Department of Zoology and Physiology, University of Wyoming, Laramie, Wyoming 82071, USA.
J Neurophysiol. 2010 Jul;104(1):517-28. doi: 10.1152/jn.00294.2010. Epub 2010 May 19.
A consistent organizational feature of auditory cortex is a clustered representation of binaural properties. Here we address two questions. What is the intrinsic organization of binaural clusters and to what extent does intracortical processing contribute to binaural representation. We address these issues in the auditory cortex of the pallid bat. The pallid bat listens to prey-generated noise transients to localize and hunt terrestrial prey. As in other species studied, binaural clusters are present in the auditory cortex of the pallid bat. One cluster contains neurons that require binaural stimulation to be maximally excited, and are commonly termed predominantly binaural (PB) neurons. These neurons do not respond to monaural stimulation of either ear but show a peaked sensitivity to interaural intensity differences (IID) centered near 0 dB IID. We show that the peak IID varies systematically within this cluster. The peak IID is also correlated with the best frequency (BF) of neurons within this cluster. In addition, the IID selectivity of PB neurons is shaped by intracortical GABAergic input. Iontophoresis of GABA(A) receptor antagonists on PB neurons converts a majority of them to binaurally inhibited (EI) neurons that respond best to sounds favoring the contralateral ear. These data indicate that the cortex does not simply inherit binaural properties from lower levels but instead sharpens them locally through intracortical inhibition. The IID selectivity of the PB cluster indicates that the pallid bat cortex contains an increased representation of the frontal space that may underlie increased localization accuracy in this region.
听觉皮层的一个一致的组织特征是对双耳属性的聚类表示。在这里,我们解决两个问题。双耳聚类的内在组织是什么,以及皮质内处理在多大程度上有助于双耳表示。我们在白腹蝙蝠的听觉皮层中解决这些问题。白腹蝙蝠通过聆听猎物产生的噪声瞬变来定位和猎取陆地猎物。与在其他研究物种中一样,白腹蝙蝠的听觉皮层中存在双耳聚类。一个聚类包含需要双耳刺激才能最大程度兴奋的神经元,通常称为主要双耳(PB)神经元。这些神经元对任一耳的单耳刺激都没有反应,但对中心在 0 dB IID 左右的双耳强度差(IID)表现出峰值敏感性。我们表明,在这个聚类中,峰值 IID 系统地变化。峰值 IID 也与该聚类中神经元的最佳频率(BF)相关。此外,PB 神经元的 IID 选择性受皮质内 GABAergic 输入的影响。在 PB 神经元上施加 GABA(A)受体拮抗剂的离子电渗疗法将它们中的大多数转化为对有利于对侧耳的声音反应最佳的双耳抑制(EI)神经元。这些数据表明,皮层不是简单地从较低水平继承双耳属性,而是通过皮质内抑制来局部增强它们。PB 聚类的 IID 选择性表明,白腹蝙蝠皮层包含增加的额前空间表示,这可能是该区域定位精度提高的基础。