Frequency-specific corticofugal modulation of the dorsal cochlear nucleus in mice
نویسندگان
چکیده
The primary auditory cortex (AI) modulates the sound information processing in the lemniscal subcortical nuclei, including the anteroventral cochlear nucleus (AVCN), in a frequency-specific manner. The dorsal cochlear nucleus (DCN) is a non-lemniscal subcortical nucleus but it is tonotopically organized like the AVCN. However, it remains unclear how the AI modulates the sound information processing in the DCN. This study examined the impact of focal electrical stimulation of AI on the auditory responses of the DCN neurons in mice. We found that the electrical stimulation induced significant changes in the best frequency (BF) of DCN neurons. The changes in the BFs were highly specific to the BF differences between the stimulated AI neurons and the recorded DCN neurons. The DCN BFs shifted higher when the AI BFs were higher than the DCN BFs and the DCN BFs shifted lower when the AI BFs were lower than the DCN BFs. The DCN BFs showed no change when the AI and DCN BFs were similar. Moreover, the BF shifts were linearly correlated to the BF differences. Thus, our data suggest that corticofugal modulation of the DCN is also highly specific to frequency information, similar to the corticofugal modulation of the AVCN. The frequency-specificity of corticofugal modulation does not appear limited to the lemniscal ascending pathway.
منابع مشابه
Corticofugal Modulation of Initial Neural Processing of Sound Information from the Ipsilateral Ear in the Mouse
BACKGROUND Cortical neurons implement a high frequency-specific modulation of subcortical nuclei that includes the cochlear nucleus. Anatomical studies show that corticofugal fibers terminating in the auditory thalamus and midbrain are mostly ipsilateral. Differently, corticofugal fibers terminating in the cochlear nucleus are bilateral, which fits to the needs of binaural hearing that improves...
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AM Amplitude modulation AN Auditory nerve BD Best delay BMF Best modulation frequency BF Best frequency CD Characteristic delay CN Cochlear nucleus CP Characteristic phase CR Chopping rate DCN Dorsal cochlear nucleus DNLL Dorsal nucleus of the lateral lemniscus EI Contralaterally excited and ipsilaterally inhibited EI/F EI with facilitation F0 Fundamental frequency IC Inferior colliculus ICC Ce...
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عنوان ژورنال:
دوره 8 شماره
صفحات -
تاریخ انتشار 2014