AbstractIn the presence of multiple flying conspecifics, echolocating bats avoid jamming by adjusting the spectral and/or temporal features of their vocalizations. However, little is known about how bats alter their pulse acoustic characteristics to adapt to an acoustically jamming situation during flight. We investigated echolocation behavior in a bat (Miniopterus fuliginosus) during free flight under acoustic jamming conditions created by downward FM jamming sounds mimicking bat echolocation sounds. In an experimental chamber, the flying bat was exposed to FM jamming sounds with different terminal frequencies (TFs) from loudspeakers. Echolocation pulses emitted by the flying bat were recorded using a telemetry microphone (Telemike) mounte...
Active-sensing systems such as echolocation provide animals with distinct advantages in dark environ...
This study examines the way that big brown bats change their echolocation calls when flying with oth...
Active-sensing systems such as echolocation provide animals with distinct advantages in dark environ...
When searching for prey, big brown bats (Eptesicus fuscus) enhance the range of their sonar by conce...
Echolocating bats hunt prey on the wing under conditions of poor lighting by emission of loud calls ...
Echolocating bats emit ultrasonic sonar pulses and listen to returning echoes, which are reflected f...
Echolocating bats hunt prey on the wing under conditions of poor lighting by emission of loud calls ...
Echolocating bats hunt prey on the wing under conditions of poor lighting by emission of loud calls ...
Echolocating bats hunt prey on the wing under conditions of poor lighting by emission of loud calls ...
Echolocating bats hunt prey on the wing under conditions of poor lighting by emission of loud calls ...
Ultrasonic emissions of bats are directional and delimit the echo-acoustic space. Directionality is ...
Ultrasonic emissions of bats are directional and delimit the echo-acoustic space. Directionality is ...
Ultrasonic emissions of bats are directional and delimit the echo-acoustic space. Directionality is ...
Ultrasonic emissions of bats are directional and delimit the echo-acoustic space. Directionality is ...
Active-sensing systems such as echolocation provide animals with distinct advantages in dark environ...
Active-sensing systems such as echolocation provide animals with distinct advantages in dark environ...
This study examines the way that big brown bats change their echolocation calls when flying with oth...
Active-sensing systems such as echolocation provide animals with distinct advantages in dark environ...
When searching for prey, big brown bats (Eptesicus fuscus) enhance the range of their sonar by conce...
Echolocating bats hunt prey on the wing under conditions of poor lighting by emission of loud calls ...
Echolocating bats emit ultrasonic sonar pulses and listen to returning echoes, which are reflected f...
Echolocating bats hunt prey on the wing under conditions of poor lighting by emission of loud calls ...
Echolocating bats hunt prey on the wing under conditions of poor lighting by emission of loud calls ...
Echolocating bats hunt prey on the wing under conditions of poor lighting by emission of loud calls ...
Echolocating bats hunt prey on the wing under conditions of poor lighting by emission of loud calls ...
Ultrasonic emissions of bats are directional and delimit the echo-acoustic space. Directionality is ...
Ultrasonic emissions of bats are directional and delimit the echo-acoustic space. Directionality is ...
Ultrasonic emissions of bats are directional and delimit the echo-acoustic space. Directionality is ...
Ultrasonic emissions of bats are directional and delimit the echo-acoustic space. Directionality is ...
Active-sensing systems such as echolocation provide animals with distinct advantages in dark environ...
Active-sensing systems such as echolocation provide animals with distinct advantages in dark environ...
This study examines the way that big brown bats change their echolocation calls when flying with oth...
Active-sensing systems such as echolocation provide animals with distinct advantages in dark environ...