Stephen Gareth Hoerpel, Sonja C. Vernes, Uwe Firzlaff
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引用次数: 0
摘要
蝙蝠的发声曲目复杂,被认为是发声学习者,额叶听觉区域(FAF)被认为是额叶皮质-纹状体网络中的发声运动控制区域。额叶听觉区域通过多种途径接收来自听觉皮层(AC)和其他听觉神经核的输入。然而,人们对发声信息从 AC 到 FAF 的转换过程知之甚少。蝙蝠的听皮层由不同的子领域组成,其中背侧领域(dAC)的特点是对发声的时间包络进行精确编码。因此,背阔场应该是蝙蝠将自己发出的或感知到的发声信息反馈给听觉前场的主要来源。我们的研究旨在调查 FAF 和 dAC 神经元对不同类型发声编码的特异性。通过对麻醉后的褐马鸡进行细胞外记录,我们描述了这两个皮层区域的基本反应特性,并比较了对不同类型预录发声的反应。从时间发射模式和响应强度来看,dAC神经元对不同行为相关的叫声类别和单一叫声的编码特异性均高于FAF神经元。这些发现凸显了dAC在控制蝙蝠发声交流的神经网络中的重要性。
Representation of vocalizations in the frontal auditory field and the dorsal auditory cortex of bats
In bats, which express a complex vocal repertoire and are considered vocal learners, the frontal auditory field (FAF) is supposedly placed in a frontal cortico-striatal network for vocal–motor control. The FAF receives input from the auditory cortex (AC) and other auditory nuclei via multiple pathways. However, not much is known about the transition of information on vocalizations from the AC to the FAF. The bat AC consists of different subfields, among which the dorsal fields (dAC) are characterized by precise coding of the temporal envelope of vocalizations. The dAC should, therefore, be a major source of auditory feedback information about self-produced or perceived vocalizations to the FAF. Our study aimed to investigate the specificity of encoding for different types of vocalizations in FAF and dAC neurons. Using extracellular recordings in anesthetized Phyllostomus discolor, we describe basic response properties in both cortical areas and compare responses to different types of prerecorded vocalizations. The specificity of encoding for different behaviorally relevant call categories and single calls was higher in dAC than in FAF neurons, both in terms of temporal firing patterns and response strength. These findings highlight the importance of the dAC in the neural network for control of vocal communication in bats.
期刊介绍:
Published on behalf of the New York Academy of Sciences, Annals of the New York Academy of Sciences provides multidisciplinary perspectives on research of current scientific interest with far-reaching implications for the wider scientific community and society at large. Each special issue assembles the best thinking of key contributors to a field of investigation at a time when emerging developments offer the promise of new insight. Individually themed, Annals special issues stimulate new ways to think about science by providing a neutral forum for discourse—within and across many institutions and fields.