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首页> 外文期刊>The European Journal of Neuroscience >Intercollicular commissural projections modulate neuronal responses in the inferior colliculus.
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Intercollicular commissural projections modulate neuronal responses in the inferior colliculus.

机译:关节间连合投射可调节下丘的神经元反应。

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摘要

The right and left inferior colliculi (ICs) in the auditory midbrain are connected to one another by a bundle of fibres, the commissure of the IC. Previous studies show that this commissural projection connects corresponding frequency regions in the two sides and originates mainly from excitatory neurons, although some studies suggest a smaller number of GABAergic inhibitory neurons may also project via the commissure. Although the commissure of the IC is a major pathway connecting the most important nuclei of the auditory tectum, little is known about its functional significance. To investigate its role in auditory processing in the rat, we recorded sound-evoked responses of single neurons in one IC while injecting kynurenic acid into a corresponding region of the opposite IC. This procedure enabled us to block reversibly excitation of commissural projections to the recorded IC. The changes in the neural responses when input from the opposite IC was blocked are consistent with the commissural projection exerting both an excitatory and an inhibitory influence. The inhibition could be accounted for by monosynaptic or disynaptic connections. The responses to both monaural and binaural stimulation were affected, and the effects were proportionately greater at near-threshold sound levels. The results suggest that one function of the commissure of the IC may be to modulate the response gain of IC neurons to acoustic stimulation.
机译:听觉中脑的左右下丘脑(IC)通过一束纤维相互连接,即IC的连合。先前的研究表明,这种连合的投影连接了两侧的相应频率区域,并且主要起源于兴奋性神经元,尽管一些研究表明,也可以通过连合投影出较少量的GABA抑制性神经元。尽管IC的结合是连接听觉盖层最重要的核的主要途径,但对其功能意义知之甚少。为了研究其在大鼠听觉处理中的作用,我们在一个IC中记录了单个神经元的声音诱发反应,同时将对尿嘧啶酸注射到相对IC的相应区域中。此过程使我们能够可逆地阻止连合投影投射到已记录的IC。当从相对的IC的输入被阻止时,神经反应的变化与连合投射同时发挥兴奋性和抑制性作用是一致的。抑制作用可以通过单突触或突触连接来解释。对单耳和双耳刺激的反应都受到影响,并且在接近阈值的声音水平下,其影响成比例地更大。结果表明,IC连合的功能之一可能是调节IC神经元对声刺激的响应增益。

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