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Hiding the squid: patterns in artificial cephalopod skin

机译:隐藏鱿鱼:人工头足类动物皮肤中的图案

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摘要

Cephalopods employ their chromomorphic skins for rapid and versatile active camouflage and signalling effects. This is achieved using dense networks of pigmented, muscle-driven chromatophore cells which are neurally stimulated to actuate and affect local skin colouring. This allows cephalopods to adopt numerous dynamic and complex skin patterns, most commonly used to blend into the environment or to communicate with other animals. Our ultimate goal is to create an artificial skin that can mimic such pattern generation techniques, and that could produce a host of novel and compliant devices such as cloaking suits and dynamic illuminated clothing. This paper presents the design, mathematical modelling and analysis of a dynamic biomimetic pattern generation system using bioinspired artificial chromatophores. The artificial skin is made from electroactive dielectric elastomer: a soft, planar-actuating smart material that we show can be effective at mimicking the actuation of biological chromatophores. The proposed system achieves dynamic pattern generation by imposing simple local rules into the artificial chromatophore cells so that they can sense their surroundings in order to manipulate their actuation. By modelling sets of artificial chromatophores in linear arrays of cells, we explore the capability of the system to generate a variety of dynamic pattern types. We show that it is possible to mimic patterning seen in cephalopods, such as the passing cloud display, and other complex dynamic patterning.
机译:头足类动物利用它们的变色皮肤来实现快速而通用的主动伪装和信号传导作用。这是通过使用色素沉着的,由肌肉驱动的染色体细胞的密集网络来实现的,该细胞在神经上受到刺激以致动并影响局部皮肤的颜色。这使得头足类动物可以采用多种动态和复杂的皮肤模式,最常用于融入环境或与其他动物交流。我们的最终目标是创造一种人造皮肤,该人造皮肤可以模仿这种图案生成技术,并且可以生产出许多新颖且合规的设备,例如穿衣套装和动态照明的衣服。本文介绍了使用仿生人工色谱的动态仿生图案生成系统的设计,数学建模和分析。人造皮肤由电活性介电弹性体制成:我们展示的一种柔软的,平面驱动的智能材料可以有效地模仿生物色谱的驱动。所提出的系统通过将简单的局部规则强加到人工染色体细胞中来实现动态模式生成,以便它们可以感知周围环境以操纵其驱动力。通过对细胞的线性阵列中的人工染色体组进行建模,我们探索了系统生成各种动态模式类型的能力。我们表明,有可能模仿在头足类动物中看到的图案,例如经过的云层显示以及其他复杂的动态图案。

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