Central amygdala circuitry modulates nociceptive processing through differential hierarchical interaction with affective network dynamics

中央杏仁核回路通过与情感网络动力学的差异分层交互来调节伤害感受处理

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作者:Isabel Wank #, Pinelopi Pliota #, Sylvia Badurek, Klaus Kraitsy, Joanna Kaczanowska, Johannes Griessner, Silke Kreitz, Andreas Hess, Wulf Haubensak

Abstract

The central amygdala (CE) emerges as a critical node for affective processing. However, how CE local circuitry interacts with brain wide affective states is yet uncharted. Using basic nociception as proxy, we find that gene expression suggests diverging roles of the two major CE neuronal populations, protein kinase C δ-expressing (PKCδ+) and somatostatin-expressing (SST+) cells. Optogenetic (o)fMRI demonstrates that PKCδ+/SST+ circuits engage specific separable functional subnetworks to modulate global brain dynamics by a differential bottom-up vs. top-down hierarchical mesoscale mechanism. This diverging modulation impacts on nocifensive behavior and may underly CE control of affective processing.

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