| 2026 | ICCS | What Do Neural Radiance Fields Offer for 3D Human Reconstruction? | Kamil Opalach, Joanna Porter-Sobieraj, Robert Sitnik |
| 2024 | SiggraphA | FaAID: A Transformer Model for Neuro-Symbolic Facade Reconstruction. | Aleksander Plocharski, Jan Swidzinski, Joanna Porter-Sobieraj, Przemyslaw Musialski |
| 2023 | FedCSIS | Simulating Large-Scale Topographic Terrain Features with Reservoirs and Flowing Water. | Lukasz Blaszczyk, Michalina Mizura, Aleksander Plocharski, Joanna Porter-Sobieraj |
| 2022 | FedCSIS | Hierarchical data structures in rendering scenes containing a massive number of light sources. | Andrzej Lamecki, Krzysztof Kaczmarski, Joanna Porter-Sobieraj |
| 2013 | FedCSIS | Towards an Efficient Multi-Stage Riemann Solver for Nuclear Physics Simulations. | Sebastian Cygert, Joanna Porter-Sobieraj, Daniel Kikola, Jan Sikorski, Marcin Slodkowski |
| 2013 | ISVC | Depth Peeling Algorithm for the Distance Field Computation of Overlapping Objects. | Marcin Ryciuk, Joanna Porter-Sobieraj |
| 2013 | PPAM | Using GPUs for Parallel Stencil Computations in Relativistic Hydrodynamic Simulation. | Sebastian Cygert, Daniel Kikola, Joanna Porter-Sobieraj, Jan Sikorski, Marcin Slodkowski |
| 2012 | FedCSIS | Solving Systems of Polynomial Equations on a GPU. | Robert A. Klopotek, Joanna Porter-Sobieraj |
| 2010 | ICCVG | Fast and Accurate Machined Surface Rendering Using an Octree Model. | Joanna Porter-Sobieraj, Maciej Swiechowski |