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  2. Animal echolocation - Wikipedia

    en.wikipedia.org/wiki/Animal_echolocation

    The term echolocation was coined by 1944 by the American zoologist Donald Griffin, who, with Robert Galambos, first demonstrated the phenomenon in bats. [1] [2] As Griffin described in his book, [3] the 18th century Italian scientist Lazzaro Spallanzani had, by means of a series of elaborate experiments, concluded that when bats fly at night, they rely on some sense besides vision, but he did ...

  3. Acoustic location - Wikipedia

    en.wikipedia.org/wiki/Acoustic_location

    Animal echolocation, animals emitting sound and listening to the echo in order to locate objects or navigate; Echo sounding, listening to the echo of sound pulses to measure the distance to the bottom of the sea, a special case of sonar; Gunfire locator; Human echolocation, the use of echolocation by blind people; Human bycatch

  4. Sound localization - Wikipedia

    en.wikipedia.org/wiki/Sound_localization

    Smaller animals like insects use different techniques as the separation of the ears are too small. [27] For the process of animals emitting sound to improve localization, a biological form of active sonar , see animal echolocation .

  5. Echolocation - Wikipedia

    en.wikipedia.org/wiki/Echolocation

    Animal echolocation, non-human animals emitting sound waves and listening to the echo in order to locate objects or navigate. Human echolocation , the use of sound by people to navigate. Sonar ( so und n avigation a nd r anging), the use of sound on water or underwater, to navigate or to locate other watercraft, usually by submarines.

  6. Sound localization in owls - Wikipedia

    en.wikipedia.org/wiki/Sound_localization_in_owls

    This asymmetry is such that the center of the left ear flap is slightly above a horizontal line passing through the eyes and directed downward, while the center of the right ear flap is slightly below the line and directed upward. In two other species of owls with asymmetrical ears, the saw-whet owl and the long-eared owl, the asymmetry is ...

  7. Sensory systems in fish - Wikipedia

    en.wikipedia.org/wiki/Sensory_systems_in_fish

    Although they have ears, many fish may not hear very well. Most fish have sensitive receptors that form the lateral line system, which detects gentle currents and vibrations, and senses the motion of nearby fish and prey. [1] Sharks can sense frequencies in the range of 25 to 50 Hz through their lateral line. [2]

  8. Category:Animals that use echolocation - Wikipedia

    en.wikipedia.org/wiki/Category:Animals_that_use...

    This category has the following 2 subcategories, out of 2 total. ... (5 C, 6 P) Pages in category "Animals that use echolocation" The following 24 pages are in this ...

  9. Cetacean stranding - Wikipedia

    en.wikipedia.org/wiki/Cetacean_stranding

    Another means by which sonar could be hurting cetaceans is a form of decompression sickness. This was first raised by necrological examinations of 14 beaked whales stranded in the Canary Islands . The stranding happened on 24 September 2002, close to the operating area of Neo Tapon, an international naval exercise, about four hours after the ...