Animals extract behaviorally relevant signals from “noisy” environments. To investigate signal extraction, echolocating provides a rich system testbed. For orientation, bats broadcast calls and assign each echo to the corresponding call. When orienting in acoustically enriched environments or when approaching targets, bats change their spectro-temporal call design. Thus, to assess call adjustments that are exclusively meant to facilitate signal extraction in “noisy” environments, it is necessary to control for distance-dependent call changes. By swinging bats in a pendulum, we tested the influence of acoustic playback on the echolocation behavior of Carollia perspicillata. This paradigm evokes reproducible orientation behavior and allows a ...
Echolocation is a highly sophisticated sensory system for actively probing light-deficient environme...
Echolocation behavior, a navigation strategy based on acoustic signals, allows scientists to explore...
Echolocation is a highly sophisticated sensory system for actively probing light-deficient environme...
Integrating information on species-specific sensory perception with spatial activity provides a high...
Under natural conditions, animals encounter a barrage of sensory information from which they must se...
<div><p></p><p>Auditory feedback from the animal's own voice is essential during bat echolocation: t...
Integrating information on species-specific sensory perception together with spatial activity provid...
Auditory feedback from the animal's own voice is essential during bat echolocation: to optimize sign...
Auditory feedback from the animal's own voice is essential during bat echolocation: to optimize sign...
Bats echolocating in the natural environment face the formidable task of sorting signals from multip...
All animals face the essential task of extracting biologically meaningful sensory information from t...
Bats, which echolocate using broadband calls, are believed to employ the passive acoustic filtering ...
Trawling bats use echolocation not only to detect and classify acoustically continuous cues originat...
<div><p>Under natural conditions, animals encounter a barrage of sensory information from which they...
Bats, which echolocate using broadband calls, are believed to employ the passive acoustic filtering ...
Echolocation is a highly sophisticated sensory system for actively probing light-deficient environme...
Echolocation behavior, a navigation strategy based on acoustic signals, allows scientists to explore...
Echolocation is a highly sophisticated sensory system for actively probing light-deficient environme...
Integrating information on species-specific sensory perception with spatial activity provides a high...
Under natural conditions, animals encounter a barrage of sensory information from which they must se...
<div><p></p><p>Auditory feedback from the animal's own voice is essential during bat echolocation: t...
Integrating information on species-specific sensory perception together with spatial activity provid...
Auditory feedback from the animal's own voice is essential during bat echolocation: to optimize sign...
Auditory feedback from the animal's own voice is essential during bat echolocation: to optimize sign...
Bats echolocating in the natural environment face the formidable task of sorting signals from multip...
All animals face the essential task of extracting biologically meaningful sensory information from t...
Bats, which echolocate using broadband calls, are believed to employ the passive acoustic filtering ...
Trawling bats use echolocation not only to detect and classify acoustically continuous cues originat...
<div><p>Under natural conditions, animals encounter a barrage of sensory information from which they...
Bats, which echolocate using broadband calls, are believed to employ the passive acoustic filtering ...
Echolocation is a highly sophisticated sensory system for actively probing light-deficient environme...
Echolocation behavior, a navigation strategy based on acoustic signals, allows scientists to explore...
Echolocation is a highly sophisticated sensory system for actively probing light-deficient environme...