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Plasticity of spatial hearing: behavioural effects of cortical inactivation

机译:空间听觉的可塑性:皮质失活的行为影响

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摘要

The contribution of auditory cortex to spatial information processing was explored behaviourally in adult ferrets by reversibly deactivating different cortical areas by subdural placement of a polymer that released the GABAA agonist muscimol over a period of weeks. The spatial extent and time course of cortical inactivation were determined electrophysiologically. Muscimol-Elvax was placed bilaterally over the anterior (AEG), middle (MEG) or posterior ectosylvian gyrus (PEG), so that different regions of the auditory cortex could be deactivated in different cases. Sound localization accuracy in the horizontal plane was assessed by measuring both the initial head orienting and approach-to-target responses made by the animals. Head orienting behaviour was unaffected by silencing any region of the auditory cortex, whereas the accuracy of approach-to-target responses to brief sounds (40 ms noise bursts) was reduced by muscimol-Elvax but not by drug-free implants. Modest but significant localization impairments were observed after deactivating the MEG, AEG or PEG, although the largest deficits were produced in animals in which the MEG, where the primary auditory fields are located, was silenced. We also examined experience-induced spatial plasticity by reversibly plugging one ear. In control animals, localization accuracy for both approach-to-target and head orienting responses was initially impaired by monaural occlusion, but recovered with training over the next few days. Deactivating any part of the auditory cortex resulted in less complete recovery than in controls, with the largest deficits observed after silencing the higher-level cortical areas in the AEG and PEG. Although suggesting that each region of auditory cortex contributes to spatial learning, differences in the localization deficits and degree of adaptation between groups imply a regional specialization in the processing of spatial information across the auditory cortex.
机译:通过在硬脑膜下放置可在数周内释放GABAA激动剂麝香酚的聚合物可逆性停用不同的皮质区域,以行为方式探索成年雪貂在听觉皮层对空间信息处理的贡献。皮层灭活的空间范围和时间过程是通过电生理学确定的。将Muscimol-Elvax双侧置于前部(AEG),中部(MEG)或后部外胚层回(PEG)上方,以便在不同情况下可以停用听觉皮层的不同区域。通过测量动物的初始头部定向和接近目标的反应来评估水平面中的声音定位精度。沉默听觉皮层的任何区域都不会影响头部定向行为,而麝香酚-Elvax会降低对简短声音(40 ms噪声爆发)的接近目标的响应精度,但无药物植入物不会降低这种效果。停用MEG,AEG或PEG后,观察到适度但明显的定位障碍,尽管最大的缺陷发生在沉默了主要听觉场的MEG的动物中。我们还通过可逆地插入一只耳朵来检查经验引起的空间可塑性。在对照动物中,单耳闭塞最初损害了接近目标和头部定向反应的定位精度,但在接下来的几天中通过训练恢复了定位精度。使听觉皮层的任何部分失活导致的完全恢复程度不如对照组,使AEG和PEG中较高水平的皮层区域沉默后出现最大的缺陷。尽管暗示听觉皮层的每个区域都有助于空间学习,但是群体之间的定位缺陷和适应程度的差异暗示着整个听觉皮层空间信息处理中的区域专业化。

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