Cheng L, Mei H-X, Huang Y
School of Psychology, Central China Normal University, Wuhan, China.
Physiol Res. 2016 Jul 18;65(3):527-36. doi: 10.33549/physiolres.933182. Epub 2016 Apr 12.
The two inferior colliculi (IC) are paired structures in the midbrain that are connected to each other by a bundle of commissural fibers. The fibers play an important role in coordinating sound signal processing between the two inferior colliculi. This study examined inter-collicular suppression on sound signal processing in amplitude domain of mice by measuring the rate-amplitude functions (RAFs) of neurons in one IC during the electrical stimulation of the opposite IC. Three types (monotonic, saturated and non-monotonic) RAFs of collicular neurons were measured before and during inter-collicular suppression. Inter-collicular suppression significantly increased the slope, decreased the dynamic range and narrowed down the responsive amplitude of all RAFs to high amplitude level but did not change the type of most (36/43, 84 %) RAFs. As a result, all types of RAFs were compressed at a greater degree at low than at high sound amplitude during inter-collicular suppression. These data indicate that inter-collicular suppression improve sound processing in the high amplitude domain.
两个下丘(IC)是中脑的成对结构,它们通过一束连合纤维相互连接。这些纤维在协调两个下丘之间的声音信号处理中起着重要作用。本研究通过在对侧下丘进行电刺激时测量一个下丘中神经元的频率-幅度函数(RAF),研究了小鼠幅度域中声音信号处理的下丘间抑制。在下丘间抑制之前和期间测量了三种类型(单调、饱和和非单调)的下丘神经元RAF。下丘间抑制显著增加了所有RAF的斜率,减小了动态范围,并将响应幅度缩小到高幅度水平,但没有改变大多数(36/43,84%)RAF的类型。结果,在下丘间抑制期间,所有类型的RAF在低声幅时比高声幅时受到更大程度的压缩。这些数据表明,下丘间抑制改善了高幅度域中的声音处理。