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To avoid deafening themselves, whenever a bat makes an echolocation emission, a small muscle in the bat's middle ear (the stapedius muscle) clamps down on small bones called ossicles, which normally amplify sounds between the ear drum and the cochlea. [3] This dampens the intensity of the sounds that the bat hears during this time, preserving ...
They sound different from the echolocation calls and do not have the same frequency patterns. Fuller details on the types of call and other clues to species identification follow below but Pipistrelles (or "Pips") give good examples of what can be discovered with a bat detector and make a good start to learning how to identify bats.
The idea that moths were able to hear the cries of echolocating bats dates back to the late 19th century. F. Buchanan White, in an 1877 letter to Nature [4] made the association between the moth's high-pitched sounds and the high-pitched bat calls and wondered whether the moths would be able to hear it.
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Frequency division (FD) bat detectors synthesise a sound which is a fraction of the bat call frequencies, typically 1/10. This is done by converting the call into a square wave, otherwise called a zero crossing signal. This square wave is then divided using an electronic counter by 10 to provide another square wave.
A woman heard weird noises in her home in the middle of the night, and soon learned a stranger was living in her attic. Night noises turned out to be a stranger living in her attic Skip to main ...
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