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脑片全细胞膜片钳记录研究双侧下丘相互作用调制神经元潜伏期。

Investigation of Neuron Latency Modulated by Bilateral Inferior Collicular Interactions Using Whole-Cell Patch Clamp Recording in Brain Slices.

机构信息

School of Life Sciences and Hubei Key Lab of Genetic Regulation and Integrative Biology, Central China Normal University, Wuhan 430079, China.

出版信息

Neural Plast. 2021 Dec 10;2021:8030870. doi: 10.1155/2021/8030870. eCollection 2021.

Abstract

As the final level of the binaural integration center in the subcortical nucleus, the inferior colliculus (IC) plays an essential role in receiving binaural information input. Previous studies have focused on how interactions between the bilateral IC affect the firing rate of IC neurons. However, little is known concerning how the interactions within the bilateral IC affect neuron latency. In this study, we explored the synaptic mechanism of the effect of bilateral IC interactions on the latency of IC neurons. We used whole-cell patch clamp recordings to assess synaptic responses in isolated brain slices of Kunming mice. The results demonstrated that the excitation-inhibition projection was the main projection between the bilateral IC. Also, the bilateral IC interactions could change the reaction latency of most neurons to different degrees. The variation in latency was related to the type of synaptic input and the relative intensity of the excitation and inhibition. Furthermore, the latency variation also was caused by the duration change of the first subthreshold depolarization firing response of the neurons. The distribution characteristics of the different types of synaptic input also differed. Excitatory-inhibitory neurons were widely distributed in the IC dorsal and central nuclei, while excitatory neurons were relatively concentrated in these two nuclei. Inhibitory neurons did not exhibit any apparent distribution trend due to the small number of assessed neurons. These results provided an experimental reference to reveal the modulatory functions of bilateral IC projections.

摘要

作为皮质下核中二耳整合中心的最后一个水平,下丘(IC)在接收双耳信息输入方面起着至关重要的作用。以前的研究主要集中在双侧 IC 之间的相互作用如何影响 IC 神经元的发放率。然而,对于双侧 IC 内部的相互作用如何影响神经元潜伏期,知之甚少。在这项研究中,我们探讨了双侧 IC 相互作用影响 IC 神经元潜伏期的突触机制。我们使用全细胞膜片钳记录来评估昆明小鼠离体脑片的突触反应。结果表明,兴奋-抑制投射是双侧 IC 之间的主要投射。此外,双侧 IC 相互作用可以不同程度地改变大多数神经元的反应潜伏期。潜伏期的变化与突触输入的类型和兴奋与抑制的相对强度有关。此外,潜伏期的变化还与神经元第一次亚阈去极化放电反应的持续时间变化有关。不同类型突触输入的分布特征也不同。兴奋性-抑制性神经元广泛分布于 IC 背核和中央核,而兴奋性神经元在这两个核中相对集中。由于评估的神经元数量较少,抑制性神经元没有表现出任何明显的分布趋势。这些结果为揭示双侧 IC 投射的调节功能提供了实验参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2d2/8683196/cd7566cdd6c9/NP2021-8030870.001.jpg

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