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An Automated System for Sound Localization Testing in Hearing-Impaired Listeners
Published on: March 13, 2026
Memory for the locations of environmental sounds
Russell L Martin1, Patrick Flanagan, Ken I McAnally
1Air Operations Division, Defence Science and Technology Organisation, Fishermans Bend 3207, Australia. russell.martin@dsto.defense.gov.au
The Journal of the Acoustical Society of America
|June 21, 2011
Summary
Determining the absolute locations of multiple sound sources is challenging. Accuracy decreases with more sounds, but repeating sound sequences improves localization memory in virtual auditory space.
Area of Science:
- Auditory perception
- Spatial hearing
- Human psychoacoustics
Background:
- Single sound source localization is well-studied.
- Limited research exists on localizing multiple sound sources simultaneously.
- Understanding multi-source sound localization is crucial for applications like virtual reality and augmented audio.
Purpose of the Study:
- To assess human ability to determine and remember absolute locations of multiple environmental sound sources.
- To investigate the impact of the number of sound sources on localization accuracy.
- To examine the effect of sequence repetition and target sound nomination timing on spatial memory.
Main Methods:
- Participants localized up to six environmental sound sources in virtual auditory space (azimuth and elevation).
- Experiment 1: Varied number of sounds (1-6) and sequence repetitions (1, 3, 5), target nominated post-sequence.
- Experiment 2: Constant memory load, target nominated pre-sequence, single sequence presentation.
Main Results:
- Localization accuracy decreased significantly with three or more sounds in Experiment 1.
- Repeating sound sequences improved localization accuracy in Experiment 1.
- Primacy and recency effects were prominent in multi-sound conditions (Experiment 1).
- Temporal errors, not spatial errors, were over-represented in multi-sound conditions.
Conclusions:
- Human ability to localize multiple sound sources is limited by the number of sources.
- Sequence repetition and nomination timing influence spatial memory and localization accuracy.
- Temporal factors play a significant role in errors when localizing multiple sounds.
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