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Latency modulation of collicular neurons induced by electric stimulation of the auditory cortex in Hipposideros pratti: In vivo intracellular recording

机译:电刺激河马侧耳皮层诱导神经元的延迟调制:体内细胞内记录

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摘要

In the auditory pathway, the inferior colliculus (IC) receives and integrates excitatory and inhibitory inputs from the lower auditory nuclei, contralateral IC, and auditory cortex (AC), and then uploads these inputs to the thalamus and cortex. Meanwhile, the AC modulates the sound signal processing of IC neurons, including their latency (i.e., first-spike latency). Excitatory and inhibitory corticofugal projections to the IC may shorten and prolong the latency of IC neurons, respectively. However, the synaptic mechanisms underlying the corticofugal latency modulation of IC neurons remain unclear. Thus, this study probed these mechanisms via in vivo intracellular recording and acoustic and focal electric stimulation. The AC latency modulation of IC neurons is possibly mediated by pre-spike depolarization duration, pre-spike hyperpolarization duration, and spike onset time. This study suggests an effective strategy for the timing sequence determination of auditory information uploaded to the thalamus and cortex.
机译:在听觉途径中,下丘脑(IC)接收并整合来自下听觉核,对侧IC和听觉皮层(AC)的兴奋性和抑制性输入,然后将这些输入上载到丘脑和皮层。同时,AC调制IC神经元的声音信号处理,包括其潜伏期(即第一峰值潜伏期)。 IC的兴奋性和抑制性皮质皮质投射可能分别缩短和延长IC神经元的潜伏期。但是,IC神经元的皮质的潜伏期潜伏期调节的突触机制仍不清楚。因此,本研究通过体内细胞内记录以及声和聚焦电刺激探索了这些机制。 IC神经元的AC潜伏期调节可能由尖峰前去极化持续时间,尖峰前超极化持续时间和尖峰开始时间介导。这项研究为上传到丘脑和皮层的听觉信息的时序确定提供了一种有效的策略。

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