Hubei Key Laboratory of Genetic Regulation and Integrative Biology, School of Life Sciences, Central China Normal University, Wuhan, 430079, China.
Division of Biological Sciences, University of Missouri-Columbia, MO, 65211, USA.
Hear Res. 2019 Jun;377:292-306. doi: 10.1016/j.heares.2019.01.024. Epub 2019 Feb 26.
The inferior colliculus (IC) receives and integrates excitatory and inhibitory inputs from many bilateral lower auditory nuclei, intrinsic projections within IC, contralateral IC through the commissure of IC and from the auditory cortex (AC). These excitatory and inhibitory inputs from both ascending and descending auditory pathways contribute significantly to auditory response properties and temporal signal processing in IC. The present study examines the contribution of gamma-aminobutyric acid-ergic (GABAergic) inhibition of dorsal nucleus of the lateral lemniscus (DNLL) in influencing the response properties and amplitude sensitivity of contralateral IC neurons using focal electrical stimulation of contralateral DNLL and by the application of bicuculline to the recording site of modulated IC neurons. Focal electrical stimulation of contralateral DNLL produces inhibition (78.1%), facilitation (7.1%) or no effect (14.8%) in the number of spikes, firing duration and the first-spike latency of modulated IC neurons. The degree of modulation is inversely correlated to the difference in best frequency (BF) between electrically stimulated DNLL neurons and modulated IC neurons (p < 0.01). The application of bicuculline to the recording site of modulated IC neurons abolishes the inhibitory effect of focal electrical stimulation of DNLL neurons. DNLL inhibition also modulates the amplitude sensitivity of IC neurons by changing the dynamic range (DR) and the slope of rate-amplitude function (RAF) of modulated IC neurons. Possible biological significance of these findings in relation to auditory signal processing is discussed.
下丘(IC)接收并整合来自许多双侧下听觉核、IC 内固有投射、对侧 IC 通过 IC 连合以及听觉皮层(AC)的兴奋性和抑制性输入。这些来自上下听觉通路的兴奋性和抑制性输入对 IC 中的听觉反应特性和时间信号处理有重要贡献。本研究使用对侧外侧丘系背核(DNLL)的局灶性电刺激以及将毒蕈碱应用于调制 IC 神经元的记录部位,研究了γ-氨基丁酸能(GABAergic)抑制对影响对侧 IC 神经元反应特性和幅度敏感性的贡献。对侧 DNLL 的局灶性电刺激在调制 IC 神经元的放电数量、放电持续时间和第一峰潜伏期中产生抑制(78.1%)、易化(7.1%)或无效应(14.8%)。调制程度与电刺激 DNLL 神经元和调制 IC 神经元之间最佳频率(BF)的差异呈负相关(p < 0.01)。将毒蕈碱应用于调制 IC 神经元的记录部位可消除 DNLL 神经元局灶性电刺激的抑制作用。DNLL 抑制还通过改变调制 IC 神经元的动态范围(DR)和幅度-频率函数(RAF)斜率来调制 IC 神经元的幅度敏感性。讨论了这些发现与听觉信号处理相关的可能生物学意义。