. She has published on case study methods in African urban planning education and continues to develop methodological frameworks with her students. While specific advisees are not listed, her leadership in the program suggests active mentorship of graduate students. Nancy Odendaal’s work is central to advancing critical perspectives on urbanization, technology, and planning in the Global South, contributing significantly to both academic discourse and practical urban governance debates.
Daniele Allegri is a Professor of 'Programmable and Integrated Microelectronic Systems' at the University of Applied Sciences and Arts of Southern Switzerland (SUPSI), leading the Department of Innovative Technologies. He serves as Director of the Institute for Systems and Applied Electronics (ISEA) since 2023 and previously held roles including Head of the 'Digital Electronics, Microelectronics, and Bioelectronics' research area (since 2019). His professional career spans engineering roles at Mandozzi Elettronica SA (1998–2014) and academic research at SUPSI (2014–present). Education: Ing.-Dipl. in Electronic Engineering from ETH Zurich (1998), PhD in Microelectronics from the University of Pavia (2017). Research Focus: Development of integrated circuits and embedded systems for biomedical applications, mixed analog-digital circuits, FPGA systems, signal processing, imaging technologies, and Edge AI. His work addresses clinical needs like real-time hydration monitoring for dialysis patients and advanced solar telescope instrumentation. Key Projects: Probing semiconductor rad-hardness via ions/lasers Next-gen tunnel safety sensors High-precision 3D imaging systems Cardio Pulmonary Rescue Support System Wireless pulmonary edema sensing networks Publications emphasize biomedical instrumentation and astrophysical engineering. No scientific awards explicitly listed in text, but contributions suggest strong peer recognition. Advising activity details not provided in source text. Current affiliations include leadership roles at SUPSI's ISEA and teaching responsibilities in multiple electronics-related courses.
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.
Mauro Prevostini is the Program Manager of the Faculty of Informatics at the Università della Svizzera italiana (USI) since 2004 and holds the academic rank of Lecturer. He previously managed the creation of the Faculty of Informatics from 2001 to 2004 and has been a staff member of the ALaRI institute until 2018. His roles include coordinating academic-industry collaborations and promoting computer science education in local schools. Education: MSc in Electrical Engineering (ETH Zürich, 1994), Thesis: "On-Line Recognition of Masticatory Muscles Activity with Long-Time EMG Recorder" Secondary Education: Liceo Cantonale Lugano 1 (1984–1988) Research Interests: Focuses on Wireless Sensor Networks applied to Precision Agriculture, particularly in pest monitoring systems like PreDiVine DSS. His work integrates UML-based design methodologies for embedded systems and cyber-physical systems. Collaborations include ALaRI and Agroscope research center. Academic Contributions: Over 15 key publications from 2003–2022 emphasize system-level design, hardware/software co-design, and sensor network optimization. Recent articles address deep learning strategies for pest detection and adaptive decision support systems. Professional Activities: Co-founder of Dolphin Engineering Sagl (2012–present), a Precision Agriculture startup Member of the academic senate (2017–2019; 2023–present) Former coordinator of the Ticino branch for the informatica08 initiative (2008) Labs & Projects: Leads projects on wireless sensor networks for agricultural monitoring and collaborates with ALaRI on embedded system design tools and methodologies.
Professor Zinn Manfred serves as a Professor HES Ordinaire and leads the Biotechnology and Sustainable Chemistry research group at HES-SO Valais-Wallis, specifically within the Haute Ecole d'Ingénierie (School of Engineering) in the Department of Chemistry and Life Sciences. His work focuses on developing sustainable biopolymer solutions with emphasis on biodegradable materials that can replace conventional plastics. Professor Zinn's primary research interests center around biotechnology and sustainable chemistry, particularly in the field of polyhydroxyalkanoates (PHA) and other bioplastics. His work spans microbial biosynthesis of biopolymers, process analytical technology for bioreactor monitoring, biocompatibility testing, and the development of sustainable production methods using renewable resources. His research addresses critical environmental challenges related to plastic pollution by developing biodegradable alternatives with applications in biomedical engineering, packaging, and other industrial sectors. He investigates both fundamental microbial metabolism and applied industrial scale-up challenges, working at the intersection of microbiology, polymer science, and process engineering. Analysis of Professor Zinn's publication record reveals a strong focus on advancing biodegradable polymer technology, particularly polyhydroxyalkanoates (PHA). His work spans fundamental research on microbial biosynthesis mechanisms, enzyme engineering for improved polymer production, and practical applications of bioplastics in industrial settings. A significant portion of his recent work addresses the challenges in scaling up bioplastic production and bringing these materials to market, including metallization techniques for biodegradable plastics, continuous production methods, and value chain analysis for commercialization. His research demonstrates an integrated approach that combines microbiology, polymer chemistry, and process engineering to develop sustainable materials solutions. Prime de soutien au montage de projets Innosuisse - projet "Biosynthesis of Chlorella" (2019-2024) FNS IZJFZ2_185638 / 1 Electroplating processes for biodegradable materials (2019-2023) ITV19socle_Online flow cytometry analysis of microbial bioplastic production (2019) BIOFLEX, HES-SO Interdisciplinary Programme (2013-2015) Professor Zinn has secured significant research funding from multiple sources including Innosuisse, the Swiss National Science Foundation (FNS), and internal HES-SO grants. His projects typically involve interdisciplinary collaboration with researchers across Switzerland and internationally, such as with the Frauenhofer Institute and Chulalongkorn University Bangkok. He has supervised numerous research projects focusing on bioplastic production, characterization, and application development. His laboratory, the Biotechnology and Sustainable Chemistry research group, employs advanced techniques including flow cytometry for bioprocess monitoring, bioreactor systems for microbial cultivation, and polymer characterization methods. The group actively develops methods for producing PHA from various carbon sources, including waste streams and synthesis gas, with applications ranging from medical devices to sustainable packaging solutions.
Jérôme Duberry serves as Managing Director of the Tech Hub, Academic Advisor for the Executive Programme in Diplomacy, Negotiation and Policy-Making, and Senior Research Fellow at the Albert Hirschman Center on Democracy (AHCD) at the University of Zurich. He focuses on the social, political, and geopolitical implications of artificial intelligence (AI) in democratic processes and governance. Executive Programme in Diplomacy, Negotiation and Policy-Making Albert Hirschman Center on Democracy (AHCD) Tech Hub University of Zurich His educational background includes two Master's degrees in International Relations from the Geneva Graduate Institute and Diplomacy from the Diplomatic School of Madrid, alongside a PhD in International Relations from Pompeu Fabra University, Barcelona. He has also trained in foresight and design thinking facilitation. Duberry's research spans AI's impact on democracy, digital threats to political participation, AI literacy for youth, and the role of emerging technologies in environmental governance. He advocates for human-centered AI governance prioritizing equality, freedom, and human rights. His work includes cross-disciplinary analysis of AI's societal implications, such as media framing during the pandemic and digital diplomacy in cyberspace. Recent publications highlight trends in AI-mediated political communication, disinformation operations, and digital tools for sustainability. He explores how AI and big data reshape biodiversity conservation, international relations, and cybersecurity. His 2022 book Artificial Intelligence and Democracy remains a central contribution to the field. Duberry has received funding from the Swiss National Science Foundation (SNSF) since 2022 for a project on AI literacy and youth engagement. As a visiting professor, he teaches courses on digital technologies and futures in the MINT program, covering topics like cybersecurity, digital diplomacy, and strategic foresight. He is affiliated with the Albert Hirschman Center on Democracy , the Tech Hub , and the Digital Society Initiative of the University of Zurich, contributing to multidisciplinary research on technology's societal impacts.
Professor Alfredo Franco-Obregón is a Research Associate Professor at the National University of Singapore (NUS), with multiple appointments across the Yong Loo Lin School of Medicine. He holds positions in the Department of Surgery and the Department of Physiology, and is affiliated with the Institute for Health Innovation & Technology, the Healthy Longevity Translational Research Programme, the NUS Centre for Cancer Research, and the Nanomedicine Translational Research Programme. He leads the Biolonic Currents Electromagnetic Pulsing Systems (BICEPS) Laboratory, which focuses on developing non-invasive electromagnetic technologies to enhance muscle function and systemic health, particularly for aging populations and those with mobility limitations. Dr. Franco-Obregón's research centers on understanding how biophysical forces, particularly mechanical and electromagnetic stimuli, translate into tissue regeneration and survival. His work specifically investigates the role of Transient Receptor Potential (TRP) channels, particularly TRPC1, in skeletal muscle development and how magnetic fields can activate mitochondrial respiration through a process he terms "Magnetic Mitohormesis." This research has significant implications for metabolic health, cancer therapy, and aging interventions. His laboratory has demonstrated that brief (10-minute) weekly exposure to low-energy pulsed electromagnetic fields (PEMFs) can enhance muscle development, improve metabolic efficiency, and even produce anticancer effects through the activation of muscle secretome responses. His recent publication record demonstrates a strong focus on translating these findings into clinical applications, with numerous randomized controlled trials examining the effects of PEMF therapy on conditions including knee osteoarthritis, Achilles tendinopathy, metabolic disorders, and breast cancer. His research bridges fundamental cellular mechanisms with practical clinical applications, showing how magnetic field exposure can serve as a non-invasive exercise mimetic for populations unable to engage in physical activity. 2020: Innovation of the Year Product Winner by the Ageing Asia World Ageing Festival (for QuantumTx) 2015: Wong Hock Boon Society Best Mentor Award (NUS) 2008: Goldenen Eule (The Golden Owl Excellence in Teaching Award) (ETH) 1990: Martin Luther King Mentorship Award (UCSF) Dr. Franco-Obregón is actively engaged in mentoring students and collaborating on international research projects. He has established the BICEPS Laboratory as a hub for interdisciplinary research, bringing together engineers, clinicians, and basic scientists. His work has led to the founding of QuantumTx Pte. Ltd., a NUS spin-off company developing magnetic therapeutic devices, and he is currently conducting human clinical trials in Singapore, China, Southeast Asia, and the US to evaluate the efficacy of his magnetic therapeutic platforms. The BICEPS Laboratory operates at the intersection of engineering and clinical medicine, with a mission to develop non-invasive technologies that enhance muscle function and bioenergetics. The lab's research has significant potential to transform clinical practice, particularly in preventative medicine and rehabilitation. Dr. Franco-Obregón is also working to establish international collaborations, including potential student exchange programs between ETH/UZH and NUS, to further advance this field of research.
Dr. PJ Stephenson is a Research Fellow at the University of Lausanne , affiliated with the Department of Ecology and Evolution within the Faculty of Biology and Medicine . He serves as Chair of the IUCN Species Survival Commission Species Monitoring Specialist Group and collaborates with the Fumagalli Group to advance biodiversity monitoring science. Education: BSc in Zoology (University of London), PhD in Tenrec Ecology (University of Aberdeen) Current Roles: Senior Research Fellow (ETH Zürich), IUCN advisor His research focuses on understanding biodiversity monitoring challenges , addressing taxonomic and geographic data biases , developing conservation indicators , testing remote sensing and eDNA technologies , and analyzing conservation programme success factors . Recent projects include: Nature-Positive Biodiversity Credits (2024-2025): Methodological development for credit systems Data Flow Analysis (2021-2023): Cross-sector biodiversity data accessibility study Global Monitoring Tools (2023-2025): Guideline development for diverse stakeholders Scientific awards and honors: No specific awards mentioned in text He has supervised multiple UNIL Masters students on topics including protected area effectiveness , species monitoring methods , and data gaps in East African conservation . His work spans technological monitoring innovations , policy frameworks , and field research in Africa/Madagascar .
Dr. Elizabeth Chloe Romanis is an Associate Professor in Biolaw at Durham Law School, Durham University. She also serves as an Associate Professor in Durham CELLS (Centre for Ethics and Law in the Life Sciences) and as a Fellow of the Institute for Medical Humanities. From August 2024, she holds the position of Director of Equality, Diversity and Inclusion at the Law School. She recently completed a Fellowship-in-Residence at Harvard University's Edmond and Lily Safra Center for Ethics and the Petrie-Flom Center for Health Law Policy, Biotechnology and Bioethics, and is an adjunct researcher in the University of Zurich's Human Reproduction Reloaded research programme. Dr. Romanis received her academic training at the University of Manchester: LLB (Hons) Law (First Class) LLM in Health Care Ethics and Law (Distinction) PhD in Bioethics and Medical Jurisprudence (Wellcome Trust-funded, passed with no corrections) Dr. Romanis specializes in healthcare law and bioethics with a focus on reproduction and the body. Her research spans abortion, gestation, pregnancy, and birth, with particular expertise in artificial womb technology. She employs feminist legal perspectives to examine how law intersects with reproductive technologies and bodily autonomy. Her work often addresses issues of gender, equality, and justice in reproductive healthcare contexts, increasingly incorporating nonbinary and transgender pregnancy experiences. Dr. Romanis's recent publications show a strong focus on emerging reproductive technologies, particularly artificial womb technology and its legal implications. She has extensively examined telemedical abortion services, especially in the context of the COVID-19 pandemic. Her work increasingly addresses nonbinary and transgender pregnancy experiences, reflecting evolving understandings of gender and reproduction in law. She has published in leading journals including the Modern Law Review, Medical Law Review, Journal of Law and the Biosciences, and the Journal of Medical Ethics. Dr. Romanis has received several prestigious awards: University of Manchester Distinguished Achievement Medal for Postgraduate Researcher of the Year (FHUMS) Faculty of Humanities Outstanding Teacher Award Durham Law School Equality, Diversity and Inclusion Staff Award As co-Editor-in-Chief of Medical Law International, Dr. Romanis plays a significant role in shaping scholarly discourse in medical law. She actively mentors PhD students in reproduction and the law, and has secured research funding including a Wellcome Trust fellowship for her doctoral work. Her current research projects include work on biotechnology, gestation, and the law, supported by fellowships from Harvard University and the Future of Human Reproduction project. She has published two books: 'Early Medical Abortion, Equality of Access, and the Telemedical Imperative' (Oxford University Press, 2021) and 'Biotechnology, Gestation, and the Law' (Oxford University Press, 2025). Dr. Romanis is an active member of several research communities, including the University of Zurich's Human Reproduction Reloaded research programme. She collaborates with scholars across disciplines on reproductive ethics and law, contributing to a growing interdisciplinary field that bridges legal scholarship, bioethics, and clinical practice. Her teaching includes Advanced Issues in Criminal Law, Contemporary Issues in Biolaw, Contemporary Issues in Medical Law and Ethics, and Law and Social Justice.
Quentin Boehler is a Senior Research Fellow at the Multi-Scale Robotics Lab at ETH Zurich, specializing in magnetic actuation for medical robotics. His research focuses on the development and analysis of electromagnetic navigation systems and soft magnetic robots for medical applications. Education: M.S. in Mechatronics from INSA Strasbourg (2013) Ph.D. in Robotics from ICube laboratory, University of Strasbourg (2016) Boehler's research interests span across medical robotics, with a particular emphasis on magnetic actuation techniques for minimally invasive procedures. His work combines principles from robotics, electromagnetism, and medical engineering to develop novel systems for clinical applications. Key areas include electromagnetic navigation systems, soft magnetic robotics, MR-compatible devices, and variable stiffness mechanisms. His research has significant implications for improving precision and safety in medical procedures such as endoscopy, catheterization, and surgical interventions. Analysis of his publications shows a consistent focus on translating theoretical robotics concepts into practical medical applications, with particular attention to navigation precision and device functionality in clinical settings. Dr. Boehler's scientific contributions have been recognized with the Best Thesis Award from the research commission of the University of Strasbourg and the First prize at the 2016 Ph.D. thesis awards from GDR Robotique. His work has resulted in numerous high-impact publications in journals such as Science Robotics, Nature Communications, and IEEE Transactions on Robotics. As a key member of the Multi-Scale Robotics Lab at ETH Zurich, Boehler contributes to advancing the field of medical robotics through innovative research and development. His work bridges the gap between theoretical robotics and practical clinical applications, with a focus on creating technologies that can be translated to real-world medical settings. His research demonstrates strong interdisciplinary collaboration with medical professionals and engineers to address clinical challenges through robotic solutions.
Hervé Lissek is a Senior Scientist and research leader at École Polytechnique Fédérale de Lausanne (EPFL), working within the School of Engineering (STI) at the Laboratory of Wave Engineering (LWE). He serves as head of the Acoustic Group at the Laboratoire de Traitement des Signaux (LTS2) and holds teaching responsibilities in electroacoustics, audio engineering, and active noise control at both undergraduate and graduate levels. His research spans fundamental electroacoustic principles to practical applications in aircraft noise reduction and hearing assistance technologies. Dr. Lissek's research interests focus on bridging theoretical acoustics with practical engineering applications. His core expertise lies in electroacoustics, particularly loudspeaker and microphone design, acoustic transmission lines, and transducer arrays for sound reinforcement and acoustic imaging. He has pioneered work in active noise control, developing practical concepts for active noise cancellation and shunt loudspeakers techniques used as acoustic absorbers. His recent research has expanded into acoustic metamaterials, exploring their potential for acoustic cloaking capabilities and non-reciprocal sound propagation. His work uniquely combines expertise in structure-fluid interactions, sound propagation modeling in complex 3D fields, and psychoacoustic considerations of sound perception. Analysis of his recent publications reveals a strong focus on practical implementations of acoustic metamaterials and programmable electroacoustic systems, particularly for aircraft noise reduction applications. His work demonstrates a clear trajectory from fundamental research on electroacoustic resonators toward applied solutions for turbofan noise attenuation, with increasing emphasis on non-reciprocal acoustic phenomena and topological protection in sound wave propagation. The interdisciplinary nature of his work spans aerospace engineering, materials science, and human auditory perception. Dr. Lissek leads a research team of six members, including four PhD students, one post-doctoral researcher, and one engineer. His research is supported by numerous prestigious projects including European Union initiatives (SALUTE, SmartAnswer, ARTEM), Swiss National Science Foundation grants (Compressive Sensing), and industry collaborations (INTERACTS with Goldmund and Relec, BHA with Phonak). He serves as Switzerland's National Focal Point within the X-Noise EV European Network for aircraft external noise research. His laboratory facilities include specialized equipment for electroacoustic measurements, turbofan noise testing, and development of active acoustic liners under flow conditions.
Prof. Carmine Senatore is a renowned Professor of Physics at the University of Geneva (UNIGE), leading the Applied Superconductivity Group. He holds the position of Swiss Delegate to the International Energy Agency’s HTS Technology Collaboration Programme. His research focuses on superconducting materials for high-field magnets in particle accelerators, fusion energy, and medical applications. He collaborates with CERN, CHART, and projects like I.FAST and ARIES to advance HTS technologies. His group investigates electromechanical properties, thermal stability, and novel fabrication methods for superconductors like Nb3Sn and REBCO. Prof. Senatore teaches courses on superconductivity and general physics, and his work contributes to next-generation magnets for the Future Circular Collider (FCC) and muon colliders. Key collaborations include Princeton Plasma Physics Lab and Bruker BioSpin. His lab hosts PhD students and postdocs exploring HTS applications, with recent breakthroughs in magnet stability and material characterization. Education: Advanced degrees in physics, specialization in superconductivity (university details not explicitly stated in texts). Grants: Supported by EU Horizon 2020 (ISABEL, SuperEMFL), Swiss CHART initiative, and French SupraFusion program. Future Work: Development of 16T HTS magnets, muon collider magnets, and sustainable accelerator technologies. Research emphasizes applied superconductivity for energy, healthcare, and fundamental physics. His team’s innovations bridge material science and engineering for ultra-high-field applications.
Michael Bronstein is a Professor at Imperial College London, holding the Chair in Machine Learning and Pattern Recognition. He also serves as Head of Graph Learning Research at Twitter and leads ML research in Project CETI, a TED Audacious Prize-winning collaboration focused on understanding sperm whale communication. Professor Bronstein's research centers on Geometric Deep Learning , which aims to provide a unifying mathematical framework for neural network architectures like CNNs, RNNs, GNNs, and Transformers. His work spans multiple domains including: Computer vision Social science Biology Drug design Protein folding His groundbreaking research has led to applications in diverse fields, from understanding complex biological structures to developing new drug discovery methodologies. Bronstein approaches geometry in deep learning following the spirit of Felix Klein's Erlangen Programme, seeking unifying principles across disparate neural network architectures. Professor Bronstein has received numerous prestigious awards and honors: Royal Society Wolfson Research Merit Award Royal Academy of Engineering Silver Medal Five ERC grants Two Google Faculty Research Awards Two Amazon AWS ML Research Awards Member of the Academia Europaea Fellow of IEEE, IAPR, BCS, and ELLIS ACM Distinguished Speaker World Economic Forum Young Scientist Beyond academia, Bronstein is a serial entrepreneur who has founded multiple successful startups: Novafora Invision (acquired by Intel in 2012) Videocites Fabula AI (acquired by Twitter in 2019) He previously served as Principal Engineer at Intel Perceptual Computing and was a key developer of the Intel RealSense technology.