Modeling the utility of binaural cues for underwater sound localization

The binaural cues used by terrestrial animals for sound localization in azimuth may not always suffice for accurate sound localization underwater. The purpose of this research was to examine the theoretical limits of interaural timing and level differences available underwater using computational an...

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Veröffentlicht in:Hearing research 2014-06, Vol.312, p.103-113
Hauptverfasser: Schneider, Jennifer N., Lloyd, David R., Banks, Patchouly N., Mercado, Eduardo
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Sprache:eng
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Zusammenfassung:The binaural cues used by terrestrial animals for sound localization in azimuth may not always suffice for accurate sound localization underwater. The purpose of this research was to examine the theoretical limits of interaural timing and level differences available underwater using computational and physical models. A paired-hydrophone system was used to record sounds transmitted underwater and recordings were analyzed using neural networks calibrated to reflect the auditory capabilities of terrestrial mammals. Estimates of source direction based on temporal differences were most accurate for frequencies between 0.5 and 1.75 kHz, with greater resolution toward the midline (2°), and lower resolution toward the periphery (9°). Level cues also changed systematically with source azimuth, even at lower frequencies than expected from theoretical calculations, suggesting that binaural mechanical coupling (e.g., through bone conduction) might, in principle, facilitate underwater sound localization. Overall, the relatively limited ability of the model to estimate source position using temporal and level difference cues underwater suggests that animals such as whales may use additional cues to accurately localize conspecifics and predators at long distances. •A computational model was developed to simulate sound localization in mammals.•The model was used to test the acuity afforded by binaural cues available to whales.•Field tests confirmed that binaural cues should enable whales to localize sources.•Limits on resolution from binaural cues suggest whales may use supplementary cues.
ISSN:0378-5955
1878-5891
DOI:10.1016/j.heares.2014.03.011