When the adhesive toe pads of geckos become wet, they become ineffective in enabling geckos to stick to substrates. This result is puzzling given that many species of gecko are endemic to tropical environments where water covered surfaces are ubiquitous. We hypothesized that geckos can recover adhesive capabilities following exposure of their toe pads to water by walking on a dry surface, similar to the active self-cleaning of dirt particles. We measured the time it took to recover maximum shear adhesion after toe pads had become wet in two groups, those that were allowed to actively walk and those that were not. Keeping in mind the importance of substrate wettability to adhesion on wet surfaces, we also tested geckos on hydrophilic glass a...
Geckos can freely climb on walls and ceilings against their body weight at speed of over 1ms-1. Swit...
Understanding the challenges faced by organisms moving within their environment is essential to comp...
AbstractGeckos can climb steadily and quickly on different surfaces under various environmental cond...
When the adhesive toe pads of geckos become wet, they become ineffective in enabling geckos to stick...
Despite profound interest in the mechanics and performance of the gecko adhesive system, relatively ...
Despite profound interest in the mechanics and performance of the gecko adhesive system, relatively ...
Gecko toe pads show strong adhesion on various surfaces yet remain remarkably clean around everyday ...
Although we now have thousands of studies focused on the nano-, micro-, and whole-animal mechanics o...
Geckos can freely climb on walls and ceilings against their body weight at speed of over 1ms-1. Swit...
SYNOPSIS. The extraordinary adhesive capabilities of geckos have challenged explanation for millenni...
SYNOPSIS. The extraordinary adhesive capabilities of geckos have challenged explanation for millenni...
Many geckos use adhesive toe pads on the bottom of their digits to attach to surfaces with remarkabl...
Many geckos use adhesive toe pads on the bottom of their digits to attach to surfaces with remarkabl...
Many geckos use adhesive toe pads on the bottom of their digits to attach to surfaces with remarkabl...
Many geckos use adhesive toe pads on the bottom of their digits to attach to surfaces with remarkabl...
Geckos can freely climb on walls and ceilings against their body weight at speed of over 1ms-1. Swit...
Understanding the challenges faced by organisms moving within their environment is essential to comp...
AbstractGeckos can climb steadily and quickly on different surfaces under various environmental cond...
When the adhesive toe pads of geckos become wet, they become ineffective in enabling geckos to stick...
Despite profound interest in the mechanics and performance of the gecko adhesive system, relatively ...
Despite profound interest in the mechanics and performance of the gecko adhesive system, relatively ...
Gecko toe pads show strong adhesion on various surfaces yet remain remarkably clean around everyday ...
Although we now have thousands of studies focused on the nano-, micro-, and whole-animal mechanics o...
Geckos can freely climb on walls and ceilings against their body weight at speed of over 1ms-1. Swit...
SYNOPSIS. The extraordinary adhesive capabilities of geckos have challenged explanation for millenni...
SYNOPSIS. The extraordinary adhesive capabilities of geckos have challenged explanation for millenni...
Many geckos use adhesive toe pads on the bottom of their digits to attach to surfaces with remarkabl...
Many geckos use adhesive toe pads on the bottom of their digits to attach to surfaces with remarkabl...
Many geckos use adhesive toe pads on the bottom of their digits to attach to surfaces with remarkabl...
Many geckos use adhesive toe pads on the bottom of their digits to attach to surfaces with remarkabl...
Geckos can freely climb on walls and ceilings against their body weight at speed of over 1ms-1. Swit...
Understanding the challenges faced by organisms moving within their environment is essential to comp...
AbstractGeckos can climb steadily and quickly on different surfaces under various environmental cond...