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构建活体建筑:生物杂交机器人新应用相关技术述评。

Constructing living buildings: a review of relevant technologies for a novel application of biohybrid robotics.

机构信息

Institute of Computer Engineering, University of Lübeck, Lübeck, Germany.

School of Architecture, Centre for IT and Architecture, Royal Danish Academy, Copenhagen, Denmark.

出版信息

J R Soc Interface. 2019 Jul 26;16(156):20190238. doi: 10.1098/rsif.2019.0238. Epub 2019 Jul 31.

Abstract

Biohybrid robotics takes an engineering approach to the expansion and exploitation of biological behaviours for application to automated tasks. Here, we identify the construction of living buildings and infrastructure as a high-potential application domain for biohybrid robotics, and review technological advances relevant to its future development. Construction, civil infrastructure maintenance and building occupancy in the last decades have comprised a major portion of economic production, energy consumption and carbon emissions. Integrating biological organisms into automated construction tasks and permanent building components therefore has high potential for impact. Live materials can provide several advantages over standard synthetic construction materials, including self-repair of damage, increase rather than degradation of structural performance over time, resilience to corrosive environments, support of biodiversity, and mitigation of urban heat islands. Here, we review relevant technologies, which are currently disparate. They span robotics, self-organizing systems, artificial life, construction automation, structural engineering, architecture, bioengineering, biomaterials, and molecular and cellular biology. In these disciplines, developments relevant to biohybrid construction and living buildings are in the early stages, and typically are not exchanged between disciplines. We, therefore, consider this review useful to the future development of biohybrid engineering for this highly interdisciplinary application.

摘要

生物混合机器人采用工程方法来扩展和利用生物行为,以应用于自动化任务。在这里,我们将建造活的建筑物和基础设施确定为生物混合机器人的一个高潜力应用领域,并回顾与其未来发展相关的技术进步。在过去几十年中,建筑、民用基础设施维护和建筑物入住构成了经济生产、能源消耗和碳排放的主要部分。因此,将生物有机体集成到自动化施工任务和永久建筑物组件中具有很大的影响潜力。活体材料相对于标准合成建筑材料具有多个优势,包括对损坏的自我修复、随时间的推移而增加而不是降低结构性能、对腐蚀性环境的弹性、支持生物多样性以及减轻城市热岛效应。在这里,我们回顾了相关技术,这些技术目前是分散的。它们涵盖了机器人技术、自组织系统、人工生命、建筑自动化、结构工程、建筑、生物工程、生物材料以及分子和细胞生物学。在这些学科中,与生物混合建筑和活建筑相关的发展处于早期阶段,通常在学科之间没有交流。因此,我们认为这篇综述对这一高度跨学科应用的生物混合工程的未来发展是有用的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aff8/6685033/8d7a6ab223b1/rsif20190238-g1.jpg

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