The diverse colours of bird feathers are produced by both pigments and nanostructures, and can have substantial thermal consequences. This is because reflectance, transmittance and absorption of differently coloured tissues affect the heat loads acquired from solar radiation. Using reflectance measurements and heating experiments on sunbird museum specimens, we tested the hypothesis that colour and their colour producing mechanisms affect feather surface heating and the heat transferred to skin level. As predicted, we found that surface temperatures were strongly correlated with plumage reflectivity when exposed to a radiative heat source and, likewise, temperatures reached at skin level decreased with increasing reflectivity. Indeed, nanos...
Dynamic changes in integumentary color occur in cases as diverse as the neurologically controlled ir...
Developmental constraints and trade-offs can limit diversity, but organisms have repeatedly evolved ...
Animal pigmentation has evolved because of several adaptive functions. In the case of pigmentation p...
The visible spectrum represents a fraction of the sun’s radiation, a large portion of which is withi...
The visible spectrum represents a fraction of the sun's radiation, a large portion of which is withi...
The visible spectrum represents a fraction of the sun’s radiation, a large portion of which is withi...
<div><p>Abstract</p><p>Research on the optical properties of animal integuments, including fur, feat...
Research on the optical properties of animal integuments, including fur, feather, skin and cuticle, ...
SYNOPSIS. The plumage of birds provides a critical thermal buffer between the animal and its environ...
Non-iridescent structural plumage color is typically produced by coherent scattering of light within...
Many birds have fascinating colours generated by specialized nanoscopic structures inside their feat...
Non-iridescent structural plumage color is typically produced by coherent scattering of light within...
Iridescence is produced by coherent scattering of light waves from alternating layers of materials o...
The bright, saturated iridescent colours of feathers are commonly produced by single and multi-layer...
Honest advertisement models posit that sexually selected traits are costly to produce, maintain or o...
Dynamic changes in integumentary color occur in cases as diverse as the neurologically controlled ir...
Developmental constraints and trade-offs can limit diversity, but organisms have repeatedly evolved ...
Animal pigmentation has evolved because of several adaptive functions. In the case of pigmentation p...
The visible spectrum represents a fraction of the sun’s radiation, a large portion of which is withi...
The visible spectrum represents a fraction of the sun's radiation, a large portion of which is withi...
The visible spectrum represents a fraction of the sun’s radiation, a large portion of which is withi...
<div><p>Abstract</p><p>Research on the optical properties of animal integuments, including fur, feat...
Research on the optical properties of animal integuments, including fur, feather, skin and cuticle, ...
SYNOPSIS. The plumage of birds provides a critical thermal buffer between the animal and its environ...
Non-iridescent structural plumage color is typically produced by coherent scattering of light within...
Many birds have fascinating colours generated by specialized nanoscopic structures inside their feat...
Non-iridescent structural plumage color is typically produced by coherent scattering of light within...
Iridescence is produced by coherent scattering of light waves from alternating layers of materials o...
The bright, saturated iridescent colours of feathers are commonly produced by single and multi-layer...
Honest advertisement models posit that sexually selected traits are costly to produce, maintain or o...
Dynamic changes in integumentary color occur in cases as diverse as the neurologically controlled ir...
Developmental constraints and trade-offs can limit diversity, but organisms have repeatedly evolved ...
Animal pigmentation has evolved because of several adaptive functions. In the case of pigmentation p...