Prof. Dr. Amelie Hagelauer holds a professorship in Micro- and Nanosystem Technology at the TUM School of Computation, Information and Technology, Technical University of Munich. Her work focuses on advanced electronics and systems integration across quantum computing hardware, resistive memory technologies, and high-frequency RF systems. She has contributed to innovations in superconducting qubit readout architectures, multi-level RRAM designs, and 3D-integrated CMOS-compatible quantum devices. Research interests span quantum hardware design, nanoelectronic devices, RF front-end systems, and emerging memory technologies. Her work emphasizes practical implementation challenges such as low-power operation, high-voltage handling in RF switches, and wafer-scale fabrication processes. Recent projects include D-band radar systems, energy-efficient 60 GHz transceivers, and antenna tuning solutions for 5G applications. Publications from 2023-2025 showcase advancements in resistive switching device characterization, mitigation of TLS losses in superconducting qubits, and reconfigurable AI accelerators using RRAM-based digital twins. Her work bridges theoretical device physics with practical integrated circuit design, addressing scalability and reliability in next-gen electronics. Awards and grants: None explicitly listed in provided texts. Active collaborations include EU-funded projects on quantum computing platforms and TUM's Electronic Photonic Integration initiatives. Leads research teams in microsystem technology with emphasis on cross-disciplinary approaches combining CMOS processes, MEMS, and quantum engineering.
Elly Konijn is a Full Professor at the Faculty of Social Sciences and Humanities and Network Institute of Vrije Universiteit Amsterdam, holding the Fenna Diemer-Lindeboom Endowed Chair. As chair of the Media Psychology Amsterdam program, her work bridges media psychology, social robots, affective processing, and adolescent media use . Research Pillars : Relating to media figures, virtual humans, and social robots Media-based reality perceptions and moral standards Adolescent media effects (cyberbullying, video games, body image) Recent Publications explore emotional bonding with robots, narrative complexity in film, and media's impact on adolescent cognition. Her 2025 Communication Theory article introduces a framework for human-artificial others relationships. Scientific Recognition : KNAW/NWO Eurekaprijs (2015) Computable Award (2021) Network Institute Competitive Research Funding (2025) She supervises 16 PhD students and leads projects like ROBOT-BOND (ERC Advanced Grant 2025-2029) and Communicating with Social Robots (2020-2025). Her documentaries (e.g., Alice Cares ) translate research into public discourse.
Subir Biswas is a Professor in the Department of Electrical and Computer Engineering (ECE) at Michigan State University (MSU), part of the College of Engineering. His research focuses on wireless networking, low-power protocols, vehicular networks, and health monitoring systems, conducted through the NeEWS laboratory. He holds a Ph.D. from the University of Cambridge and degrees from Jadavpur University. Education: Ph.D., Computer Engineering, University of Cambridge (1994) M.S., Electrical Engineering, Jadavpur University (1989) B.S., Electrical Engineering, Jadavpur University (1987) Professional Experience: Professor, MSU ECE (2011–present) Associate Professor, MSU ECE (2003–2010) Research interests include traffic analysis firewalls, pricing calculus for social wireless networks, low-energy green networking, and ultrasound-based sensor systems . He leads the NeEWS lab, exploring embedded systems and network middleware. His work spans IoT, cybersecurity, and biomedical applications like wearable sensors for autism monitoring and hydration tracking. Publications emphasize innovative protocols (e.g., pulse position coding) and machine learning for network optimization. Collaborations include NSF-funded projects and industry partnerships (e.g., Tellium Optical Systems).
Professor Joy Y. Zhang is a British sociologist and medical doctor specializing in global science governance, epistemic justice, and the sociology of risk. She holds the position of Professor of Sociology and Founding Director of the Centre for Global Science and Epistemic Justice at the University of Kent. Previously affiliated with institutions like LSE and EHESS (Paris), her work bridges sociology, science policy, and global development. She has advised bodies such as the Royal Society and China’s National Health Commission, and her research emphasizes decolonizing knowledge systems and advancing science diplomacy. Education: PhD in Sociology, London School of Economics (2010) MSc in Sociology, LSE (2006) Medical Degree from Peking University Health Science Centre Research Focus: Explores transnational governance of emerging sciences, epistemic justice, and the rise of Global South actors. Key themes include science diplomacy, citizen science, and environmental politics. Her work challenges Western-centric frameworks, advocating for inclusive global governance models. Grants & Recognition: Secured funding from British Academy, Wellcome Trust, ESRC, and others. Member of prestigious networks like the Human Practices Committee of iGEM and UNESCO’s Inclusive Policy Lab. Noted for integrating art into sociological inquiry, including solo photo exhibitions on bioethical themes. Labs & Initiatives: Leads the Centre for Global Science and Epistemic Justice and co-founded the BioGovernance Commons (UK-China-US collaboration). Her work on ‘genomic solidarity’ and ethical science governance has influenced policy frameworks globally.
Peter Doerschuk is a Professor in the Department of Electrical and Computer Engineering at Cornell University's College of Engineering. He joined Cornell in July 2006 after serving on the faculty at Purdue University in both Electrical and Computer Engineering and Biomedical Engineering. His educational background includes: B.S. in Electrical Engineering, MIT (1977) M.S. in Electrical Engineering, MIT (1979) Ph.D. in Electrical Engineering, MIT (1985) M.D., Harvard Medical School (1987) Peter Doerschuk's research focuses on biological and medical systems through the lens of computational nonlinear stochastic systems. His work spans biomedical imaging , signal and image processing , statistical modeling , and computational inverse problems in biophysics . He develops high-performance algorithms and software systems that integrate accurate physical models with computational efficiency. His research addresses problems across multiple spatial scales—from 3D virus reconstruction using electron microscopy to modeling whole-body ethanol pharmacokinetics. The recent publications highlight a strong trend in computational biomedical imaging and physiological modeling . Key areas include 3D reconstruction of heterogeneous biological structures, cryo-EM dynamics analysis, and physiologically based pharmacokinetic modeling. The work consistently combines advanced statistical and machine learning methods with domain-specific physical models, particularly in virology and neurovascular physiology. His scientific awards and honors include: Fellow, American Institute for Medical and Biological Engineering (AIMBE) University Faculty Scholar, Purdue University Motorola Excellence in Teaching Award Ernst A. Guillemin Thesis Prize (MIT) Department of Biomedical Engineering Faculty Service Award (Purdue) Dr. Doerschuk has advised graduate students, including Keyuan Xu, whose M.Eng. thesis at MIT received the prestigious Ernst A. Guillemin Thesis Prize. His research has been supported through academic grants and collaborations with institutions such as The Scripps Research Institute and Indiana University School of Medicine. He has developed parallel software systems for high-performance computing applications in biophysics and biomedical signal processing. His research has involved collaboration with multiple labs and teams, including work with Professor J. E. Johnson at The Scripps Research Institute on virus structure determination and with Professor S. J. O’Connor at Indiana University on ethanol pharmacokinetics modeling. These interdisciplinary teams integrate expertise in engineering, medicine, and computational science to solve complex biomedical problems.
Susan Holmes is Professor at the School of Media, Language and Communication Studies at the University of East Anglia (UEA), where she joined as Reader in Television in 2007 and was appointed to Professor in 2018. She is an active member of several research groups including Media Equality, Film, Television and Media, Gender and Its Intersections Steering Committee, and HealthUEA. Her work spans television studies, celebrity culture, and feminist approaches to eating disorders. Professor Holmes received her academic training at the University of Sussex (BA in English and Media Studies), followed by an MA in Film from the University of Southampton, and completed her PhD on British film and television in the 1950s at the same institution. Prior to joining UEA, she taught Media and Cultural Studies at the Southampton Institute (now Southampton Solent University) and television and film at the University of Kent. Her research focuses on several interconnected areas that challenge traditional disciplinary boundaries. In television studies, she has made significant contributions to understanding British television history, particularly through her books 'British TV and Film in the 1950s' and 'Entertaining TV: the BBC and Popular Programme Culture in the 1950s,' where she challenges canonical ideas about early BBC television. Her work on reality TV examines historical development, generic labeling, and celebrity. Since 2014, she has conducted important empirical research on feminist approaches to eating disorders, analyzing media representations and working directly with people with lived experience. A key focus of this research examines how feminist approaches are neglected in contemporary eating disorder treatment, with implications for both clinical practice and cultural understanding. She co-founded the influential Celebrity Studies journal in 2010 and edited it for the first eight years of its publication. Analysis of Professor Holmes' recent publications reveals a clear trajectory where her expertise in media and television studies converges with her feminist scholarship on eating disorders. Her most recent work (2023-2025) increasingly focuses on cross-cultural applications of feminist approaches to eating disorders (including work in China), the use of innovative methodologies like Photovoice, and examinations of therapeutic alliance in treatment settings. Simultaneously, she continues to analyze contemporary media representations, particularly focusing on motherhood, true crime television, and reality TV through feminist lenses. This dual focus demonstrates how media representations shape cultural understandings of both celebrity and health conditions. Professor Holmes' significant contributions to academia have been recognized with several prestigious awards: Senior Fellowship from Advance HE (2024) UEA engagement award (2017) ALPSP award nomination for Celebrity Studies as best new journal (2011) She currently runs the Feminist Media Studies research cluster at UEA and is actively supervising postgraduate research in areas including popular television, television/film history, British TV history, stardom/celebrity, and feminist approaches to eating disorders. Her current major research project is the 'ALLIANCE study' (2024-2026), funded by the National Institute for Health and Care Research, which aims to develop practice and policy recommendations to support effective therapeutic alliance in inpatient treatment for eating disorders. This builds on her earlier British Academy-funded research on 'Entertaining Television: British TV, the BBC and Popular Programme Culture in the 1950s' (2007-2008). Professor Holmes plays a significant role in the academic community through her editorial work, serving on the boards of journals including Archives of Psychology, Big Data & Society, and Critical Studies in Television, and previously as co-founder and editor of Celebrity Studies. She has also been active in media engagement, contributing expert commentary on topics ranging from Netflix's portrayal of eating disorders to Celebrity Big Brother.
Dr. José del R. Millán is a Professor and holds the Linda Steen Norris & Lee Norris Endowed Chair in Neuroengineering at The University of Texas at Austin's Chandra Family Department of Electrical and Computer Engineering. He also serves as a Professor in Dell Medical School's Department of Neurology, a courtesy Professor in Biomedical Engineering, and is affiliated with the Mulva Clinic for the Neurosciences, Institute for Neuroscience, Texas Robotics, and the UT CARE Initiative. His work focuses on brain-machine interfaces (BMI), neuroprosthetics, and translating BMI technologies for individuals with motor/cognitive disabilities and able-bodied users. Education: PhD in Computer Science (1992, Technical University of Catalonia). Previous roles include Defitech Foundation Chair in Brain-Machine Interface at EPFL (Switzerland) and visiting scholar positions at Berkeley, Stanford, and the International Computer Science Institute. Research Interests: Neuroengineering, BMI applications in healthcare and assistive robotics, statistical machine learning for neural signals, and neurorehabilitation. Key contributions include EEG-based BMI systems, closed-loop neurostimulation, and wearable neurotechnology. Awards: IEEE Fellow (2017), Norbert Wiener Award (2011), and Fellow of the International Academy of Medical and Biological Engineering (2020). Grants & Labs: Co-director of UT CARE, leader in clinical neuroprosthetics and neurorobotics. Active in developing BMI-driven wheelchairs, VR integration for BCI, and EEG-based speech prosthetics. Research outputs emphasize translational neurotechnology, with projects funded by industry and governmental agencies. Labs/Teams: Clinical Neuroprosthetics & Brain Interaction Lab, Texas Robotics, Wireless Networking and Communications Group (WNCG).
Steven W. Popper is a Professor of Policy Analysis at the RAND School of Public Policy and an Adjunct Senior Economist at the RAND Corporation. He also serves as Distinguished Professor of Decision Sciences at Tecnológico de Monterrey’s School of Government and Public Transformation, reflecting his international academic engagement. His work bridges economics, science and technology policy, and strategic decision-making under uncertainty. Research Interests: Popper's expertise lies in decision-making under deep uncertainty (DMDU), robust decision making (RDM), assumption-based planning, and science, technology, and innovation policy. He has made seminal contributions to long-term policy analysis, particularly through his co-authorship of Shaping the Next One Hundred Years (2003). His research addresses complex systems in economic development, international relations, and environmental planning. Publication Trends: His recent work applies RDM methodologies to diverse domains such as U.S.-China economic competition, Israeli defense and energy policy, transportation planning, and future technologies. His publications often involve scenario analysis, foresight, and adaptive strategies for policy resilience in uncertain futures. Scientific Awards and Leadership: Founding officer and current Finance Chair, Society for Decision Making under Deep Uncertainty Past Chair, Industrial Science and Technology Section, American Association for the Advancement of Science Consultant to the World Bank, OECD, and multiple national governments Advising and Grants: While specific advisees are not listed, Popper has led numerous high-impact research projects funded by U.S. federal agencies and international bodies. His role as Associate Director of the Science and Technology Policy Institute (1996–2001) involved providing analytic support to the White House Office of Science and Technology Policy, indicating extensive grant-funded research leadership. Labs and Teams: Popper is affiliated with RAND’s research teams focused on policy analysis, innovation, and strategic foresight. He collaborates with interdisciplinary teams applying modeling and simulation tools to public policy challenges, particularly through the Robust Decision Making framework.
Maureen Meadows is a Professor of Strategic Management at Coventry University's Research Centre for Business in Society. Her work focuses on strategic decision-making, big data applications, privacy in business models, and M&A dynamics. She previously held leadership roles at the Open University and Warwick Business School, where she contributed to strategic management education and research. Education: PhD in Open University (2016) MSc in Management Science from University of Warwick (1987) Bachelor of Arts in Mathematics (Oxford University, 1986) Research Interests: Strategic management tools (e.g., scenario planning), customer data analytics, privacy implications of data sharing, and post-merger integration. She has co-led projects on surveillance society blurring and privacy in the digital economy, funded by Leverhulme and EPSRC. Key Projects: Leverhulme-funded 'Taking Liberties?' (surveillance society) EPSRC-funded 'Monetize Me?' (privacy and quantified self) Co-designing digital strategies for museums and education sectors Grants & Collaborations: Multiple internally-funded projects on board assurance frameworks, creative accounting, and hybrid business models in museums. Active in international conferences and professional bodies like BAM Council. Awards: While no specific prizes are listed, her h-index of 24 and 1,891 citations reflect significant scholarly impact.
Stéphanie P. Lacour is a Full Professor at the School of Engineering, École Polytechnique Fédérale de Lausanne (EPFL), where she holds the Foundation Bertarelli Chair in Neuroprosthetic Technology. She leads the Laboratory of Soft Bioelectronic Interfaces (LSBI) and is affiliated with multiple departments including INX-STI, STI-SMT, SV-SSV, and AVP-DLE-EDOC. Since 2025, she has served as EPFL’s Vice-President for Support to Strategic Initiatives, overseeing institutional research strategy. Her research is centered at Campus Biotech in Geneva, where she was the founding director of the Neuro-X Institute. PhD in Electrical Engineering, INSA Lyon, France (1998–2001) Postdoctoral Research, Princeton University and University of Cambridge Joined EPFL in 2011 Her research focuses on soft bioelectronic interfaces that seamlessly integrate with biological tissues. She pioneers the development of stretchable, compliant electronics for implantable and wearable applications, using techniques from MEMS and microelectronics adapted to elastomeric substrates. Her work enables long-term, minimally invasive neural interfacing for applications in neuroprosthetics, rehabilitation, and health monitoring. Key innovations include soft electrocorticography arrays, liquid metal sensors, and encapsulation methods for chronic implants. Her recent publications span high-impact journals such as Nature , Science Robotics , Advanced Materials , and Nature Nanotechnology , covering topics like neural stimulation, soft robotics, wireless implants, and hydrogel-based interfaces . The work demonstrates a strong trend toward multimodal, closed-loop, and translational neurotechnologies with real-world clinical potential. Scientific Awards: No scientific awards explicitly mentioned in the provided text. She advises a large cohort of PhD students and postdoctoral researchers, many of whom have completed their theses under her supervision. Her team has received funding for projects in neural interfacing, bioelectronics, and soft robotics. She is actively involved in teaching courses such as Soft Microsystems Processing and Devices and Neural Interfaces . Lacour leads the Laboratory of Soft Bioelectronic Interfaces (LSBI) , a multidisciplinary research team focused on the fabrication, characterization, and in vivo evaluation of soft bioelectronic systems. The lab collaborates extensively across EPFL and with clinical partners to translate technologies from bench to bedside.
Christin A. Knowlton, MD, MA serves as Associate Professor of Therapeutic Radiology at Yale School of Medicine, where she holds dual leadership roles as Vice Chair for Accreditation in Therapeutic Radiology and Medical Director of Smilow Cancer Hospital Care Center-Hamden. Her clinical practice focuses on delivering high-quality, patient-centered radiation oncology services with specialization in breast cancer, lung cancer, bone metastases, and thymoma treatments. Dr. Knowlton's educational background includes a BA from Oberlin College (1994), MA from New York University (1998), MD from SUNY at Stonybrook (2006), and residency training at Hahnemann University Hospital/Drexel University College of Medicine (2011). Her research program centers on optimizing radiation therapy protocols, with particular emphasis on hypofractionation techniques, stereotactic body radiation therapy (SBRT), and management of radiation-related toxicities including pneumonitis and esophagitis. Analysis of her 15 most recent publications reveals a consistent research trajectory focused on improving outcomes in thoracic and breast radiation oncology through dose optimization, toxicity prediction modeling, and innovative treatment approaches for oligometastatic disease. Her work frequently addresses the balance between therapeutic efficacy and radiation-induced complications, with growing emphasis on molecular risk assessment and personalized treatment planning. Smilow Luminary Award of Excellence in Patient Care (2019) National Comprehensive Cancer Network (NCCN) Fellows Recognition Program As a clinician-educator, Dr. Knowlton emphasizes the importance of patient communication and multidisciplinary teamwork, collaborating closely with nursing, physics, dosimetry, and therapy staff to deliver comprehensive cancer care. Her leadership in accreditation reflects her commitment to maintaining the highest standards in radiation oncology practice and education. Dr. Knowlton's clinical trial involvement, including the DD3 trial of dose-deescalated SBRT for centrally located lung cancer, demonstrates her active contribution to advancing evidence-based radiation oncology practice.
Henri van Soest is a Professor of Policy Analysis at the RAND School of Public Policy and a Senior Analyst at RAND Europe. He is based at RAND, a global policy research organization, where he leads studies on energy security, artificial intelligence governance, critical infrastructure protection, and European Union policy. His work supports key institutions including the European Union, UK government, and Dutch government. His research focuses on the intersection of technology and policy, particularly in energy systems and AI. Key areas include: AI governance and trustworthy AI tools Energy security and digitalisation of the power grid Critical undersea infrastructure protection Cybersecurity in energy systems Space technology regulation Societal resilience and national security The trend in his recent publications shows a growing emphasis on the dual-use nature of AI in critical infrastructure, balancing innovation with security and resilience. His work combines technical analysis with policy recommendations, often using modeling and expert elicitation. Much of his research addresses transatlantic and European policy challenges, especially in energy and security domains. Scientific contributions and policy impact are evident through frequent publications and expert submissions to governmental bodies. Notable outputs include evidence submissions to the UK Parliament and reports for the U.S. Department of Energy. While no formal awards are listed, his influence is reflected in high-level policy engagement. He has advised on grants and policy studies involving global teams, particularly in energy transition, AI infrastructure, and resilience planning. His prior experience includes energy policy research at the University of Oslo, cleantech analysis, and corporate governance in banking. He holds a Ph.D. from the University of Cambridge and a joint LL.M. from KU Leuven and the University of Zurich. Henri van Soest leads research within RAND Europe’s multidisciplinary teams focusing on science, technology, and security policy. His work often involves collaboration across international experts and institutions, particularly on EU and NATO-related security issues. He contributes to projects involving horizon scanning, Delphi studies, and quantitative modeling in policy contexts.
Professor Philip Birch is a distinguished academic in Criminology at the University of Technology Sydney (UTS), Faculty of Design & Society, School of International Studies & Education. With over 15 years of academic experience across British, American, and Australian university systems, he has established himself as a leading expert in policing, community safety, and criminal justice. His extensive practical background in criminology, including roles as a Specialist Crime Team Manager, Community Safety Research Manager, and Through Care Worker in UK correctional facilities, informs his applied research approach. Professor Birch's educational background includes a BSocSci. (Hons) in Social Policy (Crime & Justice) from the University of Manchester, multiple postgraduate qualifications from the Open University (including an MSc. in Social & Criminological Research Methods), a Post Graduate Certificate in Higher Education Practice from the University of Huddersfield, and a PhD in Criminology from the University of New South Wales. He also holds a Fellowship with the Higher Education Academy. His research centers on six key areas: Police & Policing; Community Safety & Crime Prevention; Prisons, Probation & Parole Policy & Practice; Assessment, Treatment & Management of Offenders; Gender & sexuality inclusive Domestic and Family Violence; and Sex Work, Sex Workers and Procurement. His work emphasizes the practical application of criminological research to real-world justice issues, with strong industry engagement across law enforcement and correctional services. Recent publications reveal a clear trend toward police mental health, aging in policing, hate crime identification, trauma-informed policing approaches, and digital community safety initiatives. His research employs diverse methodologies including qualitative case studies, Delphi methods, rapid evidence assessments, and comparative analyses across multiple jurisdictions. Teaching award (2019) from Australian College of Educators for outstanding contribution to education Literati Award (2019) for published work Fellowship of the Higher Education Academy Professor Birch has supervised numerous Honours, Masters by Coursework, Masters by Research and PhD students in Criminology, Criminal Justice and Policing, with several completions to date. He has secured over $1.3 million in research funding, including an ARC Linkage grant, and has acted as an external assessor for domestic and international funding bodies. His research projects address critical issues in criminology and policing, often with direct policy implications. He established the Crime & Security Science (CaSS) Research Group at UTS in 2022, a cross-faculty initiative connecting academia with industry to advance evidence-based criminology, criminal justice, policing, and community safety research. This group serves as a hub for collaborative projects addressing contemporary security challenges through translational research.
Halim Yanikomeroglu is a Full Professor and Chancellor's Professor at Carleton University's Department of Systems and Computer Engineering, part of the Faculty of Engineering and Design. His research focuses on wireless communications, including 5G/6G networks, non-terrestrial systems (HAPS/LEO satellites), MIMO, and cognitive radio. He has supervised numerous graduate students and holds IEEE Fellow status and the Harold Sobol Award. His work integrates machine learning, federated learning, and sustainability into next-generation networks. Affiliations: Carleton University, IEEE Education: Ph.D. (Toronto), M.A.Sc. (Toronto), B.Sc. (Middle East Technical University) Research interests span cellular networks, relay architectures, and energy-efficient systems. He pioneered cell-switching strategies for green networks and contributed to HAPS and UAV-based infrastructure. His recent work addresses NTN integration, AI-driven spectrum management, and 6G innovations. Awards include IEEE Fellow (2017) and multiple Research.com leadership accolades. His 150+ publications span journals like IEEE Transactions and conferences like ICC. Advising over 50 students, he emphasizes interdisciplinary solutions for future wireless challenges.
Adrian Linacre is a Professor and Chair in Forensic DNA Technology at Flinders University, within the College of Science and Engineering, Department of Biological Sciences. He is a leading figure in forensic science, with a focus on DNA analysis, wildlife forensics, and crime scene investigation. BSc in Biological Sciences (Hons), University of Edinburgh, 1984 DPhil in Molecular Genetics, University of Sussex, 1988 His research centers on getting more from less at crime scenes , particularly through developing highly sensitive DNA typing methods and studying the transfer and persistence of biological materials. He also pioneers the use of non-human DNA in forensic investigations, notably in wildlife forensic science , aiding in species identification and combating illegal wildlife trade. His recent publications reflect a strong trend in trace DNA analysis , body fluid identification , and DNA transfer dynamics , with applications in drug cases, sexual assault investigations, and environmental DNA degradation. His work increasingly integrates molecular techniques with real-world forensic challenges. Notable scientific awards include: Medal of the Order of Australia (OAM), 2020 Inspirational Scientist of the Year, Royal Society of Edinburgh, 2005 Fellow of the Royal Society for the Encouragement of Arts and Commerce (FRSA) Finalist, South Australian Science Excellence and Innovation Awards (2023, 2024) He has successfully supervised several students, including Piyamas Kanokwongnuwut and Alicia Haines, many of whom have won international recognition. He has secured significant research funding and contributed to national and international forensic policy, including a key review for the UK Home Office on low-template DNA. His professional leadership includes presidencies of the ANZFSS and ISFG, and vice presidency of the IAFS. Linacre is actively involved in editorial roles, serving as Associate Editor for Forensic Science International: Genetics and on the boards of Forensic Science, Medicine and Pathology and the Australian Journal of Forensic Science . He is a sought-after expert witness and media commentator in forensic science.