Greg Haff is a Professor of Strength and Conditioning and Director of the Strength and Power Research Group at Edith Cowan University's School of Medical and Health Sciences. He holds a PhD from the United States (1999) and has extensive experience in strength and conditioning research, education, and professional practice. His work focuses on neuromuscular adaptations, training theory, velocity-based training methods, and recovery strategies. Haff has received numerous awards, including the National Strength and Conditioning Association’s Impact Award (2021) and the UK Strength and Conditioning Coach of the Year (2014). Affiliations: ECU School of Medical and Health Sciences, Strength and Power Research Group Education: PhD (1999), MS (1996), BS (1993) in Physical Education from the United States. Research Interests: Haff’s research explores optimal training methodologies, including periodization, eccentric loading, and velocity-based resistance training. He investigates how neuromuscular adaptations enhance athletic performance and reduce injury risk. His work spans sports science, biomechanics, and exercise physiology. Publications & Awards: Over 270 scientific papers, 9 books, and 28 book chapters. Notable awards include the William J. Kraemer Sport Scientist of the Year (2011) and the NSCA Young Investigator Award (2001). His research has been cited over 9,000 times (Scopus h-index 53). Grants & Labs: Leads the Strength and Power Research Group, focusing on applied strength training and performance optimization. Research spans athlete development, recovery strategies, and injury prevention.
Dr. Josip Bošnjaković is an Associate Professor at both the Catholic Faculty of Theology in Đakovo (part of Josip Juraj Strossmayer University in Osijek) and the Croatian Catholic University in Zagreb. Ordained as a priest of the Đakovo-Osijek Archdiocese in 2003, he holds a doctorate in educational psychology from the Pontifical Salesian University in Rome (2012) and is a certified psychotherapist specializing in transactional analysis. He serves as the head of the Counseling Center in the Đakovo-Osijek Archdiocese and as president of the Croatian Society of Marriage and Family Counselors since 2019. His research interests bridge psychology and theology, with particular focus on empathy, compassion, trauma recovery, family dynamics, and spiritual resilience. Bošnjaković has developed an interdisciplinary approach that integrates psychological science with theological insights, particularly emphasizing how compassion functions as both a psychological mechanism and theological virtue. His work explores how spiritual resources contribute to psychological resilience, especially in crisis situations including war trauma, pandemic experiences, and family breakdown. Bošnjaković's recent publications (2024-2025) demonstrate a consistent focus on practical applications of psychological theory within pastoral contexts. His research shows how concepts from transactional analysis can enhance pastoral care, with particular attention to communication skills, conflict resolution, and emotional intelligence in religious settings. He has made significant contributions to understanding how spiritual practices support mental health and how religious communities can better address psychological needs. As an active member of professional organizations including ITAA (International Transactional Analysis Association), EATA (European Association of Transactional Analysis), and IAPR (International Association for the Psychology of Religion), Bošnjaković bridges academic research with practical counseling applications. He regularly contributes to professional development through workshops, conferences, and media appearances where he discusses psychological and spiritual aspects of contemporary challenges. His academic leadership includes directing the specialist study program in Propaedeutics of Psychotherapy and Theotherapy at the Catholic Faculty of Theology in Đakovo since 2023. Bošnjaković also serves on various academic committees including the Award Committee and Supervisory Board at his institution, and previously served on the Ethics Committee at the Croatian Catholic University (2013-2017).
Ueli Grossniklaus is an Ordinary Professor at the University of Zurich within the Faculty of Mathematical and Natural Sciences , affiliated with the Department of Plant and Microbiology . His work focuses on plant developmental biology, particularly epigenetic and genetic mechanisms governing reproduction and adaptation. Key Courses: Epigenetics, Plant Biology Workshop, Group Seminars on Current Research Laboratory Techniques: Advanced methods in plant cell mechanics, transcriptomics, and genome editing Research Interests span plant epigenetics, reproductive biology, and the interplay between environmental stress and genetic regulation. He investigates: Mechanistic control of gametogenesis and fertilization Epigenetic contributions to plant adaptation Evolutionary implications of asexual reproduction Biophysical forces in plant cell growth Publication Trends (2025–2018) reveal expertise in: Arabidopsis and fern model systems Epigenetic regulation (DNA methylation, histone dynamics) Apomixis and hybrid seed failure mechanisms Biomechanics of pollen tubes and carnivorous plants Genome editing tools (CRISPR) and long-read sequencing Scientific Collaborations include interdisciplinary projects on: Microfluidic devices for plant cell analysis Gene drive ecology and ethics 3D imaging of plant reproductive structures Advising and Grants focus on mentoring through research internships in developmental biology, genetics, and systems biology. His lab engages in: Epigenetic response to environmental stress Cell wall mechanics in reproduction Computational modeling of plant growth Laboratory Teams integrate plant biologists, bioengineers, and computational scientists to study: Mechanistic gene regulation Evolutionary developmental biology Microrobotics for cellular force measurement
Pedro Carlos De Barros Fernandes is an Associate Professor at Universidade Lusófona , Deputy Director of the 1st cycle in Biotechnology, and an integrated researcher at the Institute of Bioengineering and Biosciences (iBB-IST). He holds a PhD in Biotechnology (1999) and a Master in Biotechnology/Biochemical Engineering (1994) from Universidade Técnica de Lisboa (IST), along with a Chemical Engineering degree from IST (1989). A member of the Order of Engineers (ID 24667), he co-founded Biotrend, a Portuguese bioprocess development company. Education PhD in Biotechnology (1999), Universidade Técnica de Lisboa MSc in Biotechnology (1994), Instituto Superior Técnico BSc in Chemical Engineering (1989), Instituto Superior Técnico Research Interests span biocatalysis, enzyme immobilization for food and pharmaceutical applications, marine biotechnology, microfluidic device development for biosensing, and steroid bioconversions using mycobacterial systems. His work integrates process engineering principles with sustainable bioprocessing techniques. Publication Trends show a focus on microreactor technology, enzyme stabilization in non-conventional media, marine-derived biocatalysts, and food waste valorization. Key themes include biocatalytic process intensification, aqueous two-phase systems for biomolecule purification, and sustainable carbon sources for biopolymer production. Scientific Awards UTL/Santander Totta Scientific Award in Biological Engineering (2011) Advising has included supervision of 5 doctoral theses and over 32 master’s theses. His expertise extends to peer-reviewing scientific articles and evaluating R&D projects. Labs & Teams are associated with iBB-IST (Institute of Bioengineering and Biosciences) and BioRG (Universidade Lusófona), with contributions to the Ciência Viva program for science dissemination.
Jeffrey R. Errington is a Professor and Chair of the Department of Chemical and Biological Engineering at the University at Buffalo (SUNY). His research focuses on developing molecular simulation methods to study interfacial phenomena in complex fluids, including CO2 sequestration, enhanced oil recovery, and ionic liquid behavior. He holds a BS (1995) and PhD (1999) in Chemical Engineering from the University at Buffalo and Cornell University, respectively, and completed postdoctoral work at Princeton University. Education: BS, Chemical Engineering, University at Buffalo, 1995 PhD, Chemical Engineering, Cornell University, 1999 Research Interests: Computational methods for interfacial properties Molecular simulation of carbon capture and environmental systems Thermodynamic modeling of ionic liquids and nanomaterials Recent Work Trends: Recent articles emphasize advancing Monte Carlo and molecular dynamics techniques for studying fluid interfaces, with applications to energy storage, environmental engineering, and material science. Key themes include interfacial wetting, adsorption in nanoporous materials, and free-energy landscape analysis. Awards: NSF CAREER Award (2003) NYSTAR James D. Watson Investigator Award (2004) SUNY Chancellor’s Award for Excellence (2016) UB Exceptional Scholar Awards (2005, 2014) Leadership & Service: Director of Undergraduate Studies (2006–2014) Associate Dean for Undergraduate Education (2014–2023) Senior Associate Dean for Academic Affairs (2023–2024) Chair, CoMSEF Forum (American Institute of Chemical Engineers) His research group actively collaborates on CACHE Corporation initiatives and develops educational tools for undergraduate researchers.
Associate Professor Sonny Pham leads research in artificial intelligence at Curtin University's School of EECMS. His work balances theoretical foundations with practical applications in computer vision, data mining, and deep learning. As head of the IAMAI research group, he collaborates with industry partners on security systems, healthcare AI, and sustainable technologies. His research explores: Computationally efficient deep learning architectures Compressed sensing for high-dimensional data Robust statistical methods for real-world problems Applications in computer vision and industrial automation Recent publications demonstrate a focus on medical imaging interpretation and efficient neural networks, with applications spanning radiology report generation, semantic segmentation for autonomous systems, and cybersecurity. His team's work consistently bridges theoretical AI advancements with industrial applications. Honors include: Multiple WANMA Awards (2021-2024) for industry-impactful research INCITE Award for social impact technology (2024) IEEE Young Author Best Paper Award (2010) Over $5M in competitive research funding including MRFF and DFAT grants He leads the IAMAI research group with 12+ graduate students and coordinates Curtin's Master of Artificial Intelligence program. Industry collaborations include Alcoa Australia, iCetana, and HyprFire.
Dr. Jatin P. Ambegaonkar is a Professor in the School of Kinesiology, College of Education and Human Development at George Mason University, where he serves as Associate Dean for Research. He holds a PhD from the University of North Carolina Greensboro and is a Certified Athletic Trainer and Occupational Therapist. His translational research bridges laboratory science and community engagement to enhance performance, reduce injury risk, and improve health outcomes across populations. Research Focus: Dr. Ambegaonkar's work centers on interdisciplinary approaches to human movement, with emphasis on: Performing artists' health and injury epidemiology Biosensor applications in sports and dance Neuromechanical assessment and concussion management Falls prevention and quality of life in older adults Community-based health interventions for underserved populations His research vision— "Arts and Health for the Physically Active, Physical Activity for Health and Artists" —drives initiatives like the SMART Laboratory (co-founded in 2006) and the SHARe Consortium. Publications: His 80+ articles demonstrate consistent focus on injury mechanisms, dance science, and aging research, with recent emphasis on kinesiophobia (2024), multifactorial fall interventions (2024), and longitudinal dancer fitness (2023). Methodologies span systematic reviews, RCTs, biomechanical analyses, and community trials. Leadership & Grants: As founding co-director of the SMART Laboratory, he leads projects including: ACHIEVES: Free athletic healthcare for underserved students POISED: Falls prevention in older adults SHARe Consortium: Multidisciplinary injury prevention for artists He has secured $6.4M across 30 grants from the National Endowment for the Arts, Potomac Health Foundation, and others. Editorial Roles: Editor-in-Chief of the Journal of Dance Medicine & Science ; Editorial Board member for the Journal of Athletic Training ; reviewer for 25+ scientific journals.
Vassilios Tzerpos is an Associate Professor at the Lassonde School of Engineering, York University, where he has been since 2001. He holds a Ph.D. in Computer Science from the University of Toronto (2001). His research focuses on audio processing for musical applications, deep learning, digital signal processing, machine listening, and software engineering education. He directs the APTLY lab exploring music-technology intersections and leads the LaSSoftE lab developing socially-oriented software solutions. Education: Ph.D. in Computer Science, University of Toronto, 2001 Research Highlights: Dr. Tzerpos' work spans music information retrieval (e.g., automatic music classification), synthetic speech detection using neural networks, and software engineering pedagogy. His recent projects include Music-STAR for audio re-instrumentation and OER-based learning path creation systems. He has pioneered methods in design pattern detection and software clustering evaluation. Grants & Labs: Leads two research groups: APTLY (music-tech) and LaSSoftE (social impact software). Active in developing adaptive cybersecurity solutions against DoS attacks and refining software architecture recovery techniques. Key Themes in Publications: Recent work emphasizes machine learning applications in music technology and cybersecurity, with foundational contributions to software clustering methodologies and design pattern detection algorithms. His work bridges theoretical computer science with practical applications in education and creative industries.
Catherine Mulligan is a Distinguished Research Professor in the Department of Building, Civil, and Environmental Engineering at Concordia University, where she also serves as Director of the Concordia Institute for Water, Energy and Sustainable Systems. She was previously the Concordia Research Chair in Geoenvironmental Sustainability (Tier I) until 2021, having held this prestigious research chair since 2002 (initially as Tier II). Dr. Mulligan earned her B.Eng. and M.Eng. degrees in chemical engineering from McGill University, followed by a Ph.D. specializing in geoenvironmental engineering, also from McGill University. After 16 years working at McGill University and in industry (including positions at the Biotechnology Research Institute of the National Research Council and SNC Research Corp.), she joined Concordia University in 1999 as an Assistant Professor, was promoted to Associate Professor in 2002, and to full Professor in 2008. Her research spans multiple critical areas of environmental engineering with a focus on contamination remediation. She specializes in surfactant-enhanced washing and flushing of contaminated soils and sediments, treatment of metal-contaminated media, bioremediation techniques, and various wastewater treatment methods. Her work includes biosurfactant applications, in-situ sediment remediation, anaerobic treatment processes, membrane technologies for water treatment, and energy generation through pressure-reduced osmosis. She has developed sustainability indicators and focuses on practical applications of environmental engineering solutions. Analysis of her recent publications (2023-2025) reveals a continued leadership in environmental engineering with particular emphasis on nanotechnology applications for oil spill cleanup in sensitive coastal regions, advanced membrane technologies for water treatment and energy generation, microbially induced calcite precipitation for mining waste remediation, sustainable resource recovery approaches from waste batteries, and innovative techniques for eutrophic lake restoration. Her research demonstrates a consistent focus on practical, sustainable solutions to environmental contamination problems across diverse settings. Dr. Mulligan's scientific contributions have been recognized with numerous prestigious awards including Fellowship in the Royal Society of Canada, Canadian Academy of Engineering, Engineering Institute of Canada, and the Canadian Society for Civil Engineering. She has received the RSC Miroslaw Romanowski Medal, the Geoenvironmental Award, the A.G. Stermac Award of the CGS, and the John B. Sterling Medal of the EIC. Her Concordia-specific honors include the Provost Circle of Distinction, Concordia Sustainability Champion, and the Petro Canada Young Innovator Award (awarded twice). With over 40 years of research experience across government, industrial, and academic environments, Dr. Mulligan has supervised to completion more than 75 graduate students in Civil Engineering (MASc and PhD programs). Her research has attracted significant funding, including a $1,643,700 NSERC CREATE grant for the Institute in Water, Energy and Sustainability, which represents the first Concordia project to receive funding through this program. She has authored more than 140 refereed papers, holds three patents, and has made substantial editorial contributions as Section Editor for the Journal of Environmental Engineering, Chief Editor for Waste (MDPI), and serves on multiple other editorial boards. As Director of the Concordia Institute for Water, Energy and Sustainable Systems, Dr. Mulligan leads an interdisciplinary team focused on training students in sustainable development practices and advancing research into innovative solutions for water, energy, and resource conservation challenges. The institute represents a significant hub for environmental research and education at Concordia University.
Dr. Chathura Bandutunga is a Research Fellow at the Centre for Gravitational Astrophysics within the Research School of Physics at the Australian National University (ANU). His research focuses on advanced optical techniques for precision measurement, with significant contributions to gravitational wave detection technology, molecular spectroscopy, and space exploration instrumentation. Dr. Bandutunga's research expertise spans digital interferometry, fiber optic sensors, and precision optical measurement systems. His work has pioneered digitally enhanced interferometric techniques that have enabled new capabilities in molecular dispersion spectroscopy, gravitational wave detection, and optical frequency referencing. He has developed innovative methods for phase noise suppression, common-mode noise rejection, and thermal-noise-limited optical measurements that operate at the boundaries of physical possibility. His publication record demonstrates consistent innovation in optical measurement technology, with recent work advancing fiber optic gyroscopes, frequency comb technology, and applications for interstellar propulsion systems like the Breakthrough Starshot program. His research bridges fundamental optical physics with practical applications in both terrestrial scientific instrumentation and space-based technologies. Dr. Bandutunga is actively involved in the Centre for Gravitational Astrophysics at ANU, contributing to Australia's participation in international gravitational wave research collaborations. His technical leadership in precision optical measurement systems directly supports next-generation gravitational wave detectors and related technologies requiring unprecedented measurement stability.
Benjamin Shore, MD, MPH, FRCSC, is Associate Professor of Orthopedic Surgery at Harvard Medical School and a practicing pediatric orthopedic surgeon at Boston Children’s Hospital. He serves as Co-Director of the Cerebral Palsy and Spasticity Center and Director of the Pediatric Orthopaedic Surgery Fellowship. Education and Training Undergraduate: Biology, University of Victoria, 1999 MPH: Harvard School of Public Health, 2013 MD: University of Western Ontario, 2003 Residency: Orthopedic Surgery, University of Western Ontario, 2008 Fellowship 1: Pediatric Orthopedics, Royal Children's Hospital, Melbourne, 2009 Fellowship 2: Pediatric Orthopedics, Boston Children’s Hospital, 2010 Research Focus Dr. Shore’s research centers on improving outcomes for children with cerebral palsy and other complex musculoskeletal conditions. His work spans hip surveillance and reconstruction, gait abnormalities, trauma care, and the implementation of evidence-based surgical pathways. He has pioneered investigations into anesthesia protocols, infection prevention, and patient-reported outcome measures for pediatric orthopedic populations. Scientific Awards St. Giles Young Investigator Award (POSNA) Clinician Scientist Development Program Award (CSDP) Charles H. Hood Foundation Child Health Research Award Leadership & Multi-Disciplinary Teams At Boston Children’s Hospital, Dr. Shore leads a high-performance team within the Cerebral Palsy and Spasticity Center that integrates orthopedic surgery, neurology, physical therapy, and social work to deliver patient- and family-centered care. He mentors fellows and residents and actively contributes to national consensus projects using Delphi methodology to standardize surgical indications in cerebral palsy.
Professor James Im serves as Professor of Materials Science in the Departments of Earth and Environmental Engineering and Applied Physics and Applied Mathematics at Columbia University, with an office at 1106 S.W. Mudd (Mail Code 4701). His academic career spans over three decades at Columbia, where he progressed from Assistant Professor (1991-1994) to Associate Professor (1995-2002), and ultimately to full Professor (2002-present), including a tenure as Chair of the Materials Science and Engineering Program (2002-2014). His educational background includes a B.S. with Distinction in Materials Science from Cornell University (1984) and a Ph.D. in Electronic Materials from MIT (1989), followed by postdoctoral research at Caltech (1989-1991). Cornell University: B.S. Materials Science (1984) MIT: Ph.D. Electronic Materials (1989) Caltech: Postdoctoral Scholar (1989-1991) Im's research centers on ultra-rapid phase transitions in beam-irradiated thin films, specifically focusing on laser crystallization of silicon films , energy-beam-induced melting and solidification , and nucleation in discontinuous phase transitions . His work employs experimental, computational, and theoretical approaches to develop innovative semiconductor materials for advanced displays, solar cells, and integrated circuits. Notably, his invention of Sequential Lateral Solidification (SLS) technology has been licensed to major display manufacturers (Samsung, LG, Sharp) and implemented in products by Apple, Blackberry, and Nokia. Current research focuses on advancing the Spot-Beam Crystallization (SBC) platform using fiber lasers for next-generation microelectronics. His publication record spans environmental aerosol studies (2019-2024), oilfield operations technology (2002-2014), and foundational atmospheric research (1980s), reflecting interdisciplinary expertise bridging materials science, environmental engineering, and petroleum technology. The most recent works emphasize low-cost sensor development and aerosol monitoring. Professional recognition includes membership in prestigious societies: Bohmisch Physical Society Sigma Xi Alpha Sigma Mu Materials Research Society American Physical Society Im's research group maintains strong industry connections through technology licensing and collaborative projects, particularly in display manufacturing. His leadership as former department chair demonstrates administrative commitment alongside scientific innovation. The laboratory leverages state-of-the-art laser systems and beam delivery optics for materials development, with recent focus shifting toward environmental monitoring applications while maintaining core semiconductor research.
Professor Ali Yapar is a faculty member at Istanbul Technical University in the Electronics and Communication Engineering department. His research focuses on Electromagnetics , Microwave Engineering , and Antenna Technologies , with a particular emphasis on inverse scattering problems and microwave imaging for biomedical applications. He has supervised numerous graduate students and led projects related to breast cancer treatment and rough surface imaging. PhD in Electronics and Communication Engineering from Istanbul Technical University (1997) MSc in Electronics and Communication Engineering (1995) His recent publications analyze advanced techniques for microwave hyperthermia systems, reverse time migration methods, and Newton-based solutions for electromagnetic inverse scattering. Key projects include TUBITAK-funded initiatives on microwave tomography and brain stroke imaging. He serves as a project investigator and executive for electromagnetic research programs. Research areas span Electromagnetic Wave Propagation , Green's Function Applications , and Dielectric Material Analysis . Collaborations include IEEE members and international researchers in computational electromagnetics.
Dr. Richard Venditti is the Elis-Signe Olsson Professor of Pulp and Paper Science and Technology at North Carolina State University's Department of Forest Biomaterials, College of Natural Resources. He specializes in sustainable bioproducts, recycling technologies, and environmental life cycle analysis (LCA). His research focuses on transforming renewable plant-based resources into eco-friendly materials, addressing challenges like microfiber pollution and decarbonization in the paper industry. Education: PhD in Chemical Engineering, Princeton University (1994) B.S. in Pulp and Paper Technology and Chemical Engineering, NC State University (1988) Research Interests: Biodegradation of materials, fiber processing innovations, LCA of bioproducts, and upcycling waste into high-value products. Dr. Venditti leads high-impact projects, including a USDA-funded initiative to educate diverse students in bioproduct industries and a multi-organization study on microplastic fate in the environment. He has authored over 200 peer-reviewed publications and holds patents in sustainable technologies. Grants & Funding: Key projects include a $2.75M USDA program, a $2.99M NSF grant for eco-manufacturing of soft electronics, and a $1.64M DOE project on AI-driven municipal waste analysis. Awards & Recognition: TAPPI Fellow (2012), Fulbright Specialist (2009), and ACAAGS Advocacy Award (2010) for promoting diversity in graduate education. He directs the Pulp and Paper Workshop (co-sponsored by TAPPI) and teaches courses like Environmental LCA and Unit Operations. His lab explores innovations in dewatering, biomass valorization, and textile waste upcycling.
Rafael Guedez Mata is a Researcher at the Energy Department of KTH Royal Institute of Technology , specializing in techno-economic modeling for energy conversion and storage technologies. He holds a PhD from KTH and completed an executive program in Management and Leadership at MIT Sloan. His research focuses on optimizing solar power plants, thermal energy storage, and supercritical CO₂ systems, with projects funded by the EU, Swedish Energy Agency, and industry partners. As a Principal Investigator (PI), he leads high-impact projects such as SOLARSCO2OL and SHARP-sCO₂, advancing hybrid solar and supercritical CO₂ technologies. He has supervised over 60 MSc theses and received the PhD Supervisor of the Year 2021 award. He teaches courses like Large Scale Solar Power (MJ2500) and Energy Storage Technology (MJ2386) , and is Deputy Director of the Sustainable Energy Engineering MSc program. His professional roles extend beyond academia: he co-founded Europe Power Solutions , advises firms like Naventus Corporate Finance and Odqa Renewable Energy Technologies , and previously worked at SolarReserve and Total’s Solar Energy division. His work bridges academia and industry, emphasizing sustainable energy solutions. Key technical contributions include optimizing hybrid solar-PV plants, power-to-ammonia systems, and thermal storage integration. His publications (80+ papers) address system design, economic modeling, and climate resilience. Current projects include decarbonizing industrial sectors via power-to-heat systems and assessing environmental impacts of stationary batteries.