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首页> 外文期刊>The European Journal of Neuroscience >Auditory perception vs. recognition: representation of complex communication sounds in the mouse auditory cortical fields.
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Auditory perception vs. recognition: representation of complex communication sounds in the mouse auditory cortical fields.

机译:听觉感知与识别:小鼠听觉皮层视野中复杂的交流声音的表示。

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摘要

Details of brain areas for acoustical Gestalt perception and the recognition of species-specific vocalizations are not known. Here we show how spectral properties and the recognition of the acoustical Gestalt of wriggling calls of mouse pups based on a temporal property are represented in auditory cortical fields and an association area (dorsal field) of the pups' mothers. We stimulated either with a call model releasing maternal behaviour at a high rate (call recognition) or with two models of low behavioural significance (perception without recognition). Brain activation was quantified using c-Fos immunocytochemistry, counting Fos-positive cells in electrophysiologically mapped auditory cortical fields and the dorsal field. A frequency-specific labelling in two primary auditory fields is related to call perception but not to the discrimination of the biological significance of the call models used. Labelling related to call recognition is present in the second auditory field (AII). A left hemisphere advantage of labelling in the dorsoposterior field seems to reflect an integration of call recognition with maternal responsiveness. The dorsal field is activated only in the left hemisphere. The spatial extent of Fos-positive cells within the auditory cortex and its fields is larger in the left than in the right hemisphere. Our data show that a left hemisphere advantage in processing of a species-specific vocalization up to recognition is present in mice. The differential representation of vocalizations of high vs. low biological significance, as seen only in higher-order and not in primary fields of the auditory cortex, is discussed in the context of perceptual strategies.
机译:尚不知道用于声学格式塔尔感知和识别特定物种发声的大脑区域的详细信息。在这里,我们展示了如何在听觉皮层区域和幼犬母亲的关联区域(背侧区域)中表示光谱属性以及基于时间属性的鼠标幼仔的蠕动声的格式塔尔识别。我们要么以高速率释放孕产妇行为的呼叫模型(呼叫识别)来刺激,要么使用两种行为重要性低的模型(感知而未被识别)来刺激。使用c-Fos免疫细胞化学对大脑激活进行定量,在电生理学绘制的听觉皮层视野和背侧视野中对Fos阳性细胞进行计数。在两个主要听觉领域中特定于频率的标记与通话知觉有关,但与所使用的通话模型的生物学意义无关。在第二听觉字段(AII)中存在与呼叫识别相关的标签。左后半球标签的左半球优势似乎反映了呼叫识别与母体反应能力的整合。背场仅在左半球被激活。听觉皮层及其视野内Fos阳性细胞的空间范围在左侧比在右侧半球更大。我们的数据表明,在小鼠中存在左半球在处理物种特异性发声直至识别方面的优势。在感知策略的背景下讨论了高生物学意义与低生物学意义的发声的差异表示,仅在听觉皮层的高阶而不是初级领域中才能看到。

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