[{"data":1,"prerenderedAt":182},["ShallowReactive",2],{"nav":3,"projects":52},{"id":4,"extension":5,"items":6,"meta":49,"stem":50,"__hash__":51},"navigation\u002Fnavigation.yml","yml",[7,11,14,17,20,23,34,37],{"name":8,"type":9,"route":10},"Team","internal","\u002Fteam\u002F",{"name":12,"type":9,"route":13},"Seminars","\u002Fseminars\u002F",{"name":15,"type":9,"route":16},"Achievements","\u002Fachievements\u002F",{"name":18,"type":9,"route":19},"Projects","\u002Fprojects\u002F",{"name":21,"type":9,"route":22},"Job Offers","\u002Fjob-offers\u002F",{"name":24,"type":25,"subpages":26},"For Students","submenu",[27,30],{"name":28,"type":9,"route":29},"Prospective PhDs","\u002Fphd-recruitment\u002F",{"name":31,"type":32,"href":33},"Current projects","external","https:\u002F\u002Fdocs.google.com\u002Fspreadsheets\u002Fd\u002F1C-XgKHCyIIGWw4FNf_LTLgpINHVCRIV-XTHJ2-lgEgI",{"type":9,"route":35,"name":36},"\u002Fai-scientific-club\u002F","AI Scientific Club",{"name":38,"type":25,"subpages":39},"Other",[40,43,46],{"name":41,"type":32,"href":42},"TFML","http:\u002F\u002Ftfml.gmum.net\u002F",{"name":44,"type":32,"href":45},"bioNN","http:\u002F\u002Fbionn.matinf.uj.edu.pl\u002F",{"name":47,"type":32,"href":48},"Machine Learning Summer School","https:\u002F\u002Fmlss2025.mlinpl.org\u002F",{},"navigation","C89KhE1MaIMYyqnV_fTWPE_xW_FL8shyrJcOreyfc-A",{"id":53,"extension":5,"meta":54,"projects":55,"stem":180,"__hash__":181},"projects\u002Fprojects.yml",{},[56,66,77,86,99,111,120,130,136,141,148,156,161,166,173],{"title":57,"authors":58,"link":64,"image":65},"QuantumGS: Quantum Encoding Framework for Gaussian Splatting",[59,60,61,62,63],"Grzegorz Wilczyński","Rafał Tobiasz","Paweł Gora","Marcin Mazur","Przemysław Spurek","https:\u002F\u002Fgwilczynski95.github.io\u002FQuantumGS\u002F","quantumgs.png",{"title":67,"authors":68,"link":75,"image":76},"GS-Verse: Mesh-based Gaussian Splatting for Physics-aware Interaction in Virtual Reality",[69,70,71,72,73,74,63],"Anastasiya Pechko","Piotr Borycki","Joanna Waczyńska","Daniel Barczyk","Agata Szymańska","Sławomir Tadeja","https:\u002F\u002Fanastasiya999.github.io\u002FGS-Verse\u002F","gsverse.png",{"title":78,"authors":79,"link":84,"image":85},"VeGaS: Video Gaussian Splatting",[80,81,82,83,62,63],"Weronika Smolak-Dyżewska","Dawid Malarz","Kornel Howil","Jan Kaczmarczyk","https:\u002F\u002Fgmum.github.io\u002FVeGaS\u002F","vegas.png",{"title":87,"authors":88,"link":97,"image":98},"GEPAR3D: Geometry Prior-Assisted Learning for 3D Tooth Segmentation",[89,90,91,92,93,94,95,96],"Tomasz Szczepański","Szymon Płotka","Michal K Grzeszczyk","Arleta Adamowicz","Piotr Fudalej","Przemysław Korzeniowski","Tomasz Trzciński","Arkadiusz Sitek","https:\u002F\u002Ftomek1911.github.io\u002FGEPAR3D\u002F","gepar3d.png",{"title":100,"authors":101,"link":109,"image":110},"URB - Urban Routing Benchmark for RL-equipped Connected Autonomous Vehicles",[102,103,104,105,106,61,107,108],"Ahmet Onur Akman","Anastasia Psarou","Michał Hoffmann","Łukasz Gorczyca","Lukasz Kowalski","Grzegorz Jamróz","Rafal Kucharski","https:\u002F\u002Furbenchmark.com\u002F","urb.png",{"title":112,"authors":113,"link":118,"image":119},"Enhancing Chemical Explainability Through Counterfactual Masking",[114,115,116,117],"Łukasz Janisiów","Marek Kochańczyk","Bartosz Zieliński","Tomasz Danel","https:\u002F\u002Fcounterfactualmasking.gmum.net\u002F","counterfactual_masking.png",{"title":121,"authors":122,"link":128,"image":129},"FlySearch: Exploring how vision-language models explore",[123,124,125,126,116,127],"Adam Pardyl","Dominik Matuszek","Mateusz Przebieracz","Marek Cygan","Maciej Wołczyk","https:\u002F\u002Fflysearch.gmum.net\u002F","flysearch.jpg",{"title":131,"authors":132,"link":134,"image":135},"CLIPGaussian: Universal and Multimodal Style Transfer Based on Gaussian Splatting",[82,71,70,133,62,63],"Tadeusz Dziarmaga","https:\u002F\u002Fkornelhowil.github.io\u002FCLIPGaussian\u002F","clip_gaussian.jpg",{"title":137,"authors":138,"link":139,"image":140},"HuSc3D: Human Sculpture dataset for 3D object reconstruction",[80,81,59,60,71,70,63],"https:\u002F\u002Fwmito.github.io\u002FHuSc3D\u002F","husc3d.png",{"title":142,"authors":143,"link":146,"image":147},"PR-ENDO: Physically Based Relightable Gaussian Splatting for Endoscopy",[144,80,81,145,94,63],"Joanna Kaleta","Diego Dall'Alba","https:\u002F\u002Fsanoscience.github.io\u002FPR-ENDO\u002F","prendo.png",{"title":149,"authors":150,"link":154,"image":155},"MiraGe: Editable 2D Images using Gaussian Splatting",[71,151,70,74,152,153],"Tomasz Szczepanik","Thomas Bohné","Przemyslaw Spurek","https:\u002F\u002Fwaczjoan.github.io\u002FMiraGe\u002F","mirage.png",{"title":157,"authors":158,"link":159,"image":160},"D-MiSo: Editing Dynamic 3D Scenes using Multi-Gaussians Soup",[71,70,144,74,63],"https:\u002F\u002Fwaczjoan.github.io\u002FD-MiSo\u002F","dmiso.png",{"title":162,"authors":163,"link":164,"image":165},"GASP: Gaussian Splatting for Physic-Based Simulations",[70,80,71,62,74,63],"https:\u002F\u002Fwaczjoan.github.io\u002FGASP\u002F","gasp.jpg",{"title":167,"authors":168,"link":171,"image":172},"AdaGlimpse: Active Visual Exploration with Arbitrary Glimpse Position and Scale",[123,169,127,170,95,116],"Michał Wronka","Kamil Adamczewski","https:\u002F\u002Fio.pardyl.com\u002FAdaGlimpse\u002F","adaglimpse.png",{"title":174,"authors":175,"link":178,"image":179},"Active Visual Exploration Based on Attention-Map Entropy",[123,176,177,116,95],"Grzegorz Rypeść","Grzegorz Kurzejamski","https:\u002F\u002Fio.pardyl.com\u002FAME\u002F","ame.png","projects","-SrrpU-IuY49DfpeMlg3bF4ww5qGRL93Fi9pMsxdOAg",1786120615418]