Grzegorz Korcyl, PhD, is an Assistant Professor at the Department of Information Technologies, Jagiellonian University in Kraków. He holds a PhD in Applied Computer Science from AGH University of Science and Technology (2015) and an MSc in Applied Computer Science from Jagiellonian University (2010). His research focuses on Field Programmable Gate Arrays (FPGAs), real-time distributed systems, and data acquisition technologies. He co-authored a chapter in the book *Modern Techniques for Computer-Aided Melanoma Diagnosis* (ISBN:978-953-307-571-6), contributing to medical imaging and diagnostic systems. He is involved in academic initiatives such as the Juna Network Academy (Juniper Networks Academic Alliance) and the Students Computer Laboratory, promoting networking education and software development. His work intersects computer engineering with healthcare applications.
Dr. Miron Kłosowski serves as an Assistant Professor at the Department of Microelectronic Systems within the Faculty of Electronics Telecommunications and Informatics at Gdańsk University of Technology. His primary workplace is located in Building A of the Faculty, room 309, where he conducts research and teaching activities in microelectronic systems and image sensor technologies. Dr. Kłosowski obtained his "dr inż." (Doctor of Engineering) degree on January 23, 2001, in the field of Electronics (Technology) from the Faculty of Electronics Telecommunications and Informatics. His academic journey has focused on the intersection of analog circuit design and digital image processing. His research program centers on advanced microelectronic systems with particular emphasis on image sensors and analog-to-digital conversion architectures. Dr. Kłosowski's work bridges theoretical circuit design with practical applications in imaging technology through: CMOS image sensor architecture and optimization for reduced noise Innovative analog-to-digital converters with embedded processing capabilities Low-power circuit design techniques for sensor interfaces Digital correction methods for image sensor non-uniformities Field-programmable gate array implementations for real-time signal processing Massively parallel imaging array architectures Analysis of Dr. Kłosowski's publication record (2017-2024) reveals a consistent research trajectory toward more integrated, efficient solutions for digital pixel sensors. His most recent work demonstrates significant advancements in on-the-ramp processing techniques that enable simultaneous image acquisition and filtering. The research spans both theoretical circuit innovations and practical implementations with applications in biomedical imaging and general-purpose camera technology. His educational contributions include adapting hardware teaching methodologies to remote environments during the pandemic, as documented in his IEEE Transactions on Education publication. Dr. Kłosowski maintains an extensive teaching portfolio across multiple engineering disciplines, regularly instructing courses in programmable circuits, FPGA applications, and digital signal processing. His teaching responsibilities span undergraduate and graduate programs in Electronics and Telecommunications, Informatics, and Biomedical Engineering, with consistent course offerings through the 2024/25 academic year. He participates in research initiatives including the HAPADS project (Highly Accurate and Autonomous Programmable Platform for Providing Air Pollution Data Services to Drivers and Public), which is funded through Norwegian and EEA funds under the Applied Research Program. This project is realized through the Department of Microelectronic Systems under agreement NOR/POLNOR/HAPADS/0049/2019-00.
Dr. Marcin Ziembicki serves as an Assistant Professor at the Institute of Radioelectronics and Multimedia Technology within the Faculty of Electronics and Information Technology at Warsaw University of Technology. His research integrates experimental particle physics with advanced detector development, focusing on neutrino interactions and nuclear phenomena through major international collaborations. His primary research interests include: Neutrino oscillation physics and cross-section measurements Development of photomultiplier-based detection systems for water Cherenkov experiments Analysis of hadronic final states in deep-inelastic scattering Spin-dependent asymmetries in polarized targets Real-time FPGA-based data acquisition systems Recent publications demonstrate concentrated activity in T2K and Hyper-Kamiokande neutrino experiments, with significant contributions to oscillation parameter measurements, neutron capture studies in oxygen targets, and detector calibration techniques. His work spans theoretical modeling and hands-on hardware implementation, particularly in FPGA-based readout systems for particle detectors. With 168 publications and an h-index of 49 (Scopus), his experimental work has advanced precision measurements in neutrino physics. He has supervised 7 promoted theses and participated in 14 research projects, including the T2K Near Detector upgrade and Hyper-Kamiokande photosensor development. Dr. Ziembicki maintains active roles in the COMPASS spin physics collaboration and the AMBER experiment, where he develops specialized electronics for hadron spectroscopy. His technical expertise bridges particle physics with electrical engineering, particularly in signal processing and detector electronics design for high-radiation environments.
Dr. hab. Bożena Zgardzińska serves as a university professor at the Institute of Physics, Department of Material Physics at Maria Curie-Skłodowska University in Lublin, Poland. She currently holds the position of Deputy Director of the Institute and maintains regular student consultations. Her academic career has been deeply rooted in the Lublin nuclear physics research group specializing in positron annihilation phenomena. Her research focuses on Positron Annihilation Lifetime Spectroscopy (PALS) with applications spanning multiple scientific domains. She investigates the structure and properties of organic compounds, organic tissues for medical diagnostics applications, and multicomponent organic systems with industrial and medical potential. Her scientific work bridges fundamental physics with practical applications in materials science and medicine. Dr. Zgardzińska's publication record shows a strong emphasis on medical physics applications, particularly through the J-PET tomograph project, alongside fundamental studies of organic materials. Her research demonstrates consistent interdisciplinary collaboration across physics, materials science, and medical fields, with significant contributions to positron-based imaging techniques. She has secured competitive research funding, including leading the grant "Akademia kreatywnego rozwoju" (2018-2019) and the grant "Badanie struktury i własności materiałów kompozytowych i wieloskładnikowych materiałów organicznych metodą spektroskopii pozytonowej" (2014-2016). Her research program demonstrates sustained productivity and relevance across multiple scientific domains. As an educator, she has supervised students through bachelor's, engineer's, master's, and doctoral theses. She is also actively engaged in science communication through popular science publications like "Wiedza i życie," public lectures, and physics demonstrations for school groups. She co-founded and presides over the Lublin Educational-Scientific Association (LuTEN) and is a member of the Lublin Branch of the Polish Physical Society (PTF).