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受节肢动物眼睛启发而设计的数字相机。

Digital cameras with designs inspired by the arthropod eye.

机构信息

Department of Materials Science and Engineering, Beckman Institute for Advanced Science and Technology, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA.

出版信息

Nature. 2013 May 2;497(7447):95-9. doi: 10.1038/nature12083.

Abstract

In arthropods, evolution has created a remarkably sophisticated class of imaging systems, with a wide-angle field of view, low aberrations, high acuity to motion and an infinite depth of field. A challenge in building digital cameras with the hemispherical, compound apposition layouts of arthropod eyes is that essential design requirements cannot be met with existing planar sensor technologies or conventional optics. Here we present materials, mechanics and integration schemes that afford scalable pathways to working, arthropod-inspired cameras with nearly full hemispherical shapes (about 160 degrees). Their surfaces are densely populated by imaging elements (artificial ommatidia), which are comparable in number (180) to those of the eyes of fire ants (Solenopsis fugax) and bark beetles (Hylastes nigrinus). The devices combine elastomeric compound optical elements with deformable arrays of thin silicon photodetectors into integrated sheets that can be elastically transformed from the planar geometries in which they are fabricated to hemispherical shapes for integration into apposition cameras. Our imaging results and quantitative ray-tracing-based simulations illustrate key features of operation. These general strategies seem to be applicable to other compound eye devices, such as those inspired by moths and lacewings (refracting superposition eyes), lobster and shrimp (reflecting superposition eyes), and houseflies (neural superposition eyes).

摘要

在节肢动物中,进化创造了一类非常复杂的成像系统,具有宽视场、低像差、高运动灵敏度和无限景深。在构建具有节肢动物眼睛的半球形、复眼排列的数字相机时,面临的一个挑战是,现有的平面传感器技术或传统光学技术无法满足基本设计要求。在这里,我们提出了一些材料、力学和集成方案,这些方案为具有近半球形状(约 160 度)的工作、节肢动物启发型相机提供了可扩展的途径。它们的表面密集分布着成像元件(人工小眼),其数量(180 个)与火蚁(Solenopsis fugax)和树皮甲虫(Hylastes nigrinus)的眼睛相当。这些设备将弹性复合光学元件与薄硅光电探测器的可变形阵列结合在一起,形成可以从制造时的平面几何形状弹性地转换为半球形的集成片,以便集成到复眼相机中。我们的成像结果和基于定量光线追踪的模拟说明了操作的关键特征。这些通用策略似乎适用于其他复眼设备,例如受蛾类和草蛉(折射重叠眼)、龙虾和虾(反射重叠眼)以及家蝇(神经重叠眼)启发的设备。

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