Details

Title

Virtual Sound Localization by Blind People

Journal title

Archives of Acoustics

Yearbook

2015

Volume

vol. 40

Issue

No 4

Authors

Keywords

virtual sounds ; localization ; Distance ; azimuth ; blind people

Divisions of PAS

Nauki Techniczne

Coverage

561-567

Publisher

Polish Academy of Sciences, Institute of Fundamental Technological Research, Committee on Acoustics

Date

2015[2015.01.01 AD - 2015.12.31 AD]

Type

Artykuły / Articles

Identifier

DOI: 10.1515/aoa-2015-0055

Source

Archives of Acoustics; 2015; vol. 40; No 4; 561-567

References

Hartmann (2013), Interaural Time Difference Thresholds as a Function of Frequency Advances in Experimental Medicine Basic Aspects of Hearing and, Physiology Perception, 787. ; Takahashi (1994), Representation of multiple sound sources in the owl s auditory space map The of, Journal Neuroscience, 14, 4780. ; Brungart (1999), Auditory localization of nearby sources Head - related transfer functions, Soc Am, 106. ; Kunka (2012), Objectivization of Audio - Visual Correlation Analysis of, Archives Acoustics, 37, 63, doi.org/10.2478/v10168-012-0009-4 ; Fitzpatrick (2000), Neural Sensitivity to Interaural Time Differences : Beyond the Jeffress Model The of, Journal Neuroscience, 15, 1605. ; Dunai (2011), Virtual moving source localization through headphones, InTech, 269. ; Brugera (2013), Human interaural time difference thresholds for sine tones : The high - frequency limit, Soc Am, 133. ; Dunai (2013), Sensory Navigation Device for Blind People The of, Journal Navigation, 66. ; Dunai (2010), The influence of the Inter - Click Intervalo n Moving Sound Source Localization for Navigation Systems Acoustical, Physics, 56, 384. ; Dakopoulos (2010), Wearable Obstacle Avoidance Electronic Travel Aids for Blind : A Survey IEEE Transactions on Systems , Man , and Cybernetics Part C : Applications and, Reviews, 40, 25. ; Wonder (2005), Loss of sight and enhanced hearing : a neural picture, Plos Biol, 3.
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