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自上而下的听觉脑皮层对社会行为网络的调控。

Top-down, auditory pallial regulation of the social behavior network.

作者信息

Spool Jeremy A, Lally Anna P, Remage-Healey Luke

出版信息

bioRxiv. 2023 Mar 9:2023.03.08.531754. doi: 10.1101/2023.03.08.531754.

Abstract

UNLABELLED

Social encounters rely on sensory cues that carry nuanced information to guide social decision-making. While high-level features of social signals are processed in the telencephalic pallium, nuclei controlling social behaviors, called the social behavior network (SBN), reside mainly in the diencephalon. Although it is well known how mammalian olfactory pallium interfaces with the SBN, there is little information for how pallial processing of other sensory modalities can modulate SBN circuits. This is surprising given the importance of complex vocalizations, for example, for social behavior in many vertebrate taxa such as humans and birds. Using gregarious and highly vocal songbirds, female Zebra finches, we asked to what extent auditory pallial circuits provide consequential input to the SBN as it processes social sensory cues. We transiently inactivated auditory pallium of female Zebra finches during song playback and examined song-induced activation in SBN nuclei. Auditory pallial inactivation impaired responses to song specifically within the lateral ventromedial nucleus of the hypothalamus (VMHl), providing the first evidence in vertebrates of a connection between auditory pallium and the SBN. This same treatment elevated feeding behavior, which also correlated with VMHl activation. This suggests that signals from auditory pallium to VMHl can tune the balance between social attention and feeding drive. A descending influence of sensory pallium on hypothalamic circuits could therefore provide a functional connection for the integration of social stimuli with internal state to influence social decision-making.

SIGNIFICANCE

Sensory cues such as vocalizations contain important social information. These social signals can be substantially nuanced, containing information about vocalizer identity, prior experience, valence, and emotional state. Processing these features of vocalizations necessitates processing the fast, complex sound streams in song or speech, which depends on circuits in pallial cortex. But whether and how this information is then transferred to social circuits in limbic and hypothalamic regions remains a mystery. Here, we identify a top-down influence of the songbird auditory pallium on one specific node of the social behavior network within the hypothalamus. Descending functional connections such as these may be critical for the wide range of vertebrate species that rely on intricate sensory communication signals to guide social decision-making.

摘要

未标注

社交互动依赖于携带细微信息以指导社交决策的感官线索。虽然社交信号的高级特征在端脑皮层中进行处理,但控制社交行为的神经核团,即社交行为网络(SBN),主要位于间脑。尽管哺乳动物嗅觉皮层与SBN的相互作用已为人熟知,但关于其他感觉模态的皮层处理如何调节SBN回路的信息却很少。考虑到复杂发声对于许多脊椎动物类群(如人类和鸟类)的社交行为的重要性,这一点令人惊讶。我们以群居且高度发声的鸣禽——雌性斑胸草雀为研究对象,探究听觉皮层回路在SBN处理社交感官线索时,能在多大程度上为其提供重要输入。我们在播放歌声期间短暂抑制雌性斑胸草雀的听觉皮层,并检查SBN神经核团中歌声诱发的激活情况。听觉皮层抑制特异性损害了下丘脑外侧腹内侧核(VMHl)内对歌声的反应,这为脊椎动物中听觉皮层与SBN之间的联系提供了首个证据。同样的处理增加了进食行为,这也与VMHl的激活相关。这表明从听觉皮层到VMHl的信号可以调节社交注意力和进食驱动力之间的平衡。因此,感觉皮层对下丘脑回路的下行影响可能为整合社交刺激与内部状态以影响社交决策提供功能联系。

意义

诸如发声等感官线索包含重要的社交信息。这些社交信号可能具有很大的细微差别,包含有关发声者身份、先前经验、效价和情绪状态的信息。处理发声的这些特征需要处理歌曲或语音中快速、复杂声音流,这依赖于皮层的回路。但这些信息随后是否以及如何传递到边缘和下丘脑区域的社交回路仍是一个谜。在这里,我们确定了鸣禽听觉皮层对下丘脑内社交行为网络的一个特定节点的自上而下的影响。像这样的下行功能连接对于依赖复杂感官通信信号来指导社交决策的广泛脊椎动物物种可能至关重要。

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