Natural releasable attachment systems of insect legs, where attachment-detachment performances are often very fast, seem to be optimized to get a maximum of real contact to the substratum. Tarsi of Tettigonia viridissima bear flexible attachment pads with unusual ultrastructural architecture of the cuticle. The indentation of the attachment pads was measured under different loads using a force-tester. Since the mechanical properties are influenced by material structure, the freeze-substitution experiments were undertaken to investigate the influence of loads on material structure. Both profile changes of the surface and the orientation of cuticle microfibrils were visualized by means of scanning electron microscopy followed by fracturing of...
A typical feature of many biological materials is their ability to adapt to mechanical load. Bone re...
Many animals are able to scale smooth surfaces using adhesive structures on their feet. These organs...
Insects have developed different structures to adhere to surfaces. Most common are smooth and hairy ...
The morphology, ultrastructure, effective elastic modulus, and adhesive properties of two different ...
The tarsi of the cricket Tettigonia viridissima bear flexible attachment pads that are able to defor...
Evolutionarily optimized frictional devices of insects are usually adapted to attach to a variety of...
Adhesive pads are functional systems with specific micro- and nanostructures which evolved as a resp...
To enable strong attachment forces between pad and substrata, a high proximity between contacting su...
Many insects with smooth adhesive pads can rapidly enlarge their contact area by centripetal pulls o...
SYNOPSIS. Design of attachment devices in insects varies enormously in relation to different functio...
Many insects with smooth adhesive pads can rapidly enlarge their contact area by centripetal pulls o...
Design of attachment devices in insects varies enormously in relation to different functional loads....
The flexibility of insect adhesive pads is crucial for their ability to attach on rough surfaces. He...
The cuticle exoskeleton plays a key role in facilitating the evolutionary success of insects. Since ...
Experimental limitations often prevent to perform biomechanical measurements on fresh arthropod cuti...
A typical feature of many biological materials is their ability to adapt to mechanical load. Bone re...
Many animals are able to scale smooth surfaces using adhesive structures on their feet. These organs...
Insects have developed different structures to adhere to surfaces. Most common are smooth and hairy ...
The morphology, ultrastructure, effective elastic modulus, and adhesive properties of two different ...
The tarsi of the cricket Tettigonia viridissima bear flexible attachment pads that are able to defor...
Evolutionarily optimized frictional devices of insects are usually adapted to attach to a variety of...
Adhesive pads are functional systems with specific micro- and nanostructures which evolved as a resp...
To enable strong attachment forces between pad and substrata, a high proximity between contacting su...
Many insects with smooth adhesive pads can rapidly enlarge their contact area by centripetal pulls o...
SYNOPSIS. Design of attachment devices in insects varies enormously in relation to different functio...
Many insects with smooth adhesive pads can rapidly enlarge their contact area by centripetal pulls o...
Design of attachment devices in insects varies enormously in relation to different functional loads....
The flexibility of insect adhesive pads is crucial for their ability to attach on rough surfaces. He...
The cuticle exoskeleton plays a key role in facilitating the evolutionary success of insects. Since ...
Experimental limitations often prevent to perform biomechanical measurements on fresh arthropod cuti...
A typical feature of many biological materials is their ability to adapt to mechanical load. Bone re...
Many animals are able to scale smooth surfaces using adhesive structures on their feet. These organs...
Insects have developed different structures to adhere to surfaces. Most common are smooth and hairy ...