Varying overall sound intensity to the two ears impacts interaural level difference discrimination thresholds by single neurons in the lateral superior olive.
نویسندگان
چکیده
The lateral superior olive (LSO) is one of the earliest sites in the auditory pathway involved in processing acoustical cues to sound location. LSO neurons encode the interaural level difference (ILD) cue to azimuthal location. Here we investigated the effect of variations in the overall stimulus levels of sounds at the two ears on the sensitivity of LSO neurons to small differences in ILDs of pure tones. The neuronal firing rate versus ILD functions were found to depend greatly on the overall stimulus level, typically shifting along the ILD axis toward the excitatory ear and attaining greater maximal firing rates as stimulus level increased. Seventy-five percent of neurons showed significant shifts with changes in overall sound level. The range of ILDs corresponding to best neural acuity for ILDs shifted accordingly. In a simulation using the empirical data, when the overall stimulus level was randomly changed from one trial to the next, the neural discrimination thresholds for ILD, or ILD acuities, were worsened by 50-60% across the population of neurons relative to fixed stimulus levels whether ILD acuity was measured at the azimuthal midline or the ILD pedestal producing the best acuity. The impairment in ILD discrimination was attributed to the increased neural response variance imparted by varying the stimulus level. These results contrast to those observed in psychophysical studies where ILD discrimination thresholds under similar experimental conditions are invariant to overall changes in stimulus level. A simple computational model that incorporated the antagonistic inputs of bilateral LSO nuclei as well as the dorsal nuclei of the lateral lemniscus to the inferior colliculus produced a more robust encoding of ILD even in the setting of roving stimulus level. Testable predictions of this model and comparison to other computational models addressing stimulus invariance were considered.
منابع مشابه
Varying overall sound intensity to the two ears impacts interaural level 2 difference discrimination thresholds by single neurons in the lateral superior 3 olive 4 5
5 Jeffrey J. Tsai*, Kanthaiah Koka, and Daniel J. Tollin 6 Department of Physiology and Biophysics 7 University of Colorado Health Science Center 8 Aurora, CO 80045 9 10 Abbreviated title: Roving level impairs neural discrimination thresholds 11 12 Number of figures: 6 13 Number of tables: 0 14 Number of words in Abstract: 293 15 Number of words in Introduction: 859 16 Number of words in Discus...
متن کاملInteraural level difference discrimination thresholds for single neurons in the lateral superior olive.
The lateral superior olive (LSO) is one of the earliest sites in the auditory pathway that is involved in processing acoustical cues to sound location. Here, we tested the hypothesis that LSO neurons can signal small changes in interaural level differences (ILDs), a cue to horizontal sound location, of pure tones based on discharge rate consistent with psychophysical performance in the discrimi...
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Interaural level differences (ILDs) provide salient cues for localizing high-frequency sounds in space, and populations of neurons that are sensitive to ILDs are found at almost every synaptic level from brain stem to cortex. These cells are predominantly excited by stimulation of one ear and predominantly inhibited by stimulation of the other ear, such that the magnitude of their response is d...
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Mammals are known to use Interaural Intensity Difference (IID) to determine azimuthal position of high frequency sounds. In the Lateral Superior Olive (LSO) neurons have firing behaviours which vary systematicaly with IID. Those neurons receive excitatory inputs from the ipsilateral ear and inhibitory inputs from the contralateral one. The IID sensitivity of a LSO neuron is thought to be due to...
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The fundamental questions of sensory neuroscience are how neurons encode information and how neurons extract (process) information. For example, in the auditory system, sound location is determined by a combination of amplitude and time cues. The Lateral Superior Olive (LSO), one of the first nuclei to receive inputs from both ears, is thought to extract high-frequency localization information ...
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عنوان ژورنال:
- Journal of neurophysiology
دوره 103 2 شماره
صفحات -
تاریخ انتشار 2010