Dr. Kaya de Barbaro is an Associate Professor in the Department of Psychology at the University of Texas at Austin (College of Liberal Arts). She holds a Ph.D. from the University of California San Diego. Her research focuses on bridging computer science and developmental/clinical psychology, particularly maternal mental health and infant social-emotional development. She directs the Daily Activity Lab, which uses mobile/wearable sensors and machine learning to analyze real-world interactions, aiming to develop just-in-time interventions for new mothers. Key research areas include maternal-infant dynamics, physiological synchronization, and the impact of environmental chaos on development. She has pioneered methods for analyzing high-density data, such as Granger causality and machine learning algorithms to detect behaviors like crying and holding. Recent work emphasizes leveraging ecological momentary assessment surveys and 24-hour LENA audio recordings to understand proximal mechanisms of development. Dr. de Barbaro teaches Psychology 333D (Introduction to Developmental Psychology) and has developed curricula for both in-person and online formats. She is actively involved in training students through the Eureka program at UT Austin. Her lab collaborates on tools like chatbots for postpartum mental health and has published extensively on sensor-based methodologies in developmental science.
Eric Schneider is a Professor of Economic History at the London School of Economics and Political Science (LSE), where he has worked since 2015. He serves as Co-Director of the LSE Historical Economic Demography (HED) Group and is a Research Fellow at the Centre for Economic Policy Research (CEPR). His research focuses on health and historical economic demography, including children’s health and growth, early life health outcomes, and fertility differentials in early modern England. He holds a BA in History from the University of Puget Sound, an MPhil in Economic and Social History from the University of Oxford, and a PhD from Nuffield College (Oxford). His research spans topics such as child stunting, nutritional status, and the long-run effects of historical health shocks. Notable projects include analyzing child growth patterns across global contexts and studying the impact of the Second World War on Japanese children’s health. His work frequently employs interdisciplinary approaches, combining historical data with demographic and economic methodologies. Recent publications include studies on smallpox case fatality rates, child health in London’s Foundling Hospital, and the effects of war-induced nutritional stress in Japan. His articles frequently appear in journals like the Journal of Economic Surveys , Population and Development Review , and Explorations in Economic History . Dr. Schneider is involved in academic networks such as the London Universities Population Seminar and teaches courses on economic history, health history, and population dynamics. His work contributes to understanding how historical health and demographic trends shape long-term economic growth and societal development.
Laur Järv is an Associate Professor in Theoretical Physics at the University of Tartu, Faculty of Science and Technology, Institute of Physics. He has been serving as Associate Professor since 2021 and is currently the Head of the Laboratory of Theoretical Physics (since 2019). His academic career at the University of Tartu spans over 20 years, with progressive roles from Post-Doc to his current position. Dr. Järv received his education at the University of Tartu (B.Sc. in Fundamental Physics, 1996; M.Sc. in Theoretical Physics, 1998) and completed his Ph.D. in Mathematical Sciences at the University of Durham in 2002. His doctoral research focused on "The enhancon mechanism in string theory" under the supervision of Clifford V Johnson. Dr. Järv's primary research interests lie in gravitational physics and cosmology, with particular focus on modified theories of gravity including teleparallel gravity, scalar-tensor theories, and nonmetricity-based approaches. His work explores the cosmological implications of these theories, including inflationary models, black hole solutions, and gravitational wave propagation. His research bridges theoretical physics with observational cosmology, addressing fundamental questions about the nature of gravity and the evolution of the universe. His publication record demonstrates a strong focus on geometric foundations of gravity, with numerous high-impact papers in leading journals like Physical Review D and Classical and Quantum Gravity. Recent work shows increasing emphasis on alternative formulations of gravity (teleparallel, symmetric teleparallel) and their cosmological applications, often collaborating with international researchers in the field. Estonian National Research Award in exact sciences (2020) for the cycle of works "Extended geometric theories of gravity" with Manuel Hohmann and Margus Saal University of Tartu Badge of Distinction (2021) Best teaching staff in the UT Institute of Physics, recognized by students (2024) Letter of recognition for supervision of Joosep Lember's award-winning student work (2022) Dr. Järv has been actively involved in academic mentoring, serving as a supervisor for student research projects and as an opponent for PhD defenses internationally. He has organized multiple international conferences on gravitational physics in Tartu, establishing the university as a hub for research in modified gravity theories. As Head of the Laboratory of Theoretical Physics, he leads a research group focused on geometric foundations of gravity and cosmological applications. Dr. Järv's laboratory has become a recognized center for research on alternative gravity theories, particularly through the organization of the biennial "Geometric Foundations of Gravity" conference series since 2017, which has attracted leading researchers from around the world to Tartu.
Jan Herbst is a Professor of Music at the University of Huddersfield and Director of the Centre for Research in Music and its Technologies. His academic journey includes multiple doctorates (PhD, Dr. habil.) from Leuphana University Lüneburg and research expertise in popular music studies, music production, and systematic musicology. He leads AHRC-funded projects such as 'Heaviness in Metal Music Production' and 'Songwriting Camps in the 21st Century.' His work bridges practical music production and theoretical research, with over 80 publications including books like The Cambridge Companion to Metal Music and Heaviness in Metal Music Production . Herbst’s research focuses on metal music aesthetics, record production techniques, and the cultural dimensions of music technology. He has held roles at German and Swiss universities, including teaching guitar performance and music production. His editorial roles include the Cambridge Companions series and journals like Metal Music Studies . Current projects explore blockchain in music, gear acquisition syndrome, and extreme metal vocal techniques. His academic affiliations include the IASPM UK & I executive committee and editorial boards for major musicology publications. Herbst actively engages with industry through collaborations with producers and performers, maintaining a balance between academic rigor and practical music creation.
Jacky Bourgeois is an Assistant Professor of Data-Centric Design at Delft University of Technology's Faculty of Industrial Design Engineering (IDE), leading the Data-Centric Delft Design Lab. His work bridges Human-Computer Interaction, Data Science, and Participatory Design, focusing on methods like data donation to empower collaborative data exploration. He holds a computer science background, previously researching ubiquitous technologies for domestic energy practices of 'energy farmers' (solar households). Key projects include the PROMISE study on patient-led oncological care and the Data Donation initiative promoting ethical data practices. Education: Background in Computer Science; academic focus on sustainable design engineering and IoT. Teaching includes courses like 'Data-Centric Design for...' (2024) and 'Digital Product Development' (2023). Research Interests: Data as subjective inquiry material, data intimacy, data commons, and human-data interaction in home contexts. Notable contributions include PAIRcolator for collaborative data reflection and Tangi for 360° video insights. Awards include Best Paper at CHI 2025 and DIS '24 Best Paper. Grants & Collaborations: NWO-funded research on hospital sounds (2024), IoT Rapid Proto Labs for industry-academia partnerships, and ancillary role as a scientific employee at The Open University (2025–2027). Labs & Teams: Director of the Data-Centric Delft Design Lab; collaborates with the HCI Data & Design SIG. Current projects address ethical frameworks for data donation and patient-centered healthcare systems.
Benedikt Bünz is an Assistant Professor of Computer Science at New York University's Courant Institute of Mathematical Sciences. He is also a co-founder and chief scientist of Espresso Systems, where he applies his research expertise to real-world blockchain solutions. His academic work bridges theoretical cryptography with practical blockchain implementations, focusing on enhancing privacy, security, and usability of decentralized systems. Dr. Bünz's research centers around applied cryptography, consensus mechanisms, and game theory as they relate to cryptocurrencies. His work spans zero-knowledge proofs, verifiable delay functions, secure multi-party computation, and privacy-preserving protocols. He has made significant contributions to Bulletproofs, a zero-knowledge proof system deployed on blockchains like Monero, and pioneered research in verifiable delay functions which are now part of Ethereum 2.0's design. His recent work focuses on recursive proof systems, accumulation schemes, and efficient verification techniques for blockchain scalability. His publication record shows a consistent progression from foundational cryptographic primitives to practical blockchain implementations. Recent work demonstrates increasing sophistication in recursive proof systems (ProtoStar, HyperPlonk), novel accumulation techniques (ARC, DewTwo), and foundational work on randomness generation (VDFs). His research consistently bridges theoretical cryptography with real-world blockchain applications, resulting in protocols that are both theoretically sound and practically implementable across multiple blockchain platforms. Dr. Bünz actively contributes to the academic community through teaching and mentorship. He teaches courses on cryptography of blockchains and computer security at NYU, providing students with hands-on experience in blockchain security and cryptographic protocols. His industry engagement through Espresso Systems demonstrates his commitment to translating academic research into practical solutions for the blockchain ecosystem.
Professor Peter F. Driessen is a faculty member in the Department of Electrical and Computer Engineering at the University of Victoria, with a cross-appointment in the School of Music. He holds a BSc and PhD from the University of Victoria and is a Professional Engineer (PEng). His research focuses on communication systems, signal processing, control, and interdisciplinary projects in computer music and wireless technologies. Key areas include audio/video signal processing, radio propagation, sound recording, and multimedia systems. He leads the University of Victoria Propagation Laboratory, which explores radio wave propagation and Amateur radio integration with engineering education. His work spans theoretical research and applied projects like ECOSat satellite systems, software-defined radio (SDR), and innovative musical instruments such as the Radio Drum. He supervises undergraduate and graduate projects in these domains through ELEC 499 courses. Notable contributions include the APEGBC Editorial Board Award for Best Paper (2002) and patents in wireless networking and signal processing. His teaching includes courses in signal analysis and electromagnetics, and he collaborates on interdisciplinary programs like the Music/Computer Science degree. Education: BSc in Electrical Engineering, University of Victoria PhD in Electrical Engineering, University of Victoria Research Interests: Audio and video signal processing for music and media Software-defined radio and Amateur radio technologies Satellite communication and ground station development Gesture-based interfaces and musical instrument design Error mitigation in streaming audio/video Optical and microwave-photonic systems Labs & Collaborations: Propagation Laboratory (radio wave research) UVic Experimental Radio Group (Amateur radio club) UVic Satellite Design Team (ECOSat projects) UVic Centre for Aerospace Research Grants & Awards: APEGBC Editorial Board Award (2002) Multiple US patents in wireless systems and signal processing
Daniel Recasens is a Full Professor in the Department of Catalan Philology at the Faculty of Arts, Autonomous University of Barcelona, where he has been a permanent faculty member since 1985. He is also affiliated with the Institute for Catalan Studies as a researcher. His academic work centers on experimental phonetics and phonology, with a focus on Romance languages, particularly Catalan. Research Interests: Daniel Recasens specializes in Experimental Phonetics , Phonology , Sound Change , and Phonetic and Phonological Universals . His research investigates articulatory and acoustic aspects of speech production, including coarticulation, assimilation, blending, and the phonetic motivations behind diachronic sound changes in Romance languages. He employs advanced techniques such as ultrasound imaging, electropalatography (EPG), and acoustic analysis to study consonant clusters, vowel-consonant interactions, and the evolution of phonological systems. Scientific Publications and Trends: His recent publications (2020–2025) reflect a consistent focus on the articulatory and acoustic foundations of phonological processes. Key themes include dynamic blending in fricative sequences, tongue configuration in stop-liquid clusters, and the phonetic causes of palatalization and vowel changes. His work combines empirical data with theoretical models such as the Degree of Articulatory Constraint (DAC) model, contributing significantly to laboratory phonology and historical linguistics. Scientific Awards: Member, Academy of Europe (Academia Europaea), 2018 Advising and Research Grants: Daniel Recasens has mentored several doctoral and postdoctoral researchers, including Clara Isabel Rodriguez Casado, Aina Espinosa, and Fernando Sánchez-Miret. While specific grant details are not listed, his extensive publication record and leadership in experimental phonetics suggest sustained research funding and collaborative projects in phonetic and phonological research. Labs and Research Teams: He is associated with the Center for Theoretical Linguistics (CLT) at the Autonomous University of Barcelona, a research group dedicated to theoretical and experimental studies of language. His work often involves collaboration with phonetics laboratories and international scholars in the fields of articulatory phonetics and historical linguistics.
Mattias Heldner is Professor of Phonetics and Head of Department at the Department of Linguistics, Stockholm University. He also serves as Director of the Phonetics Laboratory where he has developed advanced recording facilities for breathing movements and voice quality dynamics in conversation. Dr. Heldner received his PhD in Phonetics from Umeå University in 2002, completed a postdoc at TeliaSonera Sweden in 2005, became Docent in Speech Communication at KTH Royal Institute of Technology in 2007, and was appointed Professor in Phonetics at Stockholm University in 2011. His research focuses on communicative behavior relevant for turn-taking in conversation and signaling of prosodic functions such as prominence and boundaries. His work spans multiple dimensions of speech communication, including: Respiratory patterns and their role in conversation flow Voice quality dynamics as turn-taking cues Prosodic functions in spontaneous speech Physiological constraints in verbal communication Acoustic properties of child speech development Neural correlates of lexical stress Dr. Heldner's recent publications demonstrate how respiratory signals provide crucial information for predicting speech activity and managing turn-taking. His research combines physiological measurements with acoustic analysis to uncover hidden aspects of conversational organization, particularly the relationship between breathing patterns and speech timing. As an educator, Dr. Heldner has taught phonetics courses for Speech and Language Pathology students at Karolinska Institutet, University of Gothenburg, and Umeå University. He currently supervises one PhD student and has successfully supervised two PhD theses to completion. Dr. Heldner has held several Swedish research grants and served as one of the Technical Program Chairs for Interspeech 2017 in Stockholm. His Phonetics Laboratory has developed innovative systems like RespTrack for measuring respiratory movements during speech with high experimental control.
Suresh Krishna is an Associate Professor in the Department of Physiology at McGill University's Faculty of Medicine. His research focuses on the neurophysiological and computational basis of sensory processing, attention, and eye movements, with applications to brain-machine interfaces and human health. He works with human subjects, non-human primates, and open datasets using in-vivo electrophysiology, eye-tracking, and computational modeling. Research interests include visual attention mechanisms, saccadic eye movement control, neural coding of motion perception, and the interplay between attention and decision-making. His work bridges basic neuroscience with translational applications such as improving neural prosthetics and understanding perceptual disorders. Recent work highlights how neural remapping processes during saccades underlie spatial perception, and how attention modulates neural activity patterns in visual cortex. The lab's publications reveal critical insights into the temporal dynamics of attentional shifts and their neural substrates, particularly in areas MT and MST. Dr. Krishna's team also investigates auditory temporal processing in the inferior colliculus, exploring correlations between neuronal responses to sound modulation. Their findings contribute to understanding how sensory systems encode temporal information across modalities. Research is conducted in the M2B3 Lab (http://m2b3.lab.mcgill.ca), which integrates experimental and computational approaches to study brain mechanisms underlying perception and action. No specific awards are listed, but ongoing work involves major contributions to primate neurophysiology and translational neuroscience.
James T. Enns is a Professor and Distinguished University Scholar in the Department of Psychology within the Faculty of Arts at the University of British Columbia. His research primarily focuses on the role of attention in human vision, with secondary interests in developmental psychology and human-machine interaction. Dr. Enns' research interests span perception, attention, vision, cognition, development, and human-machine interaction. His work explores how the human mind selects information, with particular emphasis on visual attention mechanisms. His laboratory research investigates the fundamental processes of visual perception and how attention modulates these processes across different contexts and developmental stages. Analysis of Dr. Enns' publication record reveals consistent engagement with visual perception, attentional mechanisms, and cognitive processing. His research demonstrates expertise in both theoretical frameworks and experimental methodologies related to visual attention, with applications spanning basic cognitive science to potential implementations in human-computer interaction systems. His work often bridges theoretical cognitive psychology with practical applications. Canadian Society for Brain, Behaviour and Cognitive Science Donald O. Hebb Distinguished Contribution Award (2013) Distinguished University Scholar, UBC (2004) Robert E. Knox Master Teaching Award (2004) Royal Society of Canada Fellow (2002) Killam Faculty Research Prize (1994) Killam Faculty Research Fellowship (1993) Society of Experimental Psychology Fellow Dr. Enns has served as Editor for the Journal of Experimental Psychology: Human Perception and Performance, and as Associate Editor for Psychological Science, Consciousness and Cognition, and Visual Cognition. His research has been supported by grants from NSERC, the Canadian Foundation for Innovation, the Australian Research Council, BC Health, and Nissan. He has authored textbooks on perception, edited research volumes on the Development of Attention, and published numerous scientific articles on vision, attention, and cognitive science. Dr. Enns is currently accepting graduate students and continues to mentor the next generation of cognitive scientists. Dr. Enns leads the UBC Vision Lab, which focuses on how the human mind selects information. The lab conducts research on visual attention, perception, and cognitive processes using a variety of experimental methodologies.
Dr James Lamb is a Lecturer in Digital Education at the Moray House School of Education and Sport, University of Edinburgh, where he is affiliated with the Institute for Education, Community and Society (IECS) and Edinburgh Futures Institute. He teaches on the MSc in Digital Education and MSc in Education Futures programs, and serves as course organiser for several key courses including 'Learning Spaces and Digital Technologies', 'The Future of Learning Organisations', and 'Education and Digital Cultures'. As an active researcher, he contributes to the Centre for Research in Digital Education and leads the Hybrid Pioneers research group. Dr Lamb's educational background includes a PhD from the University of Edinburgh (funded by ESRC), an MSc with distinction from the University of Edinburgh, and a BA degree with distinction from Edinburgh Napier University. His doctoral research focused on 'Space, Sociomateriality, Sound: the Learning Spaces of Higher Education,' reflecting his longstanding interest in the relationship between physical environments and educational experiences. Dr Lamb's research primarily investigates the relationship between learning spaces and digital technologies, with particular attention to how sound features within educational contexts and how multimodal approaches can enhance teaching and assessment. His work bridges theoretical frameworks from postdigital studies, sociomaterial theory, and spatial analysis to examine how digital technologies transform physical and conceptual learning environments. He has developed innovative methodologies for studying learning spaces, including the use of 'digital multimodal postcards' that capture both visual and auditory dimensions of educational experiences. His research is characterized by a strong commitment to practical applications that can inform educational design and improve student learning experiences in both physical and digital settings. Dr Lamb's extensive publication record demonstrates a clear evolution toward increasingly sophisticated explorations of postdigital learning spaces. His recent work integrates concepts from architecture, music, and mobility studies to create a more holistic understanding of how learners inhabit and transform educational environments. A notable trend is his growing focus on sustainability, equity, and well-being within learning space design, reflecting broader shifts in educational priorities toward more humane and socially responsible approaches to technology integration. Dr Lamb actively supervises PhD students Edward Martin and Nick Hood, and is open to supervising projects related to learning spaces, sound in education, and multimodal teaching and assessment in higher education. His supervision approach emphasizes connecting theoretical frameworks with practical educational applications, encouraging students to develop innovative methodologies for investigating complex educational phenomena. Dr Lamb leads the Elektronisches Lernen Muzik project, which explores the relationship between music and learning, and is a co-author of the influential Manifesto for Teaching Online. He is also a key member of the Hybrid Pioneers research group, which investigates the challenges and opportunities of hybrid teaching and learning environments. These initiatives reflect his commitment to exploring the intersections between traditional educational practices and emerging digital possibilities.
Mathias Funk is an Associate Professor in the Industrial Design department at Eindhoven University of Technology (TU/e), leading the Things Ecology lab. His research focuses on designing with data and systems behavior, particularly in IoT and medical technology contexts. He co-founded UXsuite GmbH and developed the OOCSI communication framework. With a PhD in Electrical Engineering from TU/e (2011), Funk has held academic roles since 2013, including postdoctoral positions in Electrical Engineering and Industrial Design. He teaches courses like 'Data-enabled design' and supervises projects on AI, data foundry, and OOCSI applications. His work bridges engineering and design, addressing sustainability and human values through systemic design approaches. Education: PhD in Electrical Engineering, TU/e (2011) Computer Science background from RWTH Aachen Postdoc at TU/e's Electrical Engineering and Industrial Design departments Research Interests: Data-driven design methodologies, IoT systems, medical technology innovation, sustainable design practices, and interactive systems for musical expression. Recent work emphasizes telemonitoring efficacy in heart failure care and federated learning applications. Awards: Best Paper Award (2014) Honorable Mention (2021) Grants/Projects: Leading initiatives like MEDICAID (medtech solutions), ACACIA (interpretable AI), and Data-Driven Servitizing in Professional Printing. Active in clinical workflow prototyping and cardiovascular disease detection projects. Lab Activities: Manages the Things Ecology lab, focusing on systemic design challenges in smart ecosystems. Collaborates internationally through spin-offs and visiting lectureships.
Mark Bocko is a Distinguished Professor of Electrical and Computer Engineering at the University of Rochester, affiliated with the Hajim School of Engineering & Applied Sciences. He holds roles as Director of the Center for Emerging and Innovative Sciences (CEIS) and Director of Audio & Music Engineering. He earned his PhD in Physics from the University of Rochester in 1984, focusing on gravitational wave detectors. His research spans audio signal processing, sensors, superconductivity, and quantum computing. Notable contributions include flat-panel loudspeaker development, non-contact ECG sensors, and quantum coherence studies in Josephson junctions. Research interests include audio and acoustic signal processing, computer audition, and sensor technologies. His work integrates interdisciplinary approaches, combining electrical engineering, physics, and computer science. Awards include the 2012 Goergen Award for Teaching and Mercer Brugler Distinguished Teaching Professor (2008–2011). Recent publications address modal crossover networks for loudspeakers, vibrational touch sensing, and room impulse response modeling. He has advised PhD students on topics like spatial audio rendering and musical vibrato analysis. His labs focus on advancing audio engineering and smart sensor systems through collaborative industry partnerships.
Steven Rings serves as Associate Professor in the Department of Music and Director of Professional Development at the University of Chicago. His scholarship centers on popular music analysis, vocal studies, and transformational theory frameworks, with significant contributions to understanding Bob Dylan's work and Black experimental music traditions. Education: PhD in Music, Yale University (2006) Rings' research explores the intersection of musical cognition, cultural context, and performance practice. His work bridges theoretical musicology with vernacular traditions, examining vocal expression across genres from Dylan's protest songs to Albert Ayler's free jazz. Current projects investigate tonal hearing models and the relationship between song structures and recorded performances. His publications reveal consistent focus on analytical frameworks for popular music, particularly transformational approaches to vocal delivery and historical performance practices. Rings frequently connects technical music theory with broader cultural narratives, especially regarding racial identity in experimental music. Scientific Awards: 2014 Outstanding Publication Award (SMT Popular Music Interest Group) Society for Music Theory Award for 'Tonality and Transformation' Society for Music Theory Award for 'Oxford Handbook of Critical Concepts in Music Theory' Rings secured Mellon Foundation funding for a collaborative project with Wilco drummer Glenn Kotche, reimagining musical categories of voice and groove. He chairs the University of Chicago Society of Fellows and co-founded City Elementary, a therapeutic school in Hyde Park. His teaching spans undergraduate theory courses, graduate seminars on Black experimental music, and College Core musical interpretation classes. Additional roles include series editor for Oxford Studies in Music Theory and former Professor of Guitar at Portugal's Conservatório Regional de Angra do Heroísmo, where he performed extensively as a classical guitarist prior to his music theory career.