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Titlebook: Directional Hearing; William A. Yost (Director),George Gourevitch Book 1987 Springer-Verlag New York Inc. 1987 Mammalia.Nervous System.ada

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楼主: Encounter
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Victor Gervais,Saskia van Genugtene distortions, amplitude distortions, and spectrum distortions. This chapter develops analytical models for some of the well-known localization cues based on these distortions that are the result of reflections and diffractions. Experimental results supporting these models are reported here also.
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https://doi.org/10.1007/978-1-4684-6602-7rmation. George Kuhn, in Chapter 1, showed that these interaural variables can be complex. Wightman et al, in Chapter 2, showed that this complexity may be important for a listener’s ability to localize sounds in space. Presenting these stimuli over headphones allows for exact control of these varia
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Stability Analysis of Neural Networks be performed by one ear alone, the localization of sound depends heavily on comparisons between the acoustic inputs from the two ears. Binaural cues used for sound localization include interaural differences in level, time of arrival, and frequency spectrum of the sound. Interaural level difference
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https://doi.org/10.1007/978-981-10-3011-6tly as indicators of the presence of a predator or prey), social communicating (to attract or identify other members of the species, even particular individuals, and to determine the behavioral state of these others for aggressive encounters, mating, or other purposes), and perceiving the locations
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https://doi.org/10.1007/978-3-7091-4332-2t and understand these phenomena have been examined. This chapter begins consideration of directional hearing in room environments where normal-hearing human beings (and many other animals as well) naturally apply directional discrimination.
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