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首页> 外文期刊>The European Journal of Neuroscience >Two crossed axonal projections contribute to binaural unmasking of frequency-following responses in rat inferior colliculus.
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Two crossed axonal projections contribute to binaural unmasking of frequency-following responses in rat inferior colliculus.

机译:两个交叉的轴突投影有助于大鼠下丘脑中双耳的频率跟随反应的暴露。

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Frequency-following responses (FFRs) are sustained potentials based on phase-locked neural activities elicited by low- to medium-frequency periodical sound waveforms. Human brainstem FFRs, which are able to encode some critical acoustic features of speech, can be unmasked by binaural processing. However, the underlying unmasking mechanisms have not previously been reported. In rats, most neurons in the inferior colliculus (IC) exhibit binaural responses which are affected by axonal projections from both the contralateral dorsal nucleus of the lateral lemniscus (DNLL) and the contralateral IC. The present study investigated whether the contralateral DNLL and the contralateral IC modulate binaural unmasking of FFRs recorded in the rat IC. The results show that IC FFRs to the rat pain call (chatter) were enhanced by local injection of the excitatory glutamate receptor antagonist kynurenic acid (KYNA) into the contralateral DNLL but were reduced by KYNA injection into the contralateral IC. Introducing a disparity between the interaural time difference (ITD) of the FFR-eliciting chatter and the ITD of the masking noise enhanced IC FFRs. Moreover, the ITD-disparity-induced FFR enhancement was weakened by injection of KYNA into either the contralateral DNLL or the contralateral IC when the ipsilateral chatter preceded the contralateral chatter. Thus, binaural hearing can improve IC FFRs against noise masking. More importantly, both inhibitory projections from the contralateral DNLL and excitatory projections from the contralateral IC modulate IC FFRs and play a role in forming binaural unmasking of IC FFRs.
机译:跟随频率响应(FFR)是持续的电势,基于低频到中频定期声音波形引起的锁相神经活动。能够编码语音的一些关键声学特征的人脑干FFR可以通过双耳处理来掩盖。但是,潜在的揭露机制以前尚未被报道过。在大鼠中,下丘脑(IC)中的大多数神经元均表现出双耳反应,双侧耳反应受侧缘双侧莲核(DNLL)和对侧IC的对侧背核的轴突投射影响。本研究调查了对侧DNLL和对侧IC是否能调节大鼠IC中记录的FFR的双耳解掩。结果表明,通过向对侧DNLL局部注射兴奋性谷氨酸受体拮抗剂强尿酸(KYNA)可以增强大鼠疼痛声(颤动)的IC FFR,但通过向对侧IC注射KYNA可以降低IC FFR。引入引起FFR的颤动的耳间时间差(ITD)与掩蔽噪声增强的IC FFR的ITD之间的差异。此外,当同侧颤动在对侧颤动之前,通过将KYNA注入对侧DNLL或对侧IC中,可以减弱ITD差异引起的FFR增强。因此,双耳听力可以改善IC FFR,以防止噪声掩盖。更重要的是,对侧DNLL的抑制性投射和对侧IC的兴奋性投射都可调节IC FFR,并在形成IC FFR的双耳不暴露方面发挥作用。

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