In the aquatic environment, living organisms emit weak dipole electric fields, which spread in the surrounding water. Elasmobranchs detect these dipole electric fields with their highly sensitive electroreceptors, the ampullae of Lorenzini. Freshwater sawfish, Pristis microdon, and two species of shovelnose rays, Glaucostegus typus and Aptychotrema rostrata were tested for their reactions towards weak artificial electric dipole fields. The comparison of sawfishes and shovelnose rays sheds light on the evolution and function of the elongated rostrum ('saw') of sawfish, as both groups evolved from a shovelnose ray-like ancestor. Electric stimuli were presented both on the substrate (to mimic benthic prey) and suspended in the water column (to...
The ampullae of Lorenzini, so characteristic of sharks and rays, have been examined by electrophysio...
Behavioral responses of elasmobranch fishes to weak electric fields have been well studied. These st...
Elasmobranch fishes (sharks, skates and rays) possess a highly sensitive electrosensory system that ...
In the aquatic environment, living organisms emit weak dipole electric fields, which spread in the s...
Jawed fishes that possess an elongated rostrum use it to either sense prey or to manipulate it, but ...
The ampullae of Lorenzini are the electroreceptors of elasmobranchs. Ampullary pores located in the ...
The ampullae of Lorenzini are the electroreceptors of elasmobranchs. Ampullary pores located in the ...
The distribution and density of the ampullary electroreceptors in the skin of elasmobranchs are infl...
SummaryJawed fishes that possess an elongated rostrum use it to either sense prey or to manipulate i...
Abstract. Elasmobranch fishes use electroreception to detect electric fields in the environment, par...
The distribution and density of the ampullary electroreceptors in the skin of elasmobranchs are infl...
The distribution and density of the ampullary electroreceptors in the skin of elasmobranchs are infl...
Elasmobranch fishes use their electroreceptive organs, the Ampullae of Lorenzini, to sense DC and lo...
Elasmobranch fishes use their electroreceptive organs, the Ampullae of Lorenzini, to sense DC and lo...
The family of pristid sawfish face a global crisis, with all species listed as critically endangered...
The ampullae of Lorenzini, so characteristic of sharks and rays, have been examined by electrophysio...
Behavioral responses of elasmobranch fishes to weak electric fields have been well studied. These st...
Elasmobranch fishes (sharks, skates and rays) possess a highly sensitive electrosensory system that ...
In the aquatic environment, living organisms emit weak dipole electric fields, which spread in the s...
Jawed fishes that possess an elongated rostrum use it to either sense prey or to manipulate it, but ...
The ampullae of Lorenzini are the electroreceptors of elasmobranchs. Ampullary pores located in the ...
The ampullae of Lorenzini are the electroreceptors of elasmobranchs. Ampullary pores located in the ...
The distribution and density of the ampullary electroreceptors in the skin of elasmobranchs are infl...
SummaryJawed fishes that possess an elongated rostrum use it to either sense prey or to manipulate i...
Abstract. Elasmobranch fishes use electroreception to detect electric fields in the environment, par...
The distribution and density of the ampullary electroreceptors in the skin of elasmobranchs are infl...
The distribution and density of the ampullary electroreceptors in the skin of elasmobranchs are infl...
Elasmobranch fishes use their electroreceptive organs, the Ampullae of Lorenzini, to sense DC and lo...
Elasmobranch fishes use their electroreceptive organs, the Ampullae of Lorenzini, to sense DC and lo...
The family of pristid sawfish face a global crisis, with all species listed as critically endangered...
The ampullae of Lorenzini, so characteristic of sharks and rays, have been examined by electrophysio...
Behavioral responses of elasmobranch fishes to weak electric fields have been well studied. These st...
Elasmobranch fishes (sharks, skates and rays) possess a highly sensitive electrosensory system that ...