Alignment of sound localization cues in the nucleus of the brachium of the inferior colliculus.
نویسندگان
چکیده
Accurate sound localization is based on three acoustic cues (interaural time and intensity difference and spectral cues from directional filtering by the pinna). In natural listening conditions, every spatial position of a sound source provides a unique combination of these three cues in "natural alignment." Although neurons in the central nucleus (ICC) of the inferior colliculus (IC) are sensitive to multiple cues, they do not favor their natural spatial alignment. We tested for sensitivity to cue alignment in the nucleus of the brachium of the IC (BIN) in unanesthetized marmoset monkeys. The BIN receives its predominant auditory input from ICC and projects to the topographic auditory space map in the superior colliculus. Sound localization cues measured in each monkey were used to synthesize broadband stimuli with aligned and misaligned cues; spike responses to these stimuli were recorded in the BIN. We computed mutual information (MI) between the set of spike rates and the stimuli containing either aligned or misaligned cues. The results can be summarized as follows: 1) BIN neurons encode more information about auditory space when cues are aligned compared with misaligned. 2) Significantly more units prefer aligned cues in the BIN than in ICC. 3) An additive model based on summing the responses to stimuli with the localization cues varying individually accurately predicts the alignment preference with all cues varying. Overall, the results suggest that the BIN is the first site in the ascending mammalian auditory system that is tuned to natural combinations of sound localization cues.
منابع مشابه
Title : Alignment of Sound Localization Cues in the Nucleus of the Brachium of the 1 Inferior
23 24 Accurate sound localization is based on three acoustic cues (interaural time and intensity 25 difference, and spectral cues from directional filtering by the pinna). In natural listening 26 conditions, every spatial position of a sound source provides a unique combination of 27 these 3 cues in “natural alignment”. Although neurons in the central nucleus of the 28 inferior colliculus (ICC)...
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Previous studies have demonstrated that single neurons in the central nucleus of the inferior colliculus (ICC) are sensitive to multiple sound localization cues. We investigated the hypothesis that ICC neurons are specialized to encode multiple sound localization cues that are aligned in space (as would naturally occur from a single broadband sound source). Sound localization cues including int...
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ورودعنوان ژورنال:
- Journal of neurophysiology
دوره 111 12 شماره
صفحات -
تاریخ انتشار 2014