Computer Vision Systems Group
Info
The Computer Vision Systems Group focuses its activities on advanced methods in computer vision and multimodal data analysis, developing algorithms that enable semantic image interpretation, integration of heterogeneous data sources (including satellite data, LiDAR, 3D imaging, and temporal data), as well as their processing and visualization in 2D and 3D environments. The research includes, among others, object detection and segmentation, registration of visual data, and the development of scalable machine learning models and decision support systems, supported by optimization methods and physics-inspired approaches. Particular emphasis is placed on applications in complex systems with high structural uncertainty, such as transport, environmental, and diagnostic systems (including biomedical applications).
An important element of the group’s activity is international collaboration. The team works with researchers from Halmstad University on AI models inspired by brain neuroplasticity, developed for continual and lifelong learning. Collaboration is also being developed with the University of Žilina, focusing on applications of optimization and machine learning methods (including computer vision) in real-world transport systems. Team members also collaborate with the Wigner Research Centre for Physics in Budapest in the field of advanced physics-inspired computational methods and optimization.
Among the group’s key achievements are the development of novel methods for multimodal data integration and analysis, as well as tools for 3D visualization. The team actively participates in international research projects, including the European Q-Fence project funded under the Horizon Europe program, within which post-quantum cryptographic methods are being developed to ensure secure processing and transmission of sensitive data (including medical, financial, and satellite data). The conducted work combines fundamental research with practical applications, particularly in the areas of data security, environmental analysis, and modern transport systems.
The Computer Vision Systems Group has existed since 1987. The group’s co-founder and long-time head was Dr. Eng. Ryszard Winiarczyk. The Computer Vision Systems Group is now led by Associate Professor Krzysztof Domino.
Publications
2012
2011
- Skabek K.; Pojda D.; Optimization of Mesh Representation for Progressive Transmission; Theoretical and Applied Informatics; 2011
2010
- Tomaka A.; Luchowski L.; Purpose of cephalometric computations in craniofacial surgery; Bulletin of the Polish Academy of Sciences: Technical Sciences; 2010
- Skabek K.; Tomaka A.; Applications of Computer Vision in Medicine and Protection of Monuments; Theoretical and Applied Informatics; 2010
- Pojda D.; Calculating the position of the observer in 3D using 2D images for the interactive presentation of virtual objects; Theoretical and Applied Informatics; 2010
2009
- Tomaka A.; Pisulska-Otremba A.; Computer Vision Support for the Orthodontic Diagnosis; International Conference on Man-Machine Interactions in Memoriam Adam Mrózek; 2009
- Tomaka A.; Luchowski L.; Skabek K.; Cyran K.; From museum exhibits to 3D models; Man-Machine Interactions; 2009
2008
- Tomaka A.; Trzeszkowska-Rotkegel S.; Tarnawski M.; Correction of error in 3D reconstruction induced by CT gantry tilt; Journal of Medical Informatics & Technologies; 2008
- Pojda D.; System of computer aiding diagnostic of Squint with applying analysis of the signal of the move of the eye; Theoretical and Applied Informatics; 2008
2007
- Tomaka A.; Tarnawski M.; Luchowski L.; Liśniewska-Machorowska B.; Digital dental models and 3D patient photographs registration for orthodontic documentation and diagnostic purposes; Computer Recognition Systems: Proceedings of 5th International Conference on Computer Recognition Systems CORES'07; 2007
- Skabek K.; Tomaka A.; Kurzydlowski M.; Automatic Mering of 3D atribute meshes.; Computer Recognition Systems 2, seria: Advances in Soft Computing 45, Part I; 2007
2006
- Tomaka A.; Luchowski L.; The application of 3D Computer Vision In Orthodontics; Annual Report Polish Academy of Sciences; 2006
- Tomaka A.; Skabek K.; Piętka E.; Łęski J.; Franiel S.; Automatic Registration and Merging of 3D Surface Scans of Human Head; Medical Informatics & Technology; 2006
- Pojda D.; Ober J.; Model of the oculomotoric system for diagnosis of Squint; Proceedings of the XI International Conference Mecical Informatics & Technology MIT 2006; 2006
- Kadłubek S.; Tomaka A.; Winiarczyk R.; Computer System for the Registration and Fusion of Multimodal Images for the Purposes of Orthodontics; Journal of Medical Informatics and Technologies; 2006
- Wieckowska K.; Tomaka A.; Winiarczyk R.; Piętka E.; Łęski J.; Franiel S.; System for facial tissue reconstruction based on dowel method; Medical Informatics & Technology; 2006
- Sornek A.; Tomaka A.; Piętka E.; Łęski J.; Franiel S.; Computer system for the analysis of facial features based on 3d surface scans.; Medical Informatics and Technology; 2006
2005
- Tomaka A.; Liśniewska-Machorowska B.; The application of 3D surfaces scanning in the facial features analysis; Journal of Medical Informatics & Technologies; 2005
- Tomaka A.; Kowalski P.; Using active models for finding landmarks; Journal of Medical Informatics & Technologies; 2005
- Tomaka A.; Luchowski L.; Skabek K.; Tarnawski M.; 3D head surface scanning techniques for orthodontics.; Journal of Medical Informatics & Technologies; 2005
- Kowalski P.; Tomaka A.; Liśniewska-Machorowska B.; Landmarks Identification Using Active Appearance Model; Archiwum Informatyki Teoretycznej i Stosowanej; 2005
2004
- Pojda D.; Ober J.; Model of the oculomotoric system for diagnosis of Squint; International Workshop on Biometric Technologies: Special Forum on Modeling and Simulation; 2004
2003
- Tomaka A.; Luchowski L.; Computer-aided longitudinal description of deformation and its application to craniofacial growth in humans; Archiwum Informatyki Teoretycznej i Stosowanej; 2003
- Tomaka A.; Luchowski L.; Stereovision Techniques for the Three-Dimensional Cephalogram; E-he@lth in Common Europe; 2003