This article has been reviewed according to Science X's editorial process and policies. Editors have highlighted the following attributes while ensuring the content's credibility: In a dry shrubland, a gecko sprints toward shelter. Its greatest danger is not a predator, although hawks circle overhead and sand cats wait in ambush.
Rather, its most pressing concern is dehydration. Its skin is paper-thin; water can evaporate from its body into the dry air more quickly than it can replenish it. Fortunately, evolution has given it an adaptation: thin, nanoscopic hairs, called setulae, that cover its body and trap moisture.
While scientists have known about setulae for years, they have never been able to conclusively determine their precise function. However, they often appear in species of geckos and chameleons that live in arid or semiarid environments. In Biointerphases, researchers from Kiel University sought to explore whether setulae might help prevent water from escaping and keep the lizards from drying out.
"In biology, nothing appears just for fun. Everything appears due to the combination of mutations and the process of natural selection," said author Stanislav Gorb. "So what is the original function of these kinds of structures?
The idea was to prove whether the microstructure would reduce evaporation." The researchers created a simplified computational model of the gecko's skin, complete with a row of setulae. Using fluid dynamics models, they simulated airflow across the skin, evaluating the effects of the nanoscale hairs. There was a possibility that, by increasing surface area, the hairs would increase evaporation and cause the lizards to lose water even faster.
But the researchers found that, thanks to their precise arrangement, the setulae trap air between one another, sheltering the skin and retaining water. "The nanoscale structure generates a boundary layer, which means that the water molecules that leave the surface bounce many times in the confined space, and some of them come back," said Gorb. The researchers plan to confirm their results with experiments using artificial skin or real skin that geckos have previously shed.
Extract — continue reading at the source.