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Froghoppers jump from smooth plant surfaces by piercing them with sharp spines

Hanns Hagen Goetzke, Jonathan G. Pattrick, Walter Federle

Year
2019
Citations
29
Access
Open access

Abstract

froghoppers performed strong jumps without any slipping. We discovered that the insects produced traction during the acceleration phase by piercing these substrates with sharp spines of their tibia and tarsus. High-speed microscopy recordings of hind legs during the acceleration phase of jumps revealed that the spine tips indented and plastically deformed the substrate. On ivy leaves, the spines of jumping froghoppers perforated the cuticle and epidermal cell walls, and wounds could be visualized after the jumps by methylene blue staining and scanning electron microscopy. Improving attachment performance by indenting or piercing plant surfaces with sharp spines may represent a widespread but previously unrecognized strategy utilized by plant-living insects. This attachment mechanism may also provide inspiration for the design of robotic grippers.

Keywords

JumpingAnatomySlippingBiologySPINE (molecular biology)JumpMaterials sciencePaleontologyGeometryCell biology

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