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Modulatory interactions between the default mode network and task positive networks in resting-state

机译:默认模式网络和处于静止状态的任务肯定网络之间的调制交互

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摘要

The two major brain networks, i.e., the default mode network (DMN) and the task positive network, typically reveal negative and variable connectivity in resting-state. In the present study, we examined whether the connectivity between the DMN and different components of the task positive network were modulated by other brain regions by using physiophysiological interaction (PPI) on resting-state functional magnetic resonance imaging data. Spatial independent component analysis was first conducted to identify components that represented networks of interest, including the anterior and posterior DMNs, salience, dorsal attention, left and right executive networks. PPI analysis was conducted between pairs of these networks to identify networks or regions that showed modulatory interactions with the two networks. Both network-wise and voxel-wise analyses revealed reciprocal positive modulatory interactions between the DMN, salience, and executive networks. Together with the anatomical properties of the salience network regions, the results suggest that the salience network may modulate the relationship between the DMN and executive networks. In addition, voxel-wise analysis demonstrated that the basal ganglia and thalamus positively interacted with the salience network and the dorsal attention network, and negatively interacted with the salience network and the DMN. The results demonstrated complex modulatory interactions among the DMNs and task positive networks in resting-state, and suggested that communications between these networks may be modulated by some critical brain structures such as the salience network, basal ganglia, and thalamus.
机译:两种主要的大脑网络,即默认模式网络(DMN)和任务肯定网络,通常在静止状态下显示出负面和可变的连通性。在本研究中,我们通过使用静止生理功能磁共振成像数据上的生理生理学相互作用(PPI),检查了DMN与任务阳性网络不同组件之间的连通性是否受到其他大脑区域的调节。首先进行空间独立成分分析,以识别代表感兴趣网络的成分,包括前DMN和后DMN,显着性,背侧注意力,左右执行网络。在这些网络对之间进行PPI分析,以识别显示出与两个网络发生调节性相互作用的网络或区域。网络和体素分析都揭示了DMN,显着性和执行网络之间的正向调制交互作用。连同显着网络区域的解剖学特征一起,结果表明显着网络可以调节DMN与执行网络之间的关系。此外,体素分析表明,基底神经节和丘脑与显着网络和背侧注意力网络正相关,而与显着网络和DMN负相关。结果表明,DMN与处于静止状态的任务阳性网络之间存在复杂的调节相互作用,并表明这些网络之间的通信可能受到某些关键的大脑结构(如显着网络,基底神经节和丘脑)的调节。

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