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首页> 外文期刊>Annual Review of Neuroscience >The primate cortical auditory system and neural representation of conspecific vocalizations.
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The primate cortical auditory system and neural representation of conspecific vocalizations.

机译:灵长类动物的皮层听觉系统和特定声音的神经表示。

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Over the past decade, renewed interest in the auditory system has resulted in a surge of anatomical and physiological research in the primate auditory cortex and its targets. Anatomical studies have delineated multiple areas in and around primary auditory cortex and demonstrated connectivity among these areas, as well as between these areas and the rest of the cortex, including prefrontal cortex. Physiological recordings of auditory neurons have found that species-specific vocalizations are useful in probing the selectivity and potential functions of acoustic neurons. A number of cortical regions contain neurons that are robustly responsive to vocalizations, and some auditory responsive neurons show more selectivity for vocalizations than for other complex sounds. Demonstration of selectivity for vocalizations has prompted the question of which features are encoded by higher-order auditory neurons. Results based on detailed studies of the structure of these vocalizations, as well as the tuning and information-coding properties of neurons sensitive to these vocalizations, have begun to provide answers to this question. In future studies, these and other methods may help to define the way in which cells, ensembles, and brain regions process communication sounds. Moreover, the discovery that several nonprimary auditory cortical regions may be multisensory and responsive to vocalizations with corresponding facial gestures may change the way in which we view the processing of communication information by the auditory system.
机译:在过去的十年中,对听觉系统的重新关注引起了灵长类听觉皮层及其靶标的解剖学和生理学研究激增。解剖学研究划定了初级听觉皮层内及其周围的多个区域,并证明了这些区域之间以及这些区域与其余皮层(包括额叶皮层)之间的连通性。听神经元的生理记录已发现,特定物种的发声可用于探测声神经元的选择性和潜在功能。许多皮质区域包含对发声有强烈反应的神经元,并且一些听觉响应神经元对发声的选择性比对其他复杂声音的选择性更高。对发声的选择性的证明提示了一个问题,即哪些特征由高级听觉神经元编码。基于对这些发声结构的详细研究以及对这些发声敏感的神经元的调谐和信息编码特性的结果,已经开始为这个问题提供答案。在未来的研究中,这些方法和其他方法可能有助于定义细胞,集合体和大脑区域处理交流声音的方式。此外,发现几个非主要听觉皮层区域可能是多感官的,并且对具有相应面部手势的发声做出响应,这一发现可能会改变我们查看听觉系统对通信信息的处理方式。

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