Single-lobed frequency-dependent beam shape in an echolocating false killer whale (Pseudorca crassidens)
Laura N. Kloepper, Paul E. Nachtigall, Christopher T. Quintos, Stephanie A. Vlachos
Abstract
Laura N. Kloepper, Paul E. Nachtigall, Christopher T. Quintos, Stephanie A. Vlachos
Abstract
Recent studies indicate some odontocetes may produce echolocation beams with a dual-lobed vertical structure. The shape of the odontocete echolocation beam was further investigated in a false killer whale performing an echolocation discrimination task. Clicks were recorded with an array of 16 hydrophones and frequency-dependent amplitude plots were constructed to assess beam shape. The majority of the echolocation clicks were single-lobed in structure with most energy located between 20 and 80 kHz. These data indicate the false killer whale does not produce a dual-lobed structure, as has been shown in bottlenose dolphins, which may be a function of lowered frequencies in the emitted signal due to hearing loss.
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Recent studies indicate some odontocetes may produce echolocation beams with a dual-lobed vertical structure. The shape of the odontocete echolocation beam was further investigated in a false killer whale performing an echolocation discrimination task. Clicks were recorded with an array of 16 hydrophones and frequency-dependent amplitude plots were constructed to assess beam shape. The majority of the echolocation clicks were single-lobed in structure with most energy located between 20 and 80 kHz. These data indicate the false killer whale does not produce a dual-lobed structure, as has been shown in bottlenose dolphins, which may be a function of lowered frequencies in the emitted signal due to hearing loss.
Key concepts: Human echolocation, Whale, Acoustics, Bioacoustics, Beam (structure), Bottlenose dolphin, SIGNAL (programming language), Physics