Rui Prada is a Full Professor at the Department of Computer Engineering, Instituto Superior Técnico, University of Lisbon. His research focuses on Artificial Intelligence , Game Development , and Human-Machine Interaction , with emphasis on socially intelligent agents and affective computing. His work explores Multi-Agent Systems , XR Testing , and Educational Game Design , particularly for neurodiverse populations. Recent publications highlight Procedural Content Generation , Human-AI Collaboration , and Social Power Dynamics in agent-based systems. Scientific contributions include the Best Poster Award and leadership in projects like PartiPlay and RAGE , advancing Inclusive AI and Game Technologies Marketplace frameworks.
Mayank Goel serves as an Assistant Professor in the Software and Societal Systems Department (S3D) at Carnegie Mellon University's School of Computer Science. His research bridges computer science and societal impact through practical sensing systems that leverage existing environmental devices for health monitoring and human-computer interaction without requiring hardware modifications. Dr. Goel specializes in mobile computing, signal processing, and machine learning to develop unobtrusive health technologies applicable to real-world scenarios. His core research areas include passive activity recognition for chronic disease management (particularly multiple sclerosis), privacy-preserving acoustic sensing, smartwatch-based clinical interventions for post-operative care, and equitable healthcare systems for global development contexts. He emphasizes end-to-end solutions through close collaboration with medical professionals and designers to ensure immediate deployability outside laboratory environments. Analysis of his 2024-2025 publications reveals a strong interdisciplinary focus spanning computer science, biomedical engineering, and clinical practice. Key trends include longitudinal digital phenotyping for neurological conditions, on-device privacy preservation in activity recognition, and multimodal procedural assistance systems. His work consistently addresses real-world challenges in sensor placement flexibility, user adoption barriers, and equitable access to medical technologies. No scientific awards were mentioned in the available documentation. Information regarding student advising, research grants, or laboratory affiliations was not specified in the provided materials, though his publication record indicates active collaboration with medical professionals and bio-engineers for clinical validation of health technologies.
Leif Sörensen is a researcher at the University of Hildesheim , affiliated with the Institute of Business Administration and Business Informatics within the Faculty of Mathematics, Natural Sciences, Economics and Computer Science . His work focuses on operations research and digital transformation in public transport systems, particularly examining flexible transport models, agent-based simulations, and geoinformation system integration. Core Affiliations Researcher (since 2023) - HAWK Hochschule für Angewandte Wissenschaft und Kunst, Holzminden Doctoral Researcher - Institute of Business Administration and Business Informatics, University of Hildesheim Former Student Assistant - TU Dresden and Max Planck Institute for Self-Organization Research Focus: Sörensen's research bridges transport policy , agent-based modeling , and data analytics . He investigates how digital transformation can enhance rural mobility through flexible public transport systems , with emphasis on contractual incentives for drivers and stochastic behavior prediction . His work spans both developed and developing economies , particularly analyzing informal transit systems in South Africa. Publication Trends: Recent articles demonstrate a strong focus on operations research in transport contexts, with 7/9 publications involving agent-based simulations and DRT (Demand-Responsive Transport) . Keywords cluster around urban mobility , digital transformation , and transport resilience , while sub-fields reveal expertise in dynamic routing algorithms , passenger acceptance metrics , and GIS-integrated transport planning . Key Projects Co-author on European Commission-funded transport safety modeling Participant in Smart Hybrid research initiative (44 co-publications) Contributor to International Transportation Economics Association conferences Academic Background: Holds degrees in International Economics (University of Göttingen) and International Business and Development (University of Bayreuth). Completed internships at UNECE Geneva and KfW Entwicklungsbank Pretoria , with fieldwork in South Africa and Japan .
Stefan Kowalewski serves as Professor of Embedded Software at RWTH Aachen University, leading the Chair of Embedded Software (Informatik 11) within the Department of Computer Science. His research spans critical domains including medical cyber-physical systems, automotive software, and industrial automation, with over 150 publications demonstrating sustained scholarly impact. Professor Kowalewski's work focuses on three interconnected research pillars: Embedded Systems Verification: Pioneering model checking techniques for PLC code, particularly addressing state space challenges in GRAFCET-based specifications Medical Cyber-Physical Systems: Developing safety-critical software for mechanical ventilation, extracorporeal membrane oxygenation, and ARDS diagnosis systems with strong clinical collaborations Automotive Software: Creating verification frameworks and safety architectures for automated vehicles through projects like UNICARagil Recent publications reveal an increasing integration of AI techniques with traditional verification methods, particularly for medical applications involving neonatal care and critical respiratory support. His 2024-2025 work shows particular emphasis on timing isolation in vehicle communication systems, middleware performance evaluation, and robust AI models for medical diagnosis. Professor Kowalewski maintains active collaborations with RWTH Aachen University Hospital's medical departments and automotive industry partners. His laboratory operates specialized facilities including the Cyber-Physical Mobility Lab for vehicle research and in-vivo testing setups for medical device validation. He has supervised numerous doctoral candidates, with recent students focusing on topics like ARDS classification algorithms, GRAFCET verification techniques, and safety architectures for software-defined vehicles. His educational contributions include developing remote teaching platforms for cyber-physical systems education.
Michael Benzaquen is a CNRS Research Scientist and accredited research director (HDR) based at École Polytechnique, where he founded and currently holds the Chair of Econophysics & Complex Systems. He is affiliated with LadHyX (UMR CNRS 7646), a research laboratory focused on hydrodynamics and complex systems at the intersection of physics, economics, and social sciences. Dr. Benzaquen's research spans multiple interdisciplinary fields, with primary interests in: Statistical physics of complex systems Hydrodynamics at interfaces Econophysics and quantitative finance Socio-physics and behavioral modeling Applications of physics to economics and social sciences Physical approaches to market microstructure and price formation His work demonstrates a unique methodology applying physical principles to understand complex phenomena in financial markets, social dynamics, and ecological systems. Dr. Benzaquen has made significant contributions to understanding market impact, price formation, and the statistical properties of economic systems from a physics perspective, while also maintaining strong research in fundamental fluid dynamics and interfacial phenomena. Analysis of Dr. Benzaquen's extensive publication record reveals a consistent trend toward interdisciplinary integration, with recent work increasingly bridging statistical physics, econophysics, and complex systems theory to address real-world problems. His publications span from fundamental research on ship wakes, liquid crystals, and thin films to applied studies in quantitative finance, ecological economics, and social dynamics, demonstrating remarkable breadth while maintaining methodological coherence through statistical physics approaches. As an accredited research director (HDR), Dr. Benzaquen supervises PhD students and postdoctoral researchers, leading an active research group focused on econophysics and complex systems. His group maintains strong collaborations across disciplines and regularly publishes in high-impact journals spanning physics, finance, and interdisciplinary sciences. The group's work is supported by various research funding sources enabling ambitious projects at the intersection of physics and social sciences. Dr. Benzaquen's laboratory at LadHyX brings together researchers from diverse backgrounds including physics, mathematics, economics, and computer science to tackle complex problems using quantitative approaches. His research has practical applications in financial market regulation, ecological conservation, and materials science, reflecting the real-world impact of his interdisciplinary methodology.
Dr. Giancarlo Pascali is a Conjoint Associate Professor at the School of Chemistry, UNSW Sydney , and Radiochemistry Team Leader at ANSTO's Camperdown cyclotron site. With a PhD in "Innovative Biomedical Technologies" from the University of Lecce (2004), he has held research positions at IFC-CNR , NIH , and GMP facilities in Milan and Pisa. His expertise spans radiochemical methods , radiopharmaceutical development , and microfluidic automation for nuclear medicine production. Education: PhD in Innovative Biomedical Technologies, University of Lecce (2004) BSc in Chemistry, University of Pisa (2001) Research interests focus on M 3 : Molecules, Methods, Machines . In Molecules , he designs radiopharmaceuticals for cancer , dementia , and inflammatory diseases . For Methods , his work explores photochemistry , electrochemistry , and mechanochemistry to label biomolecules with 18 F and other isotopes. Under Machines , he pioneers microfluidic systems for automated radiochemistry, emphasizing safety and process reliability . Editorial & Leadership Roles: Editorial Board Member of Nuclear Medicine and Biology , Contrast Media & Molecular Imaging , and Current Radiopharmaceuticals Executive Board of ANZSNM , ARTnet , and ASMI Asia-Oceania Director and iSRS2025 Chair for SRS
Dr. Kata Szita serves as an Assistant Professor of Multimedia at the School of Communications. Her expertise spans extended reality technologies, human-computer interaction, and the psychological impacts of virtual environments on human behavior and cognition. Her research delves deep into understanding how virtual and augmented reality experiences affect human-to-computer and human-to-human interactions. She investigates the cognitive and neural processes involved when users engage with virtual environments, particularly focusing on the use of avatars and XR-manipulated bodies. Her work also examines social behaviors in virtual spaces and the ethical dilemmas surrounding artificial digital agents and personal data collection in XR environments. Dr. Szita currently leads interdisciplinary and cross-sector research projects aimed at developing accessible and adaptive immersive technologies. Her collaborative efforts extend to studying cognitive processing of realism in mixed reality, virtual identities, and youth behavior in virtual environments. Her research approach combines theoretical frameworks with practical applications, contributing significantly to the understanding of immersive media experiences. Her extensive publication record from 2017-2025 demonstrates a consistent focus on emerging themes in XR research. The articles reveal an evolution from early smartphone-based viewing studies to sophisticated analyses of metaverse environments, presence measurement methodologies, and the psychological impacts of virtual identities. Her work bridges cognitive psychology, media studies, and technology development, establishing her as a leading voice in understanding human experience within digital and virtual contexts.
Federico Bonetto is a Professor at the School of Mathematics , Georgia Institute of Technology. His research spans equilibrium and non-equilibrium statistical mechanics , chaotic systems , and mathematical physics . Research Themes : Fermi surfaces in interacting fermion systems Chaos and large deviations in billiards Fourier's law in anharmonic oscillators Game theory applications to economic models Teaching : Regular instructor of courses like Partial Differential Equations , Linear Algebra , and Probability & Statistics since 2002. Publications : Over 40 works since 1995, focusing on Kac models, thermostatted systems, and statistical mechanics of coupled maps. Recent articles (2019-2025) explore non-equilibrium entropy decay , fermionic criticality , and monetary policy experiments .
Prof. Dr. Sebastian von Mammen is a tenured professor at the University of Würzburg's Institute for Computer Science, where he heads the Games Engineering research group and contributes to the Chair for Human-Computer Interaction. His group leads the Games Engineering academic program. Previously, he completed his habilitation (2012-2016) at the University of Augsburg's Chair of Organic Computing and was a postdoctoral fellow at the University of Calgary. His research spans: Real-Time Interactive Systems : Visual programming, immersion techniques, software engineering Interactive Simulations : Serious games for healthcare/logistics/construction Artificial Life : Self-organisation, adaptive systems, evolutionary computation Artificial Intelligence : Agent-based modeling, procedural content generation Recent publications (2023-2025) demonstrate strong focus on: Virtual reality applications in education (femtoPro optics simulator, BrainBuilder neuroanatomy) Healthcare technology platforms (VIA-VR for medical serious games) Game mechanics analysis (Match-3, Jump'n'Run flow) AI-driven emotion recognition and interactive systems Computational modeling of biological systems He leads the Games Engineering research group and previously participated in the Evolutionary and Swarm Design group (Calgary) and LINDSAY project. His lab develops VR simulations for scientific training and serious games applications.
Prof. Sven Rady is a leading academic at the Department of Economics at the Hausdorff Center for Mathematics , University of Bonn. He serves as a Hausdorff Chair for Mathematical Economics and Deputy Spokesperson for Collaborative Research Centre TR224. Research Interests include dynamic decision problems, equilibrium models, optimal learning, and strategic experimentation, with significant contributions to information economics and stochastic game theory. His work bridges mathematical modeling with economic theory, focusing on markets, learning dynamics, and policy implications. Scientific Awards include Fellow of the Econometric Society (2023) Teaching Awards at the University of Bonn (2021, 2022) CESifo Outstanding Referee Award (2013) Teaching Award of the State of Bavaria (2005) Key Collaborations involve interdisciplinary research at the intersection of economics and mathematics. He leads projects in the CRC TR224 and contributes to HCM initiatives on probabilistic modeling and information economics.
Julie Battilana is the Joseph C. Wilson Professor of Business Administration at Harvard Business School and the Alan L. Gleitsman Professor of Social Innovation at Harvard Kennedy School. She founded the Social Innovation and Change Initiative at Harvard Kennedy School and teaches Power and Influence in the MBA program. Her research spans organizational behavior, social entrepreneurship, and hybrid organizational forms. Education: B.A. in sociology and economics, M.A. in political sociology, M.Sc. in organizational sociology and public policy from École Normale Supérieure de Cachan, joint Ph.D. in organizational behavior from INSEAD and École Normale Supérieure de Cachan. Research Interests focus on divergent organizational change, hybrid organizing (social enterprises combining nonprofit and corporate models), power dynamics in institutions, and gender in organizational contexts. She examines how organizations balance social and financial goals. Article Trends show her expertise in hybrid governance (2024), sustainable product development (2023), workplace democracy (2022), ethical power use (2021), and foundational studies on social enterprises. Her work addresses institutional resistance (2012), network strategies (2013), and gender dynamics (2017). Scientific Honors include the George R. Terry Book Award (2022), Academy of Management Fellowship (2022), and multiple teaching awards (Charles M. Williams 2019, Apgar 2013). She was named a Chevalier dans l'Ordre des Palmes Académiques (2019). Teaching & Practice involves Harvard’s doctoral program, executive education, and case development. She studies network strategies for change agents and institutional entrepreneurship frameworks. Labs & Initiatives include the Social Innovation and Change Initiative at Harvard Kennedy School and contributions to the Democratizing Work Initiative, which she co-launched with global scholars.
Young Ook Kim is a Professor at the Department of Architecture, Sejong University. His research focuses on spatial morphology, space syntax, and urban design, with applications in pedestrian behavior analysis and urban regeneration. 1999 Ph.D., University College London 1994 M.S., University of Colorado, Denver 1986 B.S., Yonsei University His work explores the relationship between spatial layouts and human behavior, particularly in crowded environments. Recent studies include predictive modeling for crowd accidents and agent-based simulations for subway station design. Key methodologies involve space syntax and computational modeling. Latest research trends emphasize pedestrian safety, urban walkability, and regional spatial characteristics, leveraging space syntax tools and agent-based simulations to analyze crowd dynamics and urban configurations. He has collaborated extensively on projects related to spatial configuration and urban planning, with contributions to conferences like the International Space Syntax Symposium. His h-index is 7, with 13 Scopus citations on recent works. 2024: Crowd accident risk prediction, improved agent simulations, and regional walking behavior studies 2023: Pedestrian behavior analysis in Seoul's Gangnam Station 2022: Mega-shelter layout planning and user-behavior studies
Genya Ishigaki is an Assistant Professor in the Department of Computer Science at San José State University's College of Science. His research focuses on network slicing, combinatorial optimization, and reinforcement learning, addressing resource allocation challenges in next-generation telecommunications networks. Ph.D. in Computer Science, The University of Texas at Dallas, 2021 M.S. in Computer Science, The University of Texas at Dallas, 2021 M.S. in Engineering, Soka University, Japan, 2016 B.S. in Engineering, Soka University, Japan, 2014 Dr. Ishigaki's work explores adaptive network control through machine learning and combinatorial optimization, including elastic network slices , explainable AI , and federated learning . His research addresses critical tradeoffs in resource utilization versus capacity reservation for future demands. Recent publications demonstrate his focus on network automation (2025), information diffusion (2025), federated learning platforms (2024), and DDoS attack detection (2024). Articles span network security , AI-driven optimization , and social network dynamics . NSF Student Travel Grant (2019) Shigeta Education Foundation Ph.D. Scholarship (2019-2021) Outstanding TA Award (2019) JASSO Ph.D. Scholarship (2016-2019) NEC C&C Foundation Travel Grant (2015) He leads the Interconnect Lab, which investigates accountability in autonomous network operations and edge computing-oriented federated learning. His grants include SJSU's RSCA Seed Grant (2022-2023) and University Grant Academy Award (2022).
Dr. Amir K. Miri is an Assistant Professor in the Department of Biomedical Engineering at New Jersey Institute of Technology (NJIT) and Director of the Advanced Biofabrication Lab. His work focuses on additive manufacturing for biomedical applications, particularly bioprinting technologies for tissue regeneration and disease modeling. After receiving his PhD in Mechanical Engineering from McGill University (2013) and completing postdoctoral training at the MIT-Harvard Division of Health Sciences and Technology, he began his academic career at Rowan University before joining NJIT. PhD, Mechanical Engineering, McGill University (2013) MSc, Mechanical Engineering, Sharif University of Technology (2007) BSc, Mechanical Engineering, Iran University of Science and Technology (2005) Dr. Miri's research spans advanced bioprinting platforms, including multi-axial extrusion, handheld printers, and digital light projection systems. His work emphasizes the development of biomimetic models for cancer, vocal fold tissue, and vascular systems, with a particular focus on microfluidic integration and material optimization for bioprinting. He has pioneered low-cost prototyping solutions for resource-limited settings and explored the role of extracellular matrix mechanics in cellular behavior. Key trends in his publications include 3D bioprinting for tumor modeling, microfluidic device applications in drug screening, and the use of hydrogels like GelMA in cancer research. His group has also advanced acoustic metasurface technology for biomedical wave manipulation and investigated the interplay between biomaterial rheology and bioprinting resolution. Dr. Miri leads a research team at NJIT focused on biofabrication and microfluidics, though specific student advisees are not listed in the provided information. His lab emphasizes interdisciplinary collaboration, particularly in the development of multi-material and multi-scale tissue constructs.
Professor Farookh Hussain is a distinguished academic at the School of Computer Science , University of Technology Sydney , specializing in Artificial Intelligence , Cloud Computing , and Software Engineering . His research spans diverse sectors including agriculture, manufacturing, healthcare, and transportation. Affiliated with the Australian Artificial Intelligence Institute (AAII) , he leads impactful work in business intelligence and carbon credit systems. Key research areas: AI applications, blockchain for provenance, carbon credit analytics Active in Masters/PhD supervision and cloud computing education Research Highlights : Developed KACINO framework for carbon dynamics modeling Created hybrid cybersecurity frameworks for supply chain risk management Advanced chatbot dialogue breakdown solutions through systematic reviews Proposed hypercomplex knowledge graph recommenders Published extensively on carbon credit price prediction and blockchain storage methods Contributions to water demand forecasting and collaborative robotics adoption Grant Activities : Secured funding from Hampton Capital Asset Management , Innovation Connections , and Science and Industry Endowment Fund Projects include LLM-driven text-to-SQL conversion , blockchain for melanoma data , and AI for storm water management