Many animals have evolved adept sensory systems that enable dexterous mobility in complex environments. Echolocating bats hunting in dense vegetation represent an extreme case of this, where all necessary information about the environment must pass through a parsimonious channel of pulsed, 1D echo signals. We have investigated whether certain bats (rhinolophids and hipposiderids) actively create Doppler shifts with their pinnae to encode additional sensory information. Our results show that the bats’ active pinna motions are a source of Doppler shifts that have all attributes required for a functional relevance: (i) the Doppler shifts produced were several times larger than the reported perception threshold; (ii) the motions of the fastest ...
All animals face the essential task of extracting biologically meaningful sensory information from t...
Duty cycle describes the relative ‘on time’ of a periodic signal. In bats, we argue that high duty c...
Echolocating bats construct an auditory world sequentially by analyzing successive pulse-echo pairs....
An electronic target simulator was used to produce artificial echoes for the echolocating bat, Rhino...
An electronic target simulator was used to produce artificial echoes for the echolocating bat, Rhino...
An electronic target simulator was used to produce artificial echoes for the echolocating bat, Rhino...
An electronic target simulator was used to produce artificial echoes for the echolocating bat, Rhino...
Bats, which echolocate using broadband calls, are believed to employ the passive acoustic filtering ...
Bats, which echolocate using broadband calls, are believed to employ the passive acoustic filtering ...
BackgroundSensory systems acquire both external and internal information to guide behavior. Adjustme...
High-speed photography and an acoustic doppler method have shown that rapid ear movements of Rhinolo...
High-speed photography and an acoustic doppler method have shown that rapid ear movements of Rhinolo...
For auditory imaging, a bat emits orientation sounds (pulses) and listens to echoes. The parameters ...
We used the pendulum device to study Doppler-shifted compensation of great leaf-nosed bat (Hipposide...
We used the pendulum device to study Doppler-shifted compensation of great leaf-nosed bat (Hipposide...
All animals face the essential task of extracting biologically meaningful sensory information from t...
Duty cycle describes the relative ‘on time’ of a periodic signal. In bats, we argue that high duty c...
Echolocating bats construct an auditory world sequentially by analyzing successive pulse-echo pairs....
An electronic target simulator was used to produce artificial echoes for the echolocating bat, Rhino...
An electronic target simulator was used to produce artificial echoes for the echolocating bat, Rhino...
An electronic target simulator was used to produce artificial echoes for the echolocating bat, Rhino...
An electronic target simulator was used to produce artificial echoes for the echolocating bat, Rhino...
Bats, which echolocate using broadband calls, are believed to employ the passive acoustic filtering ...
Bats, which echolocate using broadband calls, are believed to employ the passive acoustic filtering ...
BackgroundSensory systems acquire both external and internal information to guide behavior. Adjustme...
High-speed photography and an acoustic doppler method have shown that rapid ear movements of Rhinolo...
High-speed photography and an acoustic doppler method have shown that rapid ear movements of Rhinolo...
For auditory imaging, a bat emits orientation sounds (pulses) and listens to echoes. The parameters ...
We used the pendulum device to study Doppler-shifted compensation of great leaf-nosed bat (Hipposide...
We used the pendulum device to study Doppler-shifted compensation of great leaf-nosed bat (Hipposide...
All animals face the essential task of extracting biologically meaningful sensory information from t...
Duty cycle describes the relative ‘on time’ of a periodic signal. In bats, we argue that high duty c...
Echolocating bats construct an auditory world sequentially by analyzing successive pulse-echo pairs....