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Suppressing Anterior Cingulate Cortex Modulates Default Mode Network and Behavior in Awake Rats

机译:抑制前刺的皮层调制遮挡大鼠的默认模式网络和行为

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The default mode network (DMN) is a principal brain network in the mammalian brain. Although the DMN in humans has been extensively studied with respect to network structure, function, and clinical implications, our knowledge of DMN in animals remains limited. In particular, the functional role of DMN nodes, and how DMN organization relates to DMN-relevant behavior are still elusive. Here we investigated the causal relationship of inactivating a pivotal node of DMN (i.e., dorsal anterior cingulate cortex [dACC]) on DMN function, network organization, and behavior by combining chemogenetics, resting-state functional magnetic resonance imaging (rsfMRI) and behavioral tests in awake rodents. We found that suppressing dACC activity profoundly changed the activity and connectivity of DMN, and these changes were associated with altered DMN-related behavior in animals. The chemo-rsfMRI-behavior approach opens an avenue to mechanistically dissecting the relationships between a specific node, brain network function, and behavior. Our data suggest that, like in humans, DMN in rodents is a functional network with coordinated activity that mediates behavior.
机译:默认模式网络(DMN)是哺乳动物大脑中的主要脑网络。尽管已经从网络结构、功能和临床意义方面对人类DMN进行了广泛研究,但我们对动物DMN的了解仍然有限。特别是,DMN节点的功能作用,以及DMN组织与DMN相关行为之间的关系仍然是难以捉摸的。在这里,我们通过结合化学遗传学、静息状态功能磁共振成像(rsfMRI)和清醒啮齿类动物的行为测试,研究了失活DMN关键节点(即背前扣带回[dACC])对DMN功能、网络组织和行为的因果关系。我们发现,抑制dACC活性会深刻地改变DMN的活性和连接性,这些变化与动物DMN相关行为的改变有关。化学-功能磁共振成像行为研究方法为从力学角度分析特定节点、脑网络功能和行为之间的关系开辟了一条途径。我们的数据表明,与人类一样,啮齿类动物中的DMN是一个功能性网络,具有协调活动,调节行为。

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