Department of Neuroscience, University of Connecticut Health Center, Farmington, Connecticut 06030-3401.
J Neurosci. 2014 Mar 5;34(10):3779-92. doi: 10.1523/JNEUROSCI.2954-13.2014.
The localization of high-frequency sounds in the horizontal plane uses an interaural-level difference (ILD) cue, yet little is known about the synaptic mechanisms that underlie processing this cue in the inferior colliculus (IC) of mouse. Here, we study the synaptic currents that process ILD in vivo and use stimuli in which ILD varies around a constant average binaural level (ABL) to approximate sounds on the horizontal plane. Monaural stimulation in either ear produced EPSCs and IPSCs in most neurons. The temporal properties of monaural responses were well matched, suggesting connected functional zones with matched inputs. The EPSCs had three patterns in response to ABL stimuli, preference for the sound field with the highest level stimulus: (1) contralateral; (2) bilateral highly lateralized; or (3) at the center near 0 ILD. EPSCs and IPSCs were well correlated except in center-preferred neurons. Summation of the monaural EPSCs predicted the binaural excitatory response but less well than the summation of monaural IPSCs. Binaural EPSCs often showed a nonlinearity that strengthened the response to specific ILDs. Extracellular spike and intracellular current recordings from the same neuron showed that the ILD tuning of the spikes was sharper than that of the EPSCs. Thus, in the IC, balanced excitatory and inhibitory inputs may be a general feature of synaptic coding for many types of sound processing.
高频声音在水平面上的定位使用了耳间强度差(ILD)线索,但对于在小鼠下丘脑中处理该线索的突触机制知之甚少。在这里,我们研究了体内处理 ILD 的突触电流,并使用 ILD 在恒定平均双耳水平(ABL)周围变化的刺激来近似水平面上的声音。单侧刺激任一耳都会在大多数神经元中产生 EPSC 和 IPSC。单耳反应的时间特性非常匹配,表明具有匹配输入的连接功能区。对 ABL 刺激的单耳反应有三种模式,偏好具有最高水平刺激的声场:(1)对侧;(2)双侧高度侧化;或(3)在中心附近,ILD 为 0。EPSC 和 IPSC 除了在中心偏好神经元中外相关性很好。单耳 EPSC 的总和预测了双耳兴奋性反应,但不如单耳 IPSC 的总和预测得好。双耳 EPSC 通常表现出非线性,增强了对特定 ILD 的反应。从同一神经元进行的细胞外尖峰和细胞内电流记录表明,尖峰的 ILD 调谐比 EPSC 更尖锐。因此,在下丘脑中,平衡的兴奋性和抑制性输入可能是许多类型声音处理的突触编码的一般特征。