The optical properties of the crystalline lenses were studied in a variety of large predatory teleosts (bony fishes) that forage in the open ocean, some of them at considerable depths. We found the first fish lenses that are free of measurable longitudinal spherical aberration, i.e., are perfectly monofocal, in contrast to the multifocal lenses that are typical for smaller fishes living close to the surface. In fact, none of the lenses investigated in this study were clearly multifocal. Most, but not all, of the lenses had long normalized focal lengths (focal length/lens radius) of up to 3.3 lens radii. A monofocal lens of long focal length, combined with spectrally suitably placed cone pigments, may be the optimal solution for vision of hi...
I have investigated some of the biological regulatory mechanisms governing the development of crysta...
Crystalline lenses with multiple focal lengths in monochromatic light (multifocal lenses) are presen...
Light rays of different wavelengths are focused at different distances when they pass through a lens...
The optical properties of the crystalline lenses were studied in a variety of large predatory teleos...
Vision is an important source of information for many animals. The lens plays a central role in the ...
In the sea, visual scenes change dramatically with depth. At shallow and moderate depths (\u3c1000 m...
The optical properties of crystalline lenses were studied in eleven species of coral reef fish from ...
AbstractIn the sea, visual scenes change dramatically with depth. At shallow and moderate depths (<1...
We investigated whether the development of the vertebrate crystalline lens is sensitive to visual in...
In a typical fish eye, the crystalline lens is the only refractive element. It is spherical in shape...
AbstractWe investigated whether the development of the vertebrate crystalline lens is sensitive to v...
Many fishes have well-developed visual systems with color vision capabilities. The crystalline lens ...
In the sea, visual scenes change dramatically with depth. At shallow and moderate depths (\u3c1000 \...
The sharpness and thus information content of the retinal image in the eye depends on the optical qu...
Many fish and some terrestrial animals have multifocal lenses that compensate for chromatic aberrati...
I have investigated some of the biological regulatory mechanisms governing the development of crysta...
Crystalline lenses with multiple focal lengths in monochromatic light (multifocal lenses) are presen...
Light rays of different wavelengths are focused at different distances when they pass through a lens...
The optical properties of the crystalline lenses were studied in a variety of large predatory teleos...
Vision is an important source of information for many animals. The lens plays a central role in the ...
In the sea, visual scenes change dramatically with depth. At shallow and moderate depths (\u3c1000 m...
The optical properties of crystalline lenses were studied in eleven species of coral reef fish from ...
AbstractIn the sea, visual scenes change dramatically with depth. At shallow and moderate depths (<1...
We investigated whether the development of the vertebrate crystalline lens is sensitive to visual in...
In a typical fish eye, the crystalline lens is the only refractive element. It is spherical in shape...
AbstractWe investigated whether the development of the vertebrate crystalline lens is sensitive to v...
Many fishes have well-developed visual systems with color vision capabilities. The crystalline lens ...
In the sea, visual scenes change dramatically with depth. At shallow and moderate depths (\u3c1000 \...
The sharpness and thus information content of the retinal image in the eye depends on the optical qu...
Many fish and some terrestrial animals have multifocal lenses that compensate for chromatic aberrati...
I have investigated some of the biological regulatory mechanisms governing the development of crysta...
Crystalline lenses with multiple focal lengths in monochromatic light (multifocal lenses) are presen...
Light rays of different wavelengths are focused at different distances when they pass through a lens...