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作为抓握器的舌头。

The tongue as a gripper.

作者信息

Noel Alexis C, Hu David L

机构信息

The George W. Woodruff School of Mechanical Engineering, Georgia Institute of Technology, Atlanta, GA 30332, USA.

The George W. Woodruff School of Mechanical Engineering, Georgia Institute of Technology, Atlanta, GA 30332, USA

出版信息

J Exp Biol. 2018 Apr 10;221(Pt 7):jeb176289. doi: 10.1242/jeb.176289.

Abstract

Frogs, chameleons and anteaters are striking examples of animals that can grab food using only their tongue. How does the soft and wet surface of a tongue grip onto objects before they are ingested? Here, we review the diversity of tongue projection methods, tongue roughnesses and tongue coatings, our goal being to highlight conditions for effective grip and mobility. A softer tongue can reach farther: the frog tongue is 10 times softer than the human tongue and can extend to 130% of its length when propelled in a whip-like motion. Roughness can improve a tongue's grip: the spikes on a penguin tongue can be as large as fingernails, and help the penguin swallow fish. The saliva coating on the tongue, a non-Newtonian biofluid, can either lubricate or adhere to food. Frog saliva is 175 times more viscous than human saliva, adhering the tongue to slippery, furry or feathery food. We pay particular attention to using mathematical models such as the theory of capillarity, elasticity and friction to elucidate the parameters for effective tongue use across a variety of vertebrate species. Finally, we postulate how the use of wet and rough surfaces to simultaneously sense and grip may inspire new strategies in emerging technologies such as soft robots.

摘要

青蛙、变色龙和食蚁兽都是仅用舌头抓取食物的典型动物例子。在食物被摄入之前,柔软湿润的舌头表面是如何抓住物体的呢?在此,我们回顾了舌头伸出方式、舌头粗糙度和舌头涂层的多样性,我们的目标是突出有效抓握和灵活运动的条件。更柔软的舌头能伸得更远:青蛙的舌头比人类的舌头软10倍,在像鞭子一样的运动中被推动时能伸展到其长度的130%。粗糙度能增强舌头的抓握力:企鹅舌头上的尖刺可达指甲大小,有助于企鹅吞咽鱼类。舌头上的唾液涂层是一种非牛顿生物流体,既能润滑食物也能附着在食物上。青蛙唾液的粘性比人类唾液高175倍,能将舌头粘在光滑、有毛或有羽毛的食物上。我们特别关注运用数学模型,如毛细作用、弹性和摩擦理论,来阐明各种脊椎动物有效使用舌头的参数。最后,我们推测利用湿润和粗糙表面同时进行感知和抓握的方式可能会为软机器人等新兴技术带来新策略。

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