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         "abstract": "In the context of the climate crisis and increasing urbanization, there is an urgent necessity to expand the  typological possibilities in timber construction. Wide-span, point-supported timber systems for multi-story buildings offer \r\nthe potential to substitute COၷ-intensive construction materials such as concrete and steel, utilize buildings as carbon \r\nsinks, and provide additional qualitative living and working spaces in urban areas. The development and incremental refinement of bespoke systems from initial conceptualization to technical feasibility and regulatory approval require the \r\nintegration and coordination of comprehensive expert knowledge. A highly integrative approach and interdisciplinary \r\nexchange of expert knowledge within the research team, as well as iterative and reciprocal expert knowledge exchange \r\nwith innovative stakeholders from the construction industry, are imperative. This paper presents the development of a co\u0002design framework for the IntCDC Multi-Story Timber Building System (MSTBS), which facilitates reciprocal and iterative knowledge exchange within the interdisciplinary core research team, as well as between researchers and stakeholders \r\nfrom the construction industry. The research demonstrates how an organizational co-design framework fosters the methodical collaboration between research and industry partners and enables the development of a novel timber building system, contributing to the transition towards more sustainable building practices.",
         "venue" : "Brisbane, Australia",
         
         "language" : "eng",
         
         "eventtitle" : "14th World Conference on Timber Engineering 2025 (WCTE 2025)",
         
         "doi" : "https://doi.org/10.52202/080513-0012",
         
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            	{"first" : "Nina M.",	"last" : "Stadel"},
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         "volume": "23","number": "2","pages": "110-117","abstract": "One of the heavily burdened actors in the operating theatre is the scrub nurse who is responsible for the organized and orderly workflow in the operating theatre. One of the main tasks of the scrub nurse is to perform quick and appropriate instrumentation because fast and proactive instrumentation is crucial for the success of the operation. The actual deficiency of specialist staff in the healthcare sector is motivating the automation of repetitive tasks and simple work steps in order to relieve staff in the future and free up capacity for complex and important activities. A robotic assistance system appears to be a suitable solution for many of these challenges. The vision is to develop advanced assistance systems for the handling of instruments in future surgical procedures. In this work, surgery of the carpal tunnel was chosen as example task. The focus lied on the type and scope of the individual working steps. The analysis was carried out by video analyses and by observing corresponding surgical procedures. Based on the results of the analysis, potentials for improving the workflow were derived and requirements for a robotic assistance system were defined.",
         "bibtexKey": "RePEc:zna:indecs:v:23:y:2025:i:2:p:110-117"

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         "volume": "23","number": "2","pages": "110-117","abstract": "One of the heavily burdened actors in the operating theatre is the scrub nurse who is responsible for the organized and orderly workflow in the operating theatre. One of the main tasks of the scrub nurse is to perform quick and appropriate instrumentation because fast and proactive instrumentation is crucial for the success of the operation. The actual deficiency of specialist staff in the healthcare sector is motivating the automation of repetitive tasks and simple work steps in order to relieve staff in the future and free up capacity for complex and important activities. A robotic assistance system appears to be a suitable solution for many of these challenges. The vision is to develop advanced assistance systems for the handling of instruments in future surgical procedures. In this work, surgery of the carpal tunnel was chosen as example task. The focus lied on the type and scope of the individual working steps. The analysis was carried out by video analyses and by observing corresponding surgical procedures. Based on the results of the analysis, potentials for improving the workflow were derived and requirements for a robotic assistance system were defined.",
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         "author": [ 
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            	{"first" : "Simon",	"last" : "Bechert"},
            	{"first" : "Christoph",	"last" : "Schlopschnat"},
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         "volume": "79","pages": "109524","abstract": "Segmented timber shells (STS) represent an emerging modular system for lightweight, free-form architecture. While prior applications have largely been limited to temporary demonstrators, this paper presents the livMatS Biomimetic Shell\u2014the first permanent, fully functioning building realised using a segmented timber shell system \u2014marking a major step toward scalable and long-term architectural integration. The project demonstrates a holistic, digitally driven approach that integrates co-design across architecture, engineering, and robotic fabrication, in close collaboration with industry partners. The research applies an integrative structural design methodology, combining parametric shape analysis and advanced finite element methods to optimise the shell\u2019s form, segmentation, and structural performance. A central innovation is the refined hollow timber cassette system, which reduces material volume and structural weight while enabling insulation integration and structural adaptability. Additional contributions include a bifurcated shell geometry that incorporates a skylight and an innovative weather-responsive shading system. As a full-scale scientific demonstrator, the livMatS Biomimetic Shell positions STS as a viable, sustainable, and structurally robust solution for contemporary long-span timber architecture.",
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            	{"first" : "Robert A.",	"last" : "Weinstein"}
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         ],
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            	{"first" : "Bastiaan H. J.",	"last" : "Wittekamp"},
            	{"first" : "Evelien A. N.",	"last" : "Oostdijk"},
            	{"first" : "Brian H.",	"last" : "Cuthbertson"},
            	{"first" : "Christian",	"last" : "Brun-Buisson"},
            	{"first" : "Marc J. M.",	"last" : "Bonten"}
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            	{"first" : "Benoit",	"last" : "Misset"},
            	{"first" : "Jordi",	"last" : "Valles"},
            	{"first" : "Frederico",	"last" : "Bruzzi de Carvalho"},
            	{"first" : "José Artur",	"last" : "Paiva"},
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            	{"first" : "Xiaochun",	"last" : "Ma"},
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            	{"first" : "Massimo",	"last" : "Antonelli"},
            	{"first" : "Marc J. M.",	"last" : "Bonten"},
            	{"first" : "Akos",	"last" : "Csomos"},
            	{"first" : "Wolfgang A.",	"last" : "Krueger"},
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            	{"first" : "Jeffrey",	"last" : "Lipman"},
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            	{"first" : "Claude",	"last" : "Martin"},
            	{"first" : "Jordi",	"last" : "Rello"},
            	{"first" : "Georges",	"last" : "Dimopoulos"},
            	{"first" : "Jean-Francois",	"last" : "Timsit"}
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