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首页> 外文期刊>Journal of Neurophysiology >Synaptic mechanisms for generating temporal diversity of auditory representation in the dorsal cochlear nucleus
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Synaptic mechanisms for generating temporal diversity of auditory representation in the dorsal cochlear nucleus

机译:在耳蜗背核中产生听觉表征的时间多样性的突触机制

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摘要

In central auditory pathways, neurons exhibit a great diversity of temporal discharge patterns, which may contribute to the parallel processing of auditory signals. How such response diversity emerges in the central auditory circuits remains unclear. Here, we investigated whether synaptic mechanisms can contribute to the generation of the temporal response diversity at the first stage along the central auditory neuraxis. By in vivo whole-cell voltage-clamp recording in the dorsal cochlear nucleus of rats, we revealed excitatory and inhibitory synaptic inputs underlying three different firing patterns of fusiform/pyramidal neurons in response to auditory stimuli: "primary-like," "pauser," and "buildup" patterns. We found that primary-like neurons received strong, fast-rising excitation, whereas pauser and buildup neurons received accumulating excitation with a relatively weak fast-rising phase, followed by a slow-rising phase. Pauser neurons received stronger fast-rising excitation than buildup cells. On the other hand, inhibitory inputs to the three types of cells exhibited similar temporal patterns, all with a strong fast-rising phase. Dynamic-clamp recordings demonstrated that the differential temporal patterns of excitation could primarily account for the different discharge patterns. In addition, discharge pattern in a single neuron varied in a stimulus-dependent manner, which could be attributed to the modulation of excitation/inhibition balance by different stimuli. Further examination of excitatory inputs to vertical/tuberculoventral and cartwheel cells suggested that fast-rising and accumulating excitation might be conveyed by auditory nerve and parallel fibers, respectively. A differential summation of excitatory inputs from the two sources may thus contribute to the generation of response diversity.
机译:在中央听觉通路中,神经元表现出很大的时间放电模式多样性,这可能有助于听觉信号的并行处理。这种反应多样性如何在中央听觉回路中出现仍然不清楚。在这里,我们调查了突触机制是否可以有助于沿中央听觉神经元的第一阶段的时间反应多样性的产生。通过在大鼠背侧耳蜗核中进行体内全细胞电压钳记录,我们揭示了响应于听觉刺激的梭形/锥体神经元的三种不同激发模式的兴奋性和抑制性突触输入:“原发性”,“停顿, ”和“堆积”模式。我们发现,初级神经样神经元受到强烈的,快速上升的兴奋,而暂停和聚集神经元受到相对较弱的快速上升阶段,随后是缓慢上升阶段的累积激励。较慢的神经元比积聚的细胞接受更强的快速上升的兴奋。另一方面,对三种类型细胞的抑制性输入表现出相似的时间模式,均具有强烈的快速上升阶段。动态钳位记录表明,不同的激励时间模式可以主要解释不同的放电模式。另外,单个神经元中的放电模式以依赖于刺激的方式变化,这可以归因于不同刺激对激发/抑制平衡的调节。对垂直/结核性腹侧和车轮细胞的兴奋性输入的进一步检查表明,听神经和平行纤维可能分别传递快速上升和累积的兴奋。来自两个来源的兴奋性输入的差异总和因此可能有助于响应多样性的产生。

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