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Autonomously shaping natural climbing plants: a bio-hybrid approach

机译:自主塑造自然攀缘植物:一种生物混合方法

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摘要

Plant growth is a self-organized process incorporating distributed sensing, internal communication and morphology dynamics. We develop a distributed mechatronic system that autonomously interacts with natural climbing plants, steering their behaviours to grow user-defined shapes and patterns. Investigating this bio-hybrid system paves the way towards the development of living adaptive structures and grown building components. In this new application domain, challenges include sensing, actuation and the combination of engineering methods and natural plants in the experimental set-up. By triggering behavioural responses in the plants through light spectra stimuli, we use static mechatronic nodes to grow climbing plants in a user-defined pattern at a two-dimensional plane. The experiments show successful growth over periods up to eight weeks. Results of the stimuli-guided experiments are substantially different from the control experiments. Key limitations are the number of repetitions performed and the scale of the systems tested. Recommended future research would investigate the use of similar bio-hybrids to connect construction elements and grow shapes of larger size.
机译:植物生长是一个自组织的过程,结合了分布式传感,内部通信和形态动力学。我们开发了一种分布式机电一体化系统,该系统可与自然攀爬植物自动交互,控制其行为以增长用户定义的形状和图案。对这种生物混合系统的研究为生活适应性结构和建筑构件的发展铺平了道路。在这个新的应用领域中,挑战包括传感,促动以及在实验设置中将工程方法与天然植物结合起来。通过触发植物通过光谱刺激的行为响应,我们使用静态机电一体化节点以用户定义的模式在二维平面上生长攀援植物。实验表明,在长达八周的时间内可以成功生长。刺激引导实验的结果与对照实验有很大不同。关键限制是执行的重复次数和测试的系统规模。建议的未来研究将调查使用类似的生物杂交体来连接建筑元素并生长更大尺寸的形状。

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