Probing the natural scene by echolocation in bats
Исследование естественной среды летучими мышами с помощью эхолокации
2010-01-01
SCID: 54.1/avh78gqq
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3-D spatial perceptionadaptive sonar behaviorauditory object trackingbat echolocationnatural auditory scenes
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Abstract (AI)
Bats echolocating in the natural environment face the formidable task of sorting signals from multiple auditory objects, echoes from obstacles, prey, and the calls of conspecifics. Successful orientation in a complex environment depends on auditory information processing, along with adaptive vocal-motor behaviors and flight path control, which draw upon 3-D spatial perception, attention, and memory. This article reviews field and laboratory studies that document adaptive sonar behaviors of echolocating bats, and point to the fundamental signal parameters they use to track and sort auditory objects in a dynamic environment. We suggest that adaptive sonar behavior provides a window to bats' perception of complex auditory scenes.
Key Findings
1
Adaptive sonar behavior offers a behavioral window into bats’ perception of complex auditory scenes.
2
Bats rely on fundamental acoustic signal parameters to identify and track multiple auditory objects.
3
Echolocating bats must segregate echoes from obstacles, prey, and conspecific calls in complex natural auditory environments.
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Field and laboratory studies document adaptive sonar behaviors that help bats track and sort auditory objects in dynamic scenes.
5
Successful navigation requires integrated auditory processing, adaptive vocal-motor behavior, flight-path control, three-dimensional spatial perception, attention, and memory.
Research Object
Echolocating bats navigating and orienting in complex natural auditory environments
Research Subject
Adaptive sonar behaviors and auditory information-processing mechanisms used to track and sort multiple auditory objects during navigation
Publication Details
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2010-01-01
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