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A protein-coated micro-sucker patch inspired by octopus for adhesion in wet conditions

机译:由八达通鼓发的蛋白质涂层微吸盘贴片,用于在潮湿条件下粘附

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摘要

Abstract In medical robotics, micromanipulation becomes particularly challenging in the presence of blood and secretions. Nature offers many examples of adhesion strategies, which can be divided into two macro-categories: morphological adjustments and chemical adaptations. This paper analyzes how two successful specializations from different marine animals can converge into a single biomedical device usable in moist environments. Taking inspiration from the morphology of the octopus sucker and the chemistry of mussel secretions, we developed a protein-coated octopus-inspired micro-sucker device that retains in moist conditions about half of the adhesion it shows in dry environments. From a robotic perspective, this study emphasizes the advantages of taking inspiration from specialized natural solutions to optimize standard robotic designs.
机译:摘要在医疗机器人中,微操纵在血液和分泌物存在下尤其具有挑战性。自然提供了许多粘附策略的例子,可分为两种宏类别:形态调整和化学适应。本文分析了不同海洋动物的两种成功专业化如何融合到可用于潮湿环境中的单一生物医学装置中。从章鱼吸盘的形态和贻贝分泌物的形态中汲取灵感,我们开发了一种蛋白质涂层章鱼启发的微吸盘装置,其在干燥环境中呈现约一半的湿润条件。从机器人的角度来看,本研究强调了采用专业自然解决方案的灵感来优化标准机器人设计的优势。

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