In the world of midwater, mesopelagic animals, downwelling sunlight is filtered by the overlying water to a limited waveband centered near 475 nm. Consequently, the visual pigments of most of these species absorb maximally between 450 and 500 nm. The only exceptions occur in some fishes, which have additional visual pigments absorbing at long wavelengths (550-580 nm) matched to their red bioluminescence. We now find that the mesopelagic decapod shrimp Systellaspis debilis has two visual pigments. One of these absorbs maximally in the expected range (λmax = 498 nm). but the other is maximally sensitive at very short wavelengths, approaching the near-ultraviolet (λmax = 410 nm). The discovery of a visual receptor class absorbing at such short...
Light microscopy and extracellular electrophysiology were used to investigate eye structure and visu...
Light microscopy and extracellular electrophysiology were used to investigate eye structure and visu...
For all visually competent organisms, the driving force behind the adaptation of photoreceptors invo...
In the world of midwater, mesopelagic animals, downwelling sunlight is filtered by the overlying wat...
The spectral sensitivities of eight species of deep-sea decapod shrimps (Family Oplophoridae) were d...
The spectral sensitivities of eight species of deep-sea decapod shrimps (Family Oplophoridae) were d...
The role of UV light in the deep-sea environment has been discounted in the past, due to the assumpt...
The role of UV light in the deep-sea environment has been discounted in the past, due to the assumpt...
The spectral sensitivity of the deep-sea mysid, Gnathophausia ingens (Family Lophogastridae), was me...
The spectral sensitivity of the deep-sea mysid, Gnathophausia ingens (Family Lophogastridae), was me...
The behavioral sensitivities of five species of deep-sea crustaceans (order Decapoda:Acanthephyra cu...
The behavioral sensitivities of five species of deep-sea crustaceans (order Decapoda:Acanthephyra cu...
Several species of deep‐sea crustaceans possess unusually high spectral sensitivity to UV light, mea...
Several species of deep‐sea crustaceans possess unusually high spectral sensitivity to UV light, mea...
In the world of midwater, mesopelagic animals, downwelling sunlight is filtered by the overlying wat...
Light microscopy and extracellular electrophysiology were used to investigate eye structure and visu...
Light microscopy and extracellular electrophysiology were used to investigate eye structure and visu...
For all visually competent organisms, the driving force behind the adaptation of photoreceptors invo...
In the world of midwater, mesopelagic animals, downwelling sunlight is filtered by the overlying wat...
The spectral sensitivities of eight species of deep-sea decapod shrimps (Family Oplophoridae) were d...
The spectral sensitivities of eight species of deep-sea decapod shrimps (Family Oplophoridae) were d...
The role of UV light in the deep-sea environment has been discounted in the past, due to the assumpt...
The role of UV light in the deep-sea environment has been discounted in the past, due to the assumpt...
The spectral sensitivity of the deep-sea mysid, Gnathophausia ingens (Family Lophogastridae), was me...
The spectral sensitivity of the deep-sea mysid, Gnathophausia ingens (Family Lophogastridae), was me...
The behavioral sensitivities of five species of deep-sea crustaceans (order Decapoda:Acanthephyra cu...
The behavioral sensitivities of five species of deep-sea crustaceans (order Decapoda:Acanthephyra cu...
Several species of deep‐sea crustaceans possess unusually high spectral sensitivity to UV light, mea...
Several species of deep‐sea crustaceans possess unusually high spectral sensitivity to UV light, mea...
In the world of midwater, mesopelagic animals, downwelling sunlight is filtered by the overlying wat...
Light microscopy and extracellular electrophysiology were used to investigate eye structure and visu...
Light microscopy and extracellular electrophysiology were used to investigate eye structure and visu...
For all visually competent organisms, the driving force behind the adaptation of photoreceptors invo...