BEGIN:VCALENDAR VERSION:2.0 PRODID:Linklings LLC BEGIN:VTIMEZONE TZID:America/Los_Angeles X-LIC-LOCATION:America/Los_Angeles BEGIN:DAYLIGHT TZOFFSETFROM:-0800 TZOFFSETTO:-0700 TZNAME:PDT DTSTART:19700308T020000 RRULE:FREQ=YEARLY;BYMONTH=3;BYDAY=2SU END:DAYLIGHT BEGIN:STANDARD TZOFFSETFROM:-0700 TZOFFSETTO:-0800 TZNAME:PST DTSTART:19701101T020000 RRULE:FREQ=YEARLY;BYMONTH=11;BYDAY=1SU END:STANDARD END:VTIMEZONE BEGIN:VEVENT DTSTAMP:20260417T190055Z LOCATION:West Building\, Rooms 211-214 DTSTART;TZID=America/Los_Angeles:20250814T104500 DTEND;TZID=America/Los_Angeles:20250814T121500 UID:siggraph_SIGGRAPH 2025_sess116@linklings.com SUMMARY:Meshes: Extract & Repair DESCRIPTION:Topological Offsets\n\nTopological Offsets is a method for gen erating offset surfaces that are topologically equivalent to an offset inf initesimally close to the surface. By construction, the offsets are manifo ld, watertight, self-intersection-free, and strictly enclose the input. Te sted on Thingi10k, it supports applicat...\n\n\nDaniel Zint, Zhouyuan Chen , Yifei Zhu, and Denis Zorin (New York University/Courant); Teseo Schneide r (University of Victoria); and Daniele Panozzo (New York University/Coura nt)\n---------------------\nInstant Self-Intersection Repair for 3D Meshes \n\nWe present a novel framework that instantly (< 1 sec) repairs self-int ersections in static surface meshes, which commonly occur during the 3D mo deling process.\n\n\nWonjong Jang, Yucheol Jung, Gyeongmin Lee, and Seungy ong Lee (POSTECH)\n---------------------\nSingle Edge Collapse Quad-Domina nt Mesh Reduction\n\nA simple and robust modification to triangle mesh red uction bridges the gap for what artists want in quad-dominant mesh reducti on, preserving symmetry, topology, and joints without sacrificing geometri c quality, allowing for high-quality level-of-detail meshes at no cost com pared to what was done be...\n\n\nJulian Knodt (LightSpeed Studios)\n----- ----------------\nMeshes: Extract & Repair - Interactive Discussion\n\nAft er the summary presentations, attendees will participate in an interactive discussion. Outside the room will be a series of poster boards for author s to gather around with the audience. Authors are invited to bring any mat erial related to their paper that could instigate further conversation suc h...\n\n---------------------\nFeature-Preserving Mesh Repair via Restrict ed Power Diagram\n\nWe present a unified mesh repair framework using a man ifold wrap surface to fix diverse imperfections while preserving sharp fea tures. By optimizing projected samples and leveraging adaptive weighting, our method ensures watertightness, manifoldness, and high geometric fideli ty, outperforming existi...\n\n\nHuibiao Wen (Shandong University, Univers ity of Health and Rehabilitation Sciences); Guilong He (Shandong Universit y); Rui Xu (University of Hong Kong); Shuangmin Chen (Qingdao University o f Science and Technology); Shiqing Xin (Shandong University); Zhenyu Shu ( NingboTech University); Taku Komura (University of Hong Kong); Jieqing Fen g (State Key Laboratory of CAD & CG, Zhejiang University); Wenping Wang (T exas A&M University); and Changhe Tu (Shandong University)\n-------------- -------\nTetWeave: Isosurface Extraction using On-The-Fly Delaunay Tetrahe dral Grids for Gradient-Based Mesh Optimization\n\nTetWeave is a novel iso surface representation that jointly optimizes a tetrahedral grid and direc tional distances for gradient-based mesh processing like multi-view 3D rec onstruction. It dynamically builds adaptive grids via Delaunay triangulati on, ensuring watertight, manifold meshes. By resampling...\n\n\nAlexandre Binninger and Ruben Wiersma (ETH Zurich), Philipp Herholz (Independent Con tributor), and Olga Sorkine-Hornung (ETH Zurich)\n---------------------\nH exHex: Highspeed Extraction of Hexahedral Meshes\n\nWe present HexHex, whi ch extracts a hexahedral mesh from a locally injective integer-grid map. K ey contributions include a conservative rasterization technique and a nove l mesh data structure called propeller. Our algorithm is significantly fas ter and uses less memory than the previous state-of-the-...\n\n\nTobias Ko hler, Martin Heistermann, and David Bommes (University of Bern)\n\nInteres t Area: Research & Education\n\nRecording: Livestreamed, Not Livestreamed, Recorded, Not Recorded\n\nRegistration Category: Full Conference, Virtual Access, Thursday\n\nSession Chair: Qingnan Zhou (Adobe) END:VEVENT END:VCALENDAR