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Cryo-Scanning Electron Microscopy Investigation of the Octopus Vulgaris Arm Structures for the Design of an Octopus-Like Arm Artefact

机译:章鱼臂结构的低温扫描电子显微镜研究,用于设计类似于章鱼的臂制品

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Octopus vulgaris is a cephalopod of the Octopodidae family. It has four pairs of arms and two rows of suckers which perform many functions, including bending and elongation. For this reason the octopus was chosen as model to develop a new generation of soft-body robots. In order to explain some of the fine structures of the octopus arm in relation to its specific ability, we examined the external and internal structures of O. vulgaris arms in a frozen-hydrated state using cryo-scanning electron microscopy. The arms showed skin with a very complex design that is useful to elongation, and a pore pattern distribution on their surface which is functional to cutaneous oxygen uptake. The analysis of freeze-fractured frozen-hydrated arm samples allowed us to describe the developmental differences in the relative proportion of the areas of axial nerve cord, intrinsic and extrinsic musculature, in relation to the growth of the arms and of the increase in functional capability. In the suckers, we analyzed the shedding mechanisms in the outer part of the infundibulum and described the outer and inner characteristics of the denticles, showing in detail their pore system, which is fundamental for their ability to explore the environment. These results are discussed by considering their possible application in the design of new octopus-like artefacts, which will be able to take advantage of some of these ultrastructure characteristics and achieve advanced bioinspired functionalities. (C) 2015 Wiley Periodicals, Inc.
机译:寻常章鱼是章鱼科的头足类动物。它具有四对臂和两排吸盘,可执行许多功能,包括弯曲和伸长。因此,章鱼被选为开发新一代软体机器人的模型。为了解释章鱼臂的某些精细结构与其特定能力的关系,我们使用冷冻扫描电子显微镜检查了冷冻水合状态下寻常型拟南芥臂的外部和内部结构。手臂显示出具有非常复杂的设计的皮肤,可用于伸长,并且在其表面上的孔纹分布对皮肤的氧气吸收起作用。冷冻断裂的冷冻水合手臂样本的分析使我们能够描述与臂的生长和功能能力的增加有关的轴向神经线,内在和外在肌肉组织的相对比例的发育差异。在吸盘中,我们分析了漏斗外部的脱落机理,并描述了细齿的外部和内部特征,详细显示了其细孔系统,这对于它们探索环境的能力至关重要。讨论了这些结果,并考虑了它们在设计新的章鱼状手工艺品中的可能应用,这些章鱼将能够利用其中的一些超微结构特征并获得先进的生物启发功能。 (C)2015年Wiley Periodicals,Inc.

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