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外侧丘系腹侧核在声音信号处理及听觉上行传导中的作用

[The role of the ventral nucleus of the lateral lemniscus in sound signal processing and auditory ascending transmission].

作者信息

Liu Hui-Hua, Luo Feng, Wang Xin

机构信息

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

出版信息

Sheng Li Xue Bao. 2014 Jun 25;66(3):358-64.

Abstract

The ventral nucleus of the lateral lemniscus (VNLL) is an important nucleus in the central auditory pathway which connects the lower brainstem and the midbrain inferior colliculus (IC). Previous studies have demonstrated that neurons in the VNLL could respond to sound signal parameters. Frequency tuning curves (FTCs) of VNLL neurons are generally wider than FTCs of IC neurons, suggesting that the VNLL does not enhance abilities of frequency discrimination and coding. Two types of rate-intensity functions (RIFs) are found in the VNLL: monotonic and non-monotonic RIFs. Intensity-tuning of VNLL neurons are affected by the temporal firing patterns during processing and encoding intensity. There are multiple temporal firing patterns in VNLL neurons. Onset pattern has a precise timing characteristic which is well suited to encode temporal features of stimuli, and also very important to animal behavior including bat's echolocation. The VNLL accepts inputs from lower nuclei, uploads glycine inhibitory outputs to IC, and modulates response characteristics generating and acoustic signal processing of IC neurons. Recent research suggests that fast inhibitory projection from the VNLL may delay the first spike latency of IC neurons, and the delayed inhibitory projection from the VNLL may mediate the temporal firing patterns of IC neurons. But how inhibitory inputs from the VNLL integrate in IC, and how inhibitory inputs from the VNLL enhance the ability of detecting sound signal of IC neurons are not very clear and need more direct evidence at the level of neurons. These questions will help further understand the role of upload during IC processes acoustic signal, which are our research target in the future. This article reviews the current literature regarding the roles of the VNLL in sound signal processing and the auditory ascending transmission, including advances in the relevant research in our laboratory.

摘要

外侧丘系腹侧核(VNLL)是中枢听觉通路中的一个重要核团,它连接着低位脑干和中脑下丘(IC)。以往的研究表明,VNLL中的神经元能够对声音信号参数做出反应。VNLL神经元的频率调谐曲线(FTC)通常比IC神经元的FTC更宽,这表明VNLL不会增强频率辨别和编码能力。在VNLL中发现了两种类型的率-强度函数(RIF):单调型和非单调型RIF。VNLL神经元的强度调谐在处理和编码强度过程中受到时间发放模式的影响。VNLL神经元存在多种时间发放模式。起始模式具有精确的时间特征,非常适合编码刺激的时间特征,对包括蝙蝠回声定位在内的动物行为也非常重要。VNLL接受来自低位核团的输入,向上丘上传甘氨酸抑制性输出,并调节中脑下丘神经元的反应特性生成和声音信号处理。最近的研究表明,来自VNLL的快速抑制性投射可能会延迟中脑下丘神经元的首次放电潜伏期,而来自VNLL的延迟抑制性投射可能介导中脑下丘神经元的时间发放模式。但是,VNLL的抑制性输入如何在中脑下丘整合,以及VNLL的抑制性输入如何增强中脑下丘神经元检测声音信号的能力尚不清楚,需要在神经元水平上有更直接的证据。这些问题将有助于进一步理解在中脑下丘处理声音信号过程中上传的作用,这是我们未来的研究目标。本文综述了当前关于VNLL在声音信号处理和听觉上行传导中作用的文献,包括我们实验室相关研究的进展。

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