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A Collaborative Multi-robot Platform for the Distributed Fabrication of Three-dimensional Fibrous Networks (Spatial Lacing), , , , , and . Proceedings of the 7th Annual ACM Symposium on Computational Fabrication, page 1–18. New York, NY, USA, Association for Computing Machinery, (Oct 26, 2022)Spatial Lacing: A Novel Composite Material System for Fibrous Networks, , , , , and . Towards Radical Regeneration, page 556--568. Cham, Springer International Publishing, (2023)Integrative Design Methods for Spatial Winding, , , , and . (2021)Aerochair Integrative design methodologies for lightweight carbon fiber furniture design, , and . eCAADe 37 / SIGraDi Conference (eCAADe: Education and Research in Computer Aided Architectural Design in europe) and (SIGraDi: Sociedad Iberoamericana de Gráfica Digital), (September 2019)Design and development of an FRP-Timber hybrid building system for multi-story applications in architecture: Maison Fibre, , , , , , , , and . Realignments: Toward Critical Computation - ACADIA 2021, (2021)Component Data Protocols for the Fabrication of Coreless-Wound Structural Building Components in the BUGA Fibre Pavilion and Maison Fibre, , , , , , , , , and . (2024)Slack Pack: Fabrication System for the Dual Robotic Winding of Spatial Fiber Structures, , , , , and . Phygital Intelligence, page 476--491. Singapore, Springer Nature Singapore, (2024)Monitoring the production process of lightweight fibrous structures using terrestrial laser scanning, , , , , and . 5th Joint International Symposium on Deformation Monitoring, Valencia, Spain, (2022)Spatial Winding: Cooperative Heterogeneous Multi-Robot System for Fibrous Structures, , , , and . Construction Robotics, 4 (3-4): 205-215 (2020)Visualization for Architecture, Engineering, and Construction: Shaping the Future of Our Built World, , , , , , , , , and 1 other author(s). IEEE Computer Graphics and Applications, (2022)