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Multi-scalar computational fabrication and construction of bio-based building envelopes – the livMatS biomimetic shell, , , , , , , , , and 9 other author(s). Fabricate 2024: Creating Resourceful Futures, page 22-31. UCL Press, (2024)Multi-Actor Fabrication for Digital Timber Construction, , , , , , and . Digital Design Reconsidered : Proceedings of the 41st Conference on Education and Research in Computer Aided Architectural Design in Europe (eCAADe 2023), 1, page 417-426. Brussels, eCAADe, (2023)Computational design and robotic fabrication for high environmental quality timber constructions: the livMatS Biomimetic Shell case study, , , , , , , , , and 6 other author(s). Dataset, (2024)Bridging the Gap between Design and Fabrication: Prediction Models for Co-Design in the Era of Industry 4.0, and . (2024)Multi-protocol Messaging and Streaming Broker for Grasshopper (RabbitMQ_GH), and . Software, (2024)Reinforcement Arrangement Data, , , , and . Dataset, (2024)Related to: Orozco, L., Krtschil, A., Skoury, L., Knippers, J., & Menges, A. (2022). Arrangement of reinforcement in variable density timber slab systems for multi-story construction. International Journal of Architectural Computing, vol. 20, no. 4, pp. 707-727. doi: 10.1177/14780771221135003.iHRC: An AR-based interface for intuitive, interactive and coordinated task sharing between humans and robots in building construction, , , , and . 38th International Symposium on Automation and Robotics in Construction (ISARC 2021), page 25-32. The International Association for Automation and Robotics in Construction, (2021)A Framework for Managing Data in Multi-actor Fabrication Processes, , , , , and . Towards Radical Regeneration : Design Modelling Symposium Berlin 2022, page 601-615. Cham, Springer, (2023)Multi‐Akteur‐Fabrikation im Bauwesen, , , , , , , , , and . Bautechnik, 100 (10): 637-647 (2025)Controlled Anisotropy: A Design-to-Assembly Method for Resource-Efficient Timber Structures with Fibrous Joints, , , , , , and . (November 2024)