<div><p>Whirligig beetles (<i>Coleoptera</i>, <i>Gyrinidae</i>) can fly through the air, swiftly swim on the surface of water, and quickly dive across the air-water interface. The propulsive efficiency of the species is believed to be one of the highest measured for a thrust generating apparatus within the animal kingdom. The goals of this research were to understand the distinctive biological mechanisms that allow the beetles to swim and dive, while searching for potential bio-inspired robotics applications. Through static and dynamic measurements obtained using a combination of microscopy and high-speed imaging, parameters associated with the morphology and beating kinematics of the whirligig beetle's legs in swimming and diving were obta...
Some of the fastest and most extraordinary motions of the animal kingdom are generated by small anim...
The flight behaviors of insects have been extensively studied for a long time. The idea of making us...
Acquisition of new ecological opportunities is a major driver of adaptation and species diversificat...
Whirligig beetles (Coleoptera, Gyrinidae) can fly through the air, swiftly swim on the surface of wa...
International audienceWhirligig beetles (Coleoptera: Gyrinidae) are semi-aquatic insects with a morp...
Abstract The fast swimming speed, flexible cornering, and high propulsion efficiency of diving beetl...
Fundamentally, insects evolved on land and secondarily inhabited aquatic environments multiple times...
The locomotion of water beetles has been widely studied in biology owing to their remarkable swimmin...
Dytiscus marginalis simultaneously uses its hind legs to propel itself through the water. Previous w...
We present the results of a combined experimental and theoretical investigation of the dynamics of w...
Water beetles are proficient drag-powered swimmers, with oar-like legs. Inspired by this mechanism, ...
Controlled wetting and de-wetting of surfaces is a primary mechanism used by beetles in nature such ...
The controlled wetting and dewetting of surfaces is a primary mechanism used by beetles in nature, s...
The diving beetles (Dytiscidae, Coleoptera) are families of water beetles. When they see light, they...
Click beetles (Coleoptera: Elateridae) have evolved a unique jumping mechanism to right themselves w...
Some of the fastest and most extraordinary motions of the animal kingdom are generated by small anim...
The flight behaviors of insects have been extensively studied for a long time. The idea of making us...
Acquisition of new ecological opportunities is a major driver of adaptation and species diversificat...
Whirligig beetles (Coleoptera, Gyrinidae) can fly through the air, swiftly swim on the surface of wa...
International audienceWhirligig beetles (Coleoptera: Gyrinidae) are semi-aquatic insects with a morp...
Abstract The fast swimming speed, flexible cornering, and high propulsion efficiency of diving beetl...
Fundamentally, insects evolved on land and secondarily inhabited aquatic environments multiple times...
The locomotion of water beetles has been widely studied in biology owing to their remarkable swimmin...
Dytiscus marginalis simultaneously uses its hind legs to propel itself through the water. Previous w...
We present the results of a combined experimental and theoretical investigation of the dynamics of w...
Water beetles are proficient drag-powered swimmers, with oar-like legs. Inspired by this mechanism, ...
Controlled wetting and de-wetting of surfaces is a primary mechanism used by beetles in nature such ...
The controlled wetting and dewetting of surfaces is a primary mechanism used by beetles in nature, s...
The diving beetles (Dytiscidae, Coleoptera) are families of water beetles. When they see light, they...
Click beetles (Coleoptera: Elateridae) have evolved a unique jumping mechanism to right themselves w...
Some of the fastest and most extraordinary motions of the animal kingdom are generated by small anim...
The flight behaviors of insects have been extensively studied for a long time. The idea of making us...
Acquisition of new ecological opportunities is a major driver of adaptation and species diversificat...